Modular building exterior system

The modular building envelope system addresses energy inefficiencies and thermal discomfort by integrating customizable partitionable spaces with electricity generation and heat exchange systems, improving thermal comfort and simplifying installation.

WO2026095763A1PCT designated stage Publication Date: 2026-05-07INTEGRA D&C INC
View PDF 5 Cites 0 Cited by

Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
INTEGRA D&C INC
Filing Date
2025-10-02
Publication Date
2026-05-07

AI Technical Summary

Technical Problem

Existing building envelope systems face challenges in energy efficiency, thermal discomfort, and complex installation due to the inefficiencies of window thermal performance and centralized HVAC systems, particularly in large-scale buildings, with existing solar technologies limited by day-night operation and complex distribution across building structures.

Method used

A modular building envelope system with a curtain wall frame section that allows for partitionable spaces, incorporating electricity generation, heat exchange ventilation, and heat pump systems, installed on the exterior of buildings, facilitating easy installation and customizable configurations.

Benefits of technology

The system enhances energy efficiency by optimizing thermal comfort and reducing heat loss, while enabling easy installation and adaptable configurations to meet diverse user needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure KR2025095611_07052026_PF_FP_ABST
    Figure KR2025095611_07052026_PF_FP_ABST
Patent Text Reader

Abstract

The present invention relates to a modular building exterior system configured in a modular form and installed on the exterior of a building, the system comprising: a curtain wall frame portion having a space formed therein and comprising a pair of first frames and a pair of second frames, the pair of first frames being arranged to be spaced with a certain interval from each other in the vertical direction and the pair of second frames connecting the side surfaces of the pair of first frames to each other and being spaced with a certain interval from each other; an electricity generator provided in front of the curtain wall frame portion; and a bracket portion provided to install the curtain wall frame portion on the exterior of the building.
Need to check novelty before this filing date? Find Prior Art

Description

Modular building envelope system

[0001] The present invention relates to a modular building envelope system.

[0002] The present application claims priority based on Korean Patent Applications No. 10-2024-0150847, No. 10-2024-0150848, No. 10-2024-0150849, No. 10-2024-0150850, No. 10-2024-0150851 and No. 10-2024-0150852 filed on October 30, 2024, and all contents described in the specifications and drawings of said applications are incorporated by reference into the present application.

[0003] Generally, buildings are equipped with facilities for heating, cooling, and ventilation, which are installed in internal mechanical rooms for central management, and the mechanical room equipment installed in the basement supplies heat sources to each space within the building connected through piping.

[0004] However, the above method is not only complex to construct but also requires transporting the heat source and utilizing large quantities of various building materials necessary for handling the external load, leading to a problem where heat loss increases during the heat source transport process, especially in large-scale buildings.

[0005] While the exterior walls and windows of a building protect the indoor environment from external weather conditions such as rain, snow, and typhoons, and provide natural lighting and views, the outer periphery adjacent to these walls and windows experiences thermal discomfort due to a difference in thermal environment compared to the inner periphery caused by the influence of the external environment transmitted through them, and there are limitations to resolving this problem through the operation of existing central air conditioning systems.

[0006] In particular, windows are an essential building envelope element that allows for the influx of natural light and secures views of the interior and exterior; however, they often have lower thermal insulation performance compared to walls or roofs, making them a major cause of building energy loss.

[0007] In addition, since windows become a major path for heat loss in winter and a path for excessive solar radiation in summer, the energy requirements for heating and cooling a building are largely determined by the window design.

[0008] In this regard, Patent Document 1 (Korean Registered Patent No. 10-2081890 (published on February 26, 2020)) discloses a photovoltaic power generation and solar thermal collection composite system comprising a photovoltaic panel that produces electricity from incident sunlight and a solar thermal collector module that collects solar thermal energy, and a support member and a pivot axis that enable the photovoltaic panel and the solar thermal collector module to rotate.

[0009] However, Patent Document 1 is configured to generate and collect heat using solar light and solar heat during the day, making it difficult to generate power at night.

[0010] Patent Document 2 (Korean Published Patent No. 10-2018-0117267 (Published on October 29, 2018)) discloses a heating, cooling, and ventilation system configured such that a PV module equipped with a solar panel among PVT modules installed on the exterior of a building obtains electricity from sunlight and stores it in an energy storage system, and a heat collection module installed below the PV module to obtain heat from sunlight can send heated hot water to a hot water supply tank or a heat pump.

[0011] However, Patent Document 2 is a type in which the elements constituting the heating, cooling, and ventilation system are distributed across the building roof, exterior walls, and interior, making installation work complex and nighttime operation difficult.

[0012] As such, building exterior module technology that improves energy efficiency, creates a comfortable indoor thermal environment, allows for easy size adjustment depending on the installation location, enables configuration changes and combinations as needed, and facilitates easy installation has not yet been presented.

[0013] The technical problem that the present invention aims to solve is to form a partitionable space on the inner side of the curtain wall frame so that devices can be selectively arranged to meet the diverse needs of the user.

[0014] In addition, the present invention is provided with a bracket portion that enables the curtain wall frame portion to be installed on the exterior of the building, thereby facilitating the installation work on the exterior of the building.

[0015] A first embodiment of the present invention for achieving the above technical objective comprises: a curtain wall frame section having an internal space formed therein, comprising: a pair of first frames arranged at a predetermined interval vertically and spaced apart from each other while mutually connecting the sides of the pair of first frames, and installed on the exterior of a building in a modular form; an electric power generation section provided at the front of the curtain wall frame section; and a bracket section provided to enable the curtain wall frame section to be installed on the exterior of the building.

[0016] In addition, the second embodiment of the present invention is an outer shell system configured in a modular manner and installed on the exterior of a building, characterized by comprising: a pair of first frames arranged at a predetermined interval vertically; a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames, wherein a space is formed on the interior of the curtain wall frame section; a heat exchange ventilation section provided in front of the curtain wall frame section; a heat pump section provided within the space of the curtain wall frame section; and a bracket section provided to enable the curtain wall frame section to be installed on the exterior of the building.

[0017] In addition, the third embodiment of the present invention is an outer shell system configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames, thereby forming a space on the interior; a window / door unit coupled to the curtain wall frame unit to close the front of a central area, which is part of the space of the curtain wall frame unit; a first sunshade unit coupled to the curtain wall frame unit to close an upper area formed above the central area, which is another area within the space of the curtain wall frame unit; a second sunshade unit coupled to the curtain wall frame unit to close a lower area formed below the central area, which is yet another area within the space of the curtain wall frame unit; and a bracket unit provided to enable the curtain wall frame unit to be installed on the exterior of the building.

[0018] In addition, the fourth embodiment of the present invention is an outer shell system configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames, thereby forming a space on the interior; a heat exchange ventilation unit coupled to the curtain wall frame unit to open and close the front of a central area, which is part of the space of the curtain wall frame unit; an electricity generation unit provided while closing at least one of an upper area formed above the central area and a lower area formed below the central area, which is another area of ​​the space of the curtain wall frame unit; a heat pump unit provided within either the upper area formed above the central area or the lower area formed below the central area, which is another area of ​​the space of the curtain wall frame unit; and a bracket unit provided to enable the curtain wall frame unit to be installed on the exterior of the building.

[0019] In addition, the fifth embodiment of the present invention is an outer shell system configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames, thereby forming a space on the interior; a window / door unit coupled to the curtain wall frame unit to close the front of a central area, which is part of the space of the curtain wall frame unit; a first sunshade unit coupled to the curtain wall frame unit to close an upper area formed above the central area, which is another area of ​​the space of the curtain wall frame unit; a second sunshade unit coupled to the curtain wall frame unit to close a lower area formed below the central area, which is yet another area of ​​the space of the curtain wall frame unit; an electricity generation unit provided in at least one of the first sunshade unit or the second sunshade unit; and a bracket unit provided to enable the curtain wall frame unit to be installed on the exterior of the building.

[0020] In addition, the sixth embodiment of the present invention is an outer shell system configured in a modular form and installed on the exterior of a building, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames, thereby forming a space on the interior; a window / door unit coupled to the curtain wall frame unit to close the front of a central area, which is part of the space of the curtain wall frame unit; a first heat exchange ventilation unit provided in the curtain wall frame unit to open and close an upper area formed above the central area, which is another area within the space of the curtain wall frame unit; a second heat exchange ventilation unit provided in the curtain wall frame unit to open and close a lower area formed below the central area, which is yet another area within the space of the curtain wall frame unit; and a bracket unit provided to install the curtain wall frame unit on the exterior of the building.

[0021] In addition, in the first and second embodiments of the present invention, the curtain wall frame portion further comprises a first partition frame positioned between the pair of first frames and parallel to at least one of the pair of first frames so as to divide the space into a plurality of sections.

[0022] In addition, in the third to sixth embodiments of the present invention, the curtain wall frame portion further comprises a first partition frame arranged parallel to at least one of the pair of first frames between the pair of first frames so as to partition the upper region and the lower region, respectively.

[0023] In addition, in embodiments of the present invention, the curtain wall frame portion further comprises a second partition frame positioned between the pair of second frames and parallel to at least one of the pair of second frames so as to divide the space into a plurality of sections.

[0024] In addition, in embodiments of the present invention, the bracket portion is characterized by comprising: an upper mounting bracket module provided such that the upper part of the curtain wall frame portion is installed on the outside of the building; and a lower mounting bracket module provided such that the lower part of the curtain wall frame portion is installed on the outside of the building.

[0025] In addition, in embodiments of the present invention, the upper mounting bracket module is characterized by comprising: a first upper mounting bracket including a first fixing plate coupled to an outer wall or slab of a building; and a second fixing plate formed by being bent and extended from the end of the first fixing plate; and a second upper mounting bracket having one side coupled to the second fixing plate and the other side coupled to the upper part of the curtain wall frame portion.

[0026] In addition, in embodiments of the present invention, the lower mounting bracket module is characterized by comprising: a first lower mounting bracket including a first coupling plate coupled to a stepped portion formed on the outer wall of a building; and a second coupling plate formed by being bent and extended from the end of the first coupling plate; and a second lower mounting bracket including a first panel coupled to the second coupling plate; and a second panel formed by being bent and extended from the end of the first panel and coupled to the lower portion of the curtain wall frame.

[0027] According to embodiments of the present invention, a partitionable space is formed on the inner side of the curtain wall frame, thereby providing the effect of allowing devices to be selectively arranged to meet the diverse needs of the user.

[0028] In addition, since a bracket part is provided to enable the curtain wall frame part to be installed on the exterior of the building, the exterior installation work of the present invention is facilitated.

[0029] FIG. 1 is a perspective view of a modular building envelope system according to a first embodiment of the present invention.

[0030] Figure 2 is a cross-sectional view of Figure 1.

[0031] FIG. 3 is a perspective view of a modular building envelope system according to a second embodiment of the present invention.

[0032] Figure 4 is a cross-sectional view of Figure 3.

[0033] FIG. 5 is a perspective view of a modular building envelope system according to a third embodiment of the present invention.

[0034] Figure 6 is a cross-sectional view of Figure 5.

[0035] FIG. 7 is a perspective view of a modular building envelope system according to a fourth embodiment of the present invention.

[0036] Figure 8 is a cross-sectional view of Figure 7.

[0037] FIG. 9 is a perspective view of a modular building envelope system according to the fifth embodiment of the present invention.

[0038] Figure 10 is a cross-sectional view of Figure 9.

[0039] FIG. 11 is a perspective view of a modular building envelope system according to the 6th embodiment of the present invention.

[0040] Fig. 12 is a cross-sectional view of Fig. 11.

[0041] FIG. 13 is a front view of an example of an upper mounting bracket module.

[0042] FIG. 14 is a perspective view of an example of an upper mounting bracket module.

[0043] Fig. 15 is an exploded view of Fig. 14.

[0044] FIG. 16 is a plan view of another example of an upper mounting bracket module.

[0045] FIG. 17 is a perspective view of another example of an upper mounting bracket module.

[0046] Fig. 18 is an exploded view of Fig. 17.

[0047] FIG. 19 is a front view of an example of a lower mounting bracket module.

[0048] FIG. 20 is a perspective view of an example of a lower mounting bracket module.

[0049] Fig. 21 is an exploded view of Fig. 20.

[0050] [Explanation of the symbol]

[0051] 100A: Modular building envelope system

[0052] 101A: 1st Frame 103A: 2nd Frame 105A: Curtain Wall Frame Section

[0053] 107A: Electricity Production Department 201A: 1st Section Frame

[0054] 100B: Modular building envelope system

[0055] 101B: 1st Frame 103B: 2nd Frame 105B: Curtain Wall Frame Section

[0056] 107B: Heat exchange ventilation unit 201B: First compartment frame

[0057] 100C: Modular building envelope system

[0058] 101C: 1st Frame 103C: 2nd Frame 105C: Curtain Wall Frame Section

[0059] 107C: Window and Door Section 109C: First Section 111C: Second Section

[0060] 201C: First compartment frame 203C: Insulation section

[0061] 100D: Modular building envelope system

[0062] 101D: 1st Frame 103D: 2nd Frame 105D: Curtain Wall Frame Section

[0063] 107D: Heat exchange ventilation unit 109D: Electricity production unit 201D: 1st compartment frame

[0064] 100E: Modular building envelope system

[0065] 101E: 1st Frame 103E: 2nd Frame 105E: Curtain Wall Frame Section

[0066] 107E : Window and Door Section 109E : First Section 111E : Second Section

[0067] 113E: Electricity Production Section 201E: First Compartment Frame 203E: Insulation Section

[0068] 100F: Modular building envelope system

[0069] 101F: 1st Frame 103F: 2nd Frame 105F: Curtain Wall Frame Section

[0070] 107F: Window and Door Section 109F: 1st Heat Exchange Ventilation Section 111F: 2nd Heat Exchange Ventilation Section

[0071] 201F: First compartment frame 203F: Insulation section

[0072] 300 : Top mounting bracket module

[0073] 301: First fixing plate 303: Second fixing plate 305: First upper mounting bracket

[0074] 307 : Second upper mounting bracket

[0075] 600 : Top mounting bracket module

[0076] 601: First fixing plate 603: Second fixing plate 605: First upper mounting bracket

[0077] 607 : Second upper mounting bracket 609 : First base plate

[0078] 611 : Second Baseplate

[0079] 900 : Bottom mounting bracket module

[0080] 901: 1st lower mounting bracket 903: 1st panel 905: 2nd panel

[0081] 907 : Second lower mounting bracket 909 : Support plate

[0082] 1001 : First connecting plate

[0083] 1003 : Second connecting plate

[0084] S: Space

[0085] Hereinafter, some embodiments of the present invention will be described in detail with reference to the exemplary drawings. It should be noted that in assigning reference numerals to the components of each drawing, the same components are given the same reference numeral whenever possible, even if they are shown in different drawings. Furthermore, in describing the present invention, if it is determined that a detailed description of related known components or functions could obscure the essence of the invention, such detailed description is omitted.

[0086] In addition, terms such as first, second, A, B, (a), (b), etc., may be used when describing the components of the present invention. These terms are intended only to distinguish the components from other components, and the essence, order, or sequence of the components is not limited by the terms. Where it is stated that a component is "connected," "combined," or "connected" to another component, it should be understood that the component may be directly connected or connected to the other component, but that another component may also be "connected," "combined," or "connected" between each component.

[0087] FIG. 1 is a perspective view of a modular building envelope system according to a first embodiment of the present invention. FIG. 2 is a cross-sectional view of FIG. 1. FIG. 3 is a perspective view of a modular building envelope system according to a second embodiment of the present invention. FIG. 4 is a cross-sectional view of FIG. 3. FIG. 5 is a perspective view of a modular building envelope system according to a third embodiment of the present invention. FIG. 6 is a cross-sectional view of FIG. 5. FIG. 7 is a perspective view of a modular building envelope system according to a fourth embodiment of the present invention. FIG. 8 is a cross-sectional view of FIG. 7. FIG. 9 is a perspective view of a modular building envelope system according to a fifth embodiment of the present invention. FIG. 10 is a cross-sectional view of FIG. 9. FIG. 11 is a perspective view of a modular building envelope system according to a sixth embodiment of the present invention. FIG. 12 is a cross-sectional view of FIG. 11. FIG. 13 is a front view of an example of an upper mounting bracket module. FIG. 14 is a perspective view of an example of an upper mounting bracket module. FIG. 15 is an exploded perspective view of FIG. 14. FIG. 16 is a plan view of another example of an upper mounting bracket module. FIG. 17 is a perspective view of another example of an upper mounting bracket module. FIG. 18 is an exploded perspective view of FIG. 17. FIG. 19 is a front view of an example of a lower mounting bracket module. FIG. 20 is a perspective view of an example of a lower mounting bracket module. FIG. 21 is an exploded perspective view of FIG. 20.

[0088] Hereinafter, the configuration of each embodiment will be described with reference to the drawings, and the common bracket part will be described later.

[0089] <First Example>

[0090] A modular building envelope system (100A) according to the first embodiment of the present invention is configured in a modular manner and installed on the exterior of a building, and is characterized by comprising: a pair of first frames (101A) arranged at a predetermined interval vertically and separated by a predetermined interval; a pair of second frames (103A) arranged at a predetermined interval while mutually connecting the sides of the pair of first frames (101A); a curtain wall frame section (105A) having a space (S) formed on the interior, the second frame section (105A); an electric power generation section (107A) provided in front of the curtain wall frame section (105A); and a bracket section provided so that the curtain wall frame section (105A) is installed on the exterior of a building.

[0091] Curtain wall frame section (105A)

[0092] The curtain wall frame section (105A) includes a pair of first frames (101A) and a pair of second frames (103A).

[0093] A pair of first frames (101A) are arranged with a predetermined spacing between them vertically.

[0094] A pair of first frames (101A) can be arranged side by side.

[0095] A pair of second frames (103A) are arranged spaced apart at a predetermined distance while each connecting the sides of a pair of first frames (101A).

[0096] A pair of second frames (103A) can be arranged side by side.

[0097] The curtain wall frame section (105A) has a structure in which a space (S) is formed on the inside by the combination of a pair of first frames (101A) and a pair of second frames (103A).

[0098] Meanwhile, the curtain wall frame section (105A) may further include a first partition frame (201A) positioned between a pair of first frames (101A) and parallel to at least one of the pair of first frames (101A) so that the inner space (S) is divided into multiple sections.

[0099] In FIG. 2, an example is shown in which the space (S) inside the curtain wall frame section (105A) is divided into three spaces (S1, S2, S3) as the first partition frame (201A) becomes two.

[0100] Of course, the user can appropriately adjust the number of first partition frames (201A) as needed to partition the inner space (S) of the curtain wall frame section (105A) in various ways (the number of partition spaces, the size (volume) of the partition spaces, etc. can be varied), and can appropriately arrange necessary devices within the partitioned space.

[0101] Additionally, the curtain wall frame section (105A) may further include a second partition frame (not shown) positioned between a pair of second frames (103A) and parallel to at least one of the pair of second frames (103A) so that the inner space (S) is divided into multiple sections.

[0102] Of course, the inner space (S) of the curtain wall frame section (105A) can be divided into multiple grid-shaped spaces of various sizes (volumes) by the first partition frame (201A) and the second partition frame (not shown).

[0103] Electricity Production Department (107A)

[0104] The electric power generation unit (107A) is provided at the front facing the outside of the curtain wall frame unit (105A).

[0105] The electricity generation unit (107A) may include, for example, a solar energy generation unit and / or a thermoelectric element generation unit.

[0106] The solar energy generation unit can be a photovoltaic power generation method.

[0107] A solar energy generation unit may include, for example, solar panels, wiring, an inverter, etc.

[0108] The solar energy generation unit may further be provided with a rotating member that allows it to slide in the forward / rear direction of the curtain wall frame part (105A) depending on the position of the sun.

[0109] The rotating member can be controlled by the detection and control unit of the sensor unit to allow the relative angle of the solar energy generation unit to be adjusted.

[0110] The thermoelectric power generation unit is located adjacent to the solar energy power generation unit and can generate electricity by utilizing the temperature difference between the solar energy power generation unit and the heat storage unit.

[0111] The thermal storage unit may be provided with a structure including, for example, a phase change material (PCM) including a thermal conductor capable of absorbing or releasing heat.

[0112] The thermal storage unit can be placed adjacent to the thermoelectric power generation unit.

[0113] The electricity generation unit (107A) can generate electricity by utilizing the temperature difference between the solar energy generation unit and the heat storage unit during the day, and at night, as the external air temperature drops, the temperatures of the solar energy generation unit and the heat storage unit are reversed so that electricity can be generated even at night.

[0114] The electricity produced by the solar energy generation unit is used as electricity required for building operation, and the electricity produced by the thermoelectric element generation unit can be used for sensor monitoring equipment, etc., for the operation of the present invention.

[0115] Additionally, if necessary, an electric storage device (battery) may be further provided so that the electricity produced in the electric production unit (107A) can be stored.

[0116]

[0117] <Second Embodiment>

[0118] A modular building envelope system (100B) according to a second embodiment of the present invention is configured in a modular manner and installed on the exterior of a building, and is characterized by comprising: a pair of first frames (101B) arranged at a predetermined distance apart vertically; a pair of second frames (103B) arranged at a predetermined distance apart while mutually connecting the sides of the pair of first frames (101B); a curtain wall frame section (105B) having a space (S) formed on the interior, the second frame section (105B); a heat exchange ventilation section (107B) provided in front of the curtain wall frame section (105B); a heat pump section provided within the space (S) of the curtain wall frame section (105B); and a bracket section provided so that the curtain wall frame section (105B) is installed on the exterior of a building.

[0119] curtain wall frame section (105B)

[0120] The curtain wall frame section (105B) includes a pair of first frames (101B) and a pair of second frames (103B).

[0121] A pair of first frames (101B) are arranged with a predetermined spacing between them vertically.

[0122] A pair of first frames (101B) can be arranged side by side.

[0123] A pair of second frames (103B) are arranged spaced apart at a predetermined distance while each connecting the sides of a pair of first frames (101B).

[0124] A pair of second frames (103B) can be placed side by side.

[0125] The curtain wall frame section (105B) has a structure in which a space (S) is formed on the inside by the combination of a pair of first frames (101B) and a pair of second frames (103B).

[0126] Meanwhile, the curtain wall frame section (105B) may further include a first partition frame (201B) positioned between a pair of first frames (101B) and parallel to at least one of the pair of first frames (101B) so that the inner space (S) is divided into multiple sections.

[0127] In FIG. 4, an example is shown in which the space (S) inside the curtain wall frame section (105B) is divided into three spaces (S1, S2, S3) as the first partition frame (201B) becomes two.

[0128] Of course, the user can appropriately adjust the number of first partition frames (201B) as needed to partition the inner space (S) of the curtain wall frame section (105B) in various ways (the number of partition spaces, the size (volume) of the partition spaces, etc. can be varied), and can appropriately arrange necessary devices within the partitioned space.

[0129] Additionally, the curtain wall frame section (105B) may further include a second partition frame (not shown) positioned between a pair of second frames (103B) and parallel to at least one of the pair of second frames (103B) so that the inner space (S) is partitioned into multiple sections.

[0130] Of course, the inner space (S) of the curtain wall frame section (105B) can be divided into multiple grid-shaped spaces of various sizes (volumes) by the first partition frame (201B) and the second partition frame (not shown).

[0131] Heat exchange ventilation unit (107B)

[0132] The heat exchange ventilation unit (107B) is provided at the front facing the outside of the curtain wall frame unit (105B).

[0133] The heat exchange ventilation unit (107B) may include a plurality of blades configured to open and close the air passage while rotating within a predetermined angle range, for example.

[0134] The heat exchange ventilation unit (107B) may include a heat exchange device.

[0135] The heat exchanger may include, for example, a fan (not shown) installed in a case (not shown) and a heat exchange element (not shown) located inside the case.

[0136] The heat exchanger may include a PCM (Phase Change Material).

[0137] After the indoor air and outdoor air undergo heat exchange in the heat exchanger, they can be supplied to the heat pump unit described later.

[0138] Heat pump section

[0139] The heat pump section is provided within the space (S) of the curtain wall frame section (105B).

[0140] The heat pump unit can use the air discharged from the heat exchanger as a heat source.

[0141] The heat pump unit can supply the required amount of heat to the indoor space by heating and cooling the air while reducing heat loss by using outside and indoor air that has passed through a heat exchanger.

[0142] The heat pump section may include, for example, an evaporator, a compressor, a condenser, an expansion valve, a reversing valve, etc.

[0143]

[0144] <Third Embodiment>

[0145] A modular building envelope system (100C) according to the third embodiment of the present invention is configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames (101C) arranged at a predetermined interval vertically and a pair of second frames (103C) arranged at a predetermined interval while mutually connecting the sides of the pair of first frames (101C); a curtain wall frame section (105C) having a space (S) formed on the interior, the window section (107C) coupled to the curtain wall frame section (105C) to close the front of a central area (S1), which is part of the space (S) of the curtain wall frame section (105C); and a first sunshade section (109C) coupled to the curtain wall frame section (105C) to close an upper area (S2) formed above the central area (S1), which is another area of ​​the space (S) of the curtain wall frame section (105C). It is characterized by including: a second sunshade part (111C) coupled to the curtain wall frame part (105C) to close a lower area (S3) formed at the bottom of a central area (S1), which is another area of ​​the space (S) of the curtain wall frame part (105C); and a bracket part provided so that the curtain wall frame part (105C) is installed on the outside of the building.

[0146] Curtain wall frame section (105C)

[0147] The curtain wall frame section (105C) includes a pair of first frames (101C) and a pair of second frames (103C).

[0148] A pair of first frames (101C) are arranged with a predetermined spacing between them vertically.

[0149] A pair of first frames (101C) can be arranged side by side.

[0150] A pair of second frames (103C) are arranged spaced apart at a predetermined distance while each connecting the sides of a pair of first frames (101C).

[0151] A pair of second frames (103C) can be placed side by side.

[0152] The curtain wall frame section (105C) has a structure in which a space (S) is formed on the inside by the combination of a pair of first frames (101C) and a pair of second frames (103C).

[0153] Meanwhile, the curtain wall frame section (105C) may further include a first partition frame (201C) positioned between a pair of first frames (101C) and parallel to at least one of the pair of first frames (101C) so that the inner space (S) is divided into a central area (S1), an upper area (S2), and a lower area (S3), respectively.

[0154] In FIG. 6, an example is shown in which the space (S) inside the curtain wall frame section (105C) is divided into three spaces (S1, S2, S3) as the first partition frame (201C) becomes two.

[0155] Of course, the user can appropriately adjust the number of first partition frames (201C) as needed to partition the inner space (S) of the curtain wall frame section (105C) in various ways (the number of partition spaces, the size (volume) of the partition spaces, etc. can be varied), and can appropriately arrange necessary devices within the partitioned space.

[0156] Additionally, the curtain wall frame section (105C) may further include a second partition frame (not shown) positioned between a pair of second frames (103C) and parallel to at least one of the pair of second frames (103C) so that the inner space (S) is partitioned into multiple sections.

[0157] Of course, the inner space (S) of the curtain wall frame section (105C) can be divided into multiple grid-shaped spaces of various sizes (volumes) by the first partition frame (201C) and the second partition frame (not shown).

[0158] Additionally, the curtain wall frame section (105C) may further be provided with an insulation section (203C) at least one of the rear position corresponding to the upper region (S2) to be described later and the rear position corresponding to the lower region (S3).

[0159] The insulation section (203C) may have a configuration in which one or more of the following are combined:, for example, an EPS panel (Expanded Polystyrene Panel), an XPS panel (Extruded Polystyrene Panel), a PUR / PIR panel (Polyurethane / Polyisocyanurate Panel), a mineral wool panel, a vacuum insulation panel, a PU sandwich panel, and a cellulose insulation panel.

[0160] Window frame (107C)

[0161] The window section (107C) is connected to the curtain wall frame section (105C) to close the front of the central area (S1), which is part of the space (S) of the curtain wall frame section (105C).

[0162] The window / door section (107C) may include, for example, smart glass and a sash that fixes the smart glass.

[0163] Smart glass may include a glass layer and a polarizing film that is closely attached to the rear surface of the glass layer.

[0164] One or more polarizing films are superimposed and attached to a glass layer to control the irradiation rate of sunlight entering the room and block visible light.

[0165] The glass layer can be made of double glass, and a polarizing film can be placed between the double glass.

[0166] A condensation prevention member may be located on the chassis, and the condensation prevention member may include, for example, a PCM (Phase Change Material).

[0167] The PCM may include a thermal conductor capable of absorbing or releasing heat.

[0168] First tier (109C)

[0169] The first shading part (109C) is coupled to the curtain wall frame part (105C) to close the upper area (S2) of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame part (105C).

[0170] The first shaping part (109C) can be connected to the curtain wall frame part (105C) in a structure that protrudes further forward than the window part (107C).

[0171] The first secondary part (109C) may have an exterior finishing material further attached to its front surface.

[0172] 2nd part (111C)

[0173] The second shaping section (111C) is coupled to the curtain wall frame section (105C) to close the lower area (S3) of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame section (105C).

[0174] The second shaping part (111C) can be connected to the curtain wall frame part (105C) in a structure that protrudes further forward than the window part (107C).

[0175] The second secondary portion (111C) may have an exterior finishing material further attached to its front surface.

[0176]

[0177] <Fourth Example>

[0178] A modular building envelope system (100D) according to the fourth embodiment of the present invention is configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames (101D) arranged at a predetermined distance apart vertically; a pair of second frames (103D) arranged at a predetermined distance apart while mutually connecting the sides of the pair of first frames (101D); a curtain wall frame section (105D) having a space (S) formed on the interior; a heat exchange ventilation section (107D) coupled to the curtain wall frame section (105D) to open and close the front of a central area (S1), which is part of the space (S) of the curtain wall frame section (105D); and an electricity generation section (109D) provided while closing at least one of an upper area (S2) formed above the central area (S1) and a lower area (S2) formed below the central area, which are other areas of the space (S) of the curtain wall frame section (105D). It is characterized by including: a heat pump unit provided within either the upper area (S2) formed above the central area (S1) or the lower area (S2) formed below the central area, which are different areas of the space (S) of the curtain wall frame unit (105D); and a bracket unit provided so that the curtain wall frame unit (105D) is installed on the outside of the building.

[0179] Curtain wall frame section (105D)

[0180] The curtain wall frame section (105D) includes a pair of first frames (101D) and a pair of second frames (103D).

[0181] A pair of first frames (101D) are arranged with a predetermined spacing between them vertically.

[0182] A pair of first frames (101D) can be arranged side by side.

[0183] A pair of second frames (103D) are arranged spaced apart at a predetermined distance while each connecting the sides of a pair of first frames (101D).

[0184] A pair of second frames (103D) can be placed side by side.

[0185] The curtain wall frame section (105D) has a structure in which a space (S) is formed on the inside by the combination of a pair of first frames (101D) and a pair of second frames (103D).

[0186] Meanwhile, the curtain wall frame section (105D) may further include a first partition frame (201D) positioned between a pair of first frames (101D) and parallel to at least one of the pair of first frames (101D) so that the inner space (S) is divided into a central area (S1), an upper area (S2), and a lower area (S3), respectively.

[0187] In FIG. 8, an example is shown in which the space (S) inside the curtain wall frame section (105D) is divided into three spaces (S1, S2, S3) as the first partition frame (201D) becomes two.

[0188] Of course, the user can appropriately adjust the number of first partition frames (201D) as needed to partition the inner space (S) of the curtain wall frame section (105D) in various ways (the number of partition spaces, the size (volume) of the partition spaces, etc. can be varied), and can appropriately arrange necessary devices within the partitioned space.

[0189] Additionally, the curtain wall frame section (105D) may further include a second partition frame (not shown) positioned between a pair of second frames (103D) and parallel to at least one of the pair of second frames (103D) so that the inner space (S) is divided into multiple sections.

[0190] Of course, the inner space (S) of the curtain wall frame section (105D) can be divided into multiple grid-shaped spaces of various sizes (volumes) by the first partition frame (201D) and the second partition frame (not shown).

[0191] Heat exchange ventilation unit (107D)

[0192] The heat exchange ventilation unit (107D) is connected to the curtain wall frame unit (105D) to open and close the front of the central area (S1), which is part of the space (S) of the curtain wall frame unit (105D).

[0193] The heat exchange ventilation unit (107D) may include a plurality of blades configured to open and close the air passage while rotating within a predetermined angle range, for example.

[0194] The heat exchange ventilation unit (107D) may include a heat exchange device.

[0195] The heat exchanger may include, for example, a fan (not shown) installed in a case (not shown) and a heat exchange element (not shown) located inside the case.

[0196] The heat exchanger may include a PCM (Phase Change Material).

[0197] After the indoor air and outdoor air undergo heat exchange in the heat exchanger, they can be supplied to the heat pump unit described later.

[0198] Electricity Production Department (109D)

[0199] The electric power generation unit (109D) is provided by closing at least one of the upper area (S2) and lower area (S3) of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame unit (105D).

[0200] The electricity generation unit (109D) may include, for example, a solar energy generation unit and / or a thermoelectric element generation unit.

[0201] The solar energy generation unit can be a photovoltaic power generation method.

[0202] A solar energy generation unit may include, for example, solar panels, wiring, an inverter, etc.

[0203] The solar energy generation unit may further be provided with a rotating member that allows it to slide in the forward / rear direction of the curtain wall frame part (105D) depending on the position of the sun.

[0204] The rotating member can be controlled by the detection and control unit of the sensor unit to allow the relative angle of the solar energy generation unit to be adjusted.

[0205] The thermoelectric power generation unit is located adjacent to the solar energy power generation unit and can generate electricity by utilizing the temperature difference between the solar energy power generation unit and the heat storage unit.

[0206] The thermal storage unit may be provided with a structure including, for example, a phase change material (PCM) including a thermal conductor capable of absorbing or releasing heat.

[0207] The thermal storage unit can be placed adjacent to the thermoelectric power generation unit.

[0208] The electricity generation unit (109D) can generate electricity by utilizing the temperature difference between the solar energy generation unit and the heat storage unit during the day, and at night, as the external air temperature drops, the temperatures of the solar energy generation unit and the heat storage unit are reversed so that electricity can be generated even at night.

[0209] The electricity produced by the solar energy generation unit is used as electricity required for building operation, and the electricity produced by the thermoelectric element generation unit can be used for sensor monitoring equipment, etc., for the operation of the present invention.

[0210] Additionally, if necessary, an electric storage device (battery) may be further provided so that electricity produced in the electric production unit (109D) can be stored.

[0211] Heat pump section

[0212] The heat pump section is provided within either the upper region (S2) or the lower region (S3) of the central region (S1), which is another region of the space (S) of the curtain wall frame section (105D).

[0213] The heat pump unit can use the air discharged from the heat exchanger as a heat source.

[0214] The heat pump unit can supply the required amount of heat to the indoor space by heating and cooling the air while reducing heat loss by using outside and indoor air that has passed through a heat exchanger.

[0215] The heat pump section may include, for example, an evaporator, a compressor, a condenser, an expansion valve, a reversing valve, etc.

[0216]

[0217] <5th Example>

[0218] A modular building envelope system (100E) according to the fifth embodiment of the present invention is configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames (101E) arranged at a predetermined interval vertically and separated by a predetermined interval; a pair of second frames (103E) arranged at a predetermined interval while mutually connecting the sides of the pair of first frames (101E); a curtain wall frame section (105E) having a space (S) formed on the interior; a window section (107E) coupled to the curtain wall frame section (105E) to close the front of a central area (S1), which is part of the space (S) of the curtain wall frame section (105E); and a first sunshade section (109E) coupled to the curtain wall frame section (105E) to close an upper area (S2) formed above the central area (S1), which is another area of ​​the space (S) of the curtain wall frame section (105E). It is characterized by including: a second sunshade part (111E) coupled to the curtain wall frame part (105E) to close a lower area (S3) formed at the bottom of a central area (S1), which is another area of ​​the space (S) of the curtain wall frame part (105E); an electricity generation part (113E) provided in at least one of the first sunshade part (109E) or the second sunshade part (111E); and a bracket part provided so that the curtain wall frame part (105E) is installed on the outside of the building.

[0219] curtain wall frame section (105E)

[0220] The curtain wall frame section (105E) includes a pair of first frames (101E) and a pair of second frames (103E).

[0221] A pair of first frames (101E) are arranged with a predetermined spacing between them vertically.

[0222] A pair of first frames (101E) can be arranged side by side.

[0223] A pair of second frames (103E) are arranged spaced apart at a predetermined distance while each connecting the sides of a pair of first frames (101E).

[0224] A pair of second frames (103E) can be placed side by side.

[0225] The curtain wall frame section (105E) has a structure in which a space (S) is formed on the inside by the combination of a pair of first frames (101E) and a pair of second frames (103E).

[0226] Meanwhile, the curtain wall frame section (105E) may further include a first partition frame (201E) positioned between a pair of first frames (101E) and parallel to at least one of the pair of first frames (101E) so that the inner space (S) is divided into a central area (S1), an upper area (S2), and a lower area (S3), respectively.

[0227] In FIG. 10, an example is shown in which the space (S) inside the curtain wall frame section (105E) is divided into three spaces (S1, S2, S3) as the first partition frame (201E) becomes two.

[0228] Of course, the user can appropriately adjust the number of first partition frames (201E) as needed to partition the inner space (S) of the curtain wall frame section (105E) in various ways (the number of partition spaces, the size (volume) of the partition spaces, etc. can be varied), and can appropriately arrange necessary devices within the partitioned space.

[0229] Additionally, the curtain wall frame section (105E) may further include a second partition frame (not shown) positioned between a pair of second frames (103E) and parallel to at least one of the pair of second frames (103E) so that the inner space (S) is divided into multiple sections.

[0230] Of course, the inner space (S) of the curtain wall frame section (105E) can be divided into multiple grid-shaped spaces of various sizes (volumes) by the first partition frame (201E) and the second partition frame (not shown).

[0231] Additionally, the curtain wall frame section (105E) may further be provided with an insulation section (203E) at least one of the rear position corresponding to the upper region (S2) to be described later and the rear position corresponding to the lower region (S3).

[0232] The insulation section (203E) may have a configuration in which one or more of the following are combined:, for example, an EPS panel (Expanded Polystyrene Panel), an XPS panel (Extruded Polystyrene Panel), a PUR / PIR panel (Polyurethane / Polyisocyanurate Panel), a mineral wool panel, a vacuum insulation panel, a PU sandwich panel, and a cellulose insulation panel.

[0233] Window frame (107E)

[0234] The window section (107E) is connected to the curtain wall frame section (105E) to close the front of the central area (S1), which is part of the space (S) of the curtain wall frame section (105E).

[0235] The window frame (107E) may include, for example, smart glass and a sash that fixes the smart glass.

[0236] Smart glass may include a glass layer and a polarizing film that is closely attached to the rear surface of the glass layer.

[0237] One or more polarizing films are superimposed and attached to a glass layer to control the irradiation rate of sunlight entering the room and block visible light.

[0238] The glass layer can be made of double glass, and a polarizing film can be placed between the double glass.

[0239] A condensation prevention member may be located on the chassis, and the condensation prevention member may include, for example, a PCM (Phase Change Material).

[0240] The PCM may include a thermal conductor capable of absorbing or releasing heat.

[0241] First tier (109E)

[0242] The first shading part (109E) is coupled to the curtain wall frame part (105E) to close the upper area (S2) of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame part (105E).

[0243] The first shaping part (109E) can be connected to the curtain wall frame part (105E) in a structure that protrudes further forward than the window part (107E).

[0244] The first secondary part (109E) may have an exterior finishing material further attached to the front surface.

[0245] Secondary part (111E)

[0246] The second shaping section (111E) is coupled to the curtain wall frame section (105E) to close the lower area (S3) of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame section (105E).

[0247] The second shaping part (111E) can be connected to the curtain wall frame part (105E) in a structure that protrudes further forward than the window part (107E).

[0248] The second secondary portion (111E) may have an exterior finishing material further attached to its front surface.

[0249] Electricity Production Department (113E)

[0250] The electric power generation unit (113E) is provided in at least one of the first generation unit (109E) or the second generation unit (111E).

[0251] The electricity generation unit (113E) may include, for example, a solar energy generation unit and / or a thermoelectric element generation unit.

[0252] The solar energy generation unit can be a photovoltaic power generation method.

[0253] A solar energy generation unit may include, for example, solar panels, wiring, an inverter, etc.

[0254] The solar energy generation unit may further be provided with a rotating member that allows it to slide in the forward / rear direction of the curtain wall frame part (105E) depending on the position of the sun.

[0255] The rotating member can be controlled by the detection and control unit of the sensor unit to allow the relative angle of the solar energy generation unit to be adjusted.

[0256] The thermoelectric power generation unit is located adjacent to the solar energy power generation unit and can generate electricity by utilizing the temperature difference between the solar energy power generation unit and the heat storage unit.

[0257] The thermal storage unit may be provided with a structure including, for example, a phase change material (PCM) including a thermal conductor capable of absorbing or releasing heat.

[0258] The thermal storage unit can be placed adjacent to the thermoelectric power generation unit.

[0259] The electricity generation unit (113E) can generate electricity by utilizing the temperature difference between the solar energy generation unit and the heat storage unit during the day, and at night, as the external air temperature drops, the temperatures of the solar energy generation unit and the heat storage unit are reversed so that electricity can be generated even at night.

[0260] The electricity produced by the solar energy generation unit is used as electricity required for building operation, and the electricity produced by the thermoelectric element generation unit can be used for sensor monitoring equipment, etc., for the operation of the present invention.

[0261] Additionally, if necessary, an electric storage device (battery) may be further provided so that electricity produced in the electric production unit (113E) can be stored.

[0262]

[0263] <6th Example>

[0264] A modular building envelope system (100F) according to the sixth embodiment of the present invention is configured in a modular manner and installed on the exterior of a building, comprising: a pair of first frames (101F) arranged at a predetermined interval vertically and separated by a predetermined interval; a pair of second frames (103F) arranged at a predetermined interval while mutually connecting the sides of the pair of first frames (101F); a curtain wall frame section (105F) having a space (S) formed on the interior; a window section (107F) coupled to the curtain wall frame section (105F) to close the front of a central area (S1), which is part of the space (S) of the curtain wall frame section (105F); and a first heat exchange ventilation section (109F) provided in the curtain wall frame section (105F) to open and close an upper area (S2) formed above the central area (S1), which is another area of ​​the space (S) of the curtain wall frame section (105F). It is characterized by including: a second heat exchange ventilation unit (111F) provided in the curtain wall frame unit (105F) to open and close a lower area (S2) formed in the lower part of a central area (S1), which is another area of ​​the space (S) of the curtain wall frame unit (105F); and a bracket unit provided so that the curtain wall frame unit (105F) is installed on the outside of the building.

[0265] The following describes each component.

[0266] Curtain wall frame section (105F)

[0267] The curtain wall frame section (105F) includes a pair of first frames (101F) and a pair of second frames (103F).

[0268] A pair of first frames (101F) are arranged with a predetermined spacing between them vertically.

[0269] A pair of first frames (101F) can be arranged side by side.

[0270] A pair of second frames (103F) are arranged spaced apart at a predetermined distance while each connecting the sides of a pair of first frames (101F).

[0271] A pair of second frames (103F) can be arranged side by side.

[0272] The curtain wall frame section (105F) has a structure in which a space (S) is formed on the inside by the combination of a pair of first frames (101F) and a pair of second frames (103F).

[0273] Meanwhile, the curtain wall frame section (105F) may further include a first partition frame (201F) positioned between a pair of first frames (101F) and parallel to at least one of the pair of first frames (101F) so that the inner space (S) is divided into a central area (S1), an upper area (S2), and a lower area (S3), respectively.

[0274] In FIG. 12, an example is shown in which the space (S) inside the curtain wall frame section (105F) is divided into three spaces (S1, S2, S3) as the first partition frame (201F) becomes two.

[0275] Of course, the user can appropriately adjust the number of first partition frames (201F) as needed to partition the inner space (S) of the curtain wall frame section (105F) in various ways (the number of partition spaces, the size (volume) of the partition spaces, etc. can be varied), and can appropriately arrange necessary devices within the partitioned space.

[0276] Additionally, the curtain wall frame section (105F) may further include a second partition frame (not shown) positioned between a pair of second frames (103F) so as to be parallel to at least one of the pair of second frames (103F), so that the inner space (S) is partitioned into multiple sections.

[0277] Of course, the inner space (S) of the curtain wall frame section (105F) can be divided into multiple grid-shaped spaces of various sizes (volumes) by the first partition frame (201F) and the second partition frame (not shown).

[0278] Additionally, the curtain wall frame section (105F) may further be provided with an insulation section (203F) at least one of the rear position corresponding to the upper region (S2) to be described later and the rear position corresponding to the lower region (S3).

[0279] The insulation section (203F) may have a configuration in which one or more of the following are combined:, for example, an EPS panel (Expanded Polystyrene Panel), an XPS panel (Extruded Polystyrene Panel), a PUR / PIR panel (Polyurethane / Polyisocyanurate Panel), a mineral wool panel, a vacuum insulation panel, a PU sandwich panel, or a cellulose insulation panel.

[0280] Window and door section (107F)

[0281] The window section (107F) is connected to the curtain wall frame section (105F) to close the front of the central area (S1), which is part of the space (S) of the curtain wall frame section (105F).

[0282] The window frame (107F) may include, for example, smart glass and a sash that fixes the smart glass.

[0283] Smart glass may include a glass layer and a polarizing film that is closely attached to the rear surface of the glass layer.

[0284] One or more polarizing films are superimposed and attached to a glass layer to control the irradiation rate of sunlight entering the room and block visible light.

[0285] The glass layer can be made of double glass, and a polarizing film can be placed between the double glass.

[0286] A condensation prevention member may be located on the chassis, and the condensation prevention member may include, for example, a PCM (Phase Change Material).

[0287] The PCM may include a thermal conductor capable of absorbing or releasing heat.

[0288] First heat exchange ventilation unit (109F)

[0289] The first heat exchange ventilation unit (109F) is coupled to the curtain wall frame unit (105F) to open and close the upper area (S2) formed above the central area (S1), which is another area of ​​the space (S) of the curtain wall frame unit (105F).

[0290] The first heat exchange ventilation unit (109F) may include a plurality of blades configured to open and close the air passage while rotating within a predetermined angle range, for example.

[0291] The first heat exchange ventilation unit (109F) may include a heat exchange device.

[0292] The heat exchanger may include, for example, a fan (not shown) installed in a case (not shown) and a heat exchange element (not shown) located inside the case.

[0293] The heat exchanger may include a PCM (Phase Change Material).

[0294] After the indoor air and outdoor air undergo heat exchange in a heat exchanger, they can be supplied to a heat pump unit (not shown).

[0295] Second heat exchange ventilation unit (111F)

[0296] The second heat exchange ventilation unit (111F) is coupled to the curtain wall frame unit (105F) to open and close the lower area (S3) formed at the bottom of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame unit (105F).

[0297] The second heat exchange ventilation unit (111F) may include a plurality of blades configured to open and close the air passage while rotating within a predetermined angle range, for example.

[0298] The second heat exchange ventilation unit (111F) may include a heat exchange device.

[0299] The heat exchanger may include, for example, a fan (not shown) installed in a case (not shown) and a heat exchange element (not shown) located inside the case.

[0300] The heat exchanger may include a PCM (Phase Change Material).

[0301] After the indoor air and outdoor air undergo heat exchange in a heat exchanger, they can be supplied to a heat pump unit (not shown).

[0302] Heat pump section

[0303] The heat pump section may be provided within either the upper area (S2) or the lower area (S3) of the central area (S1), which is another area of ​​the space (S) of the curtain wall frame section (105F).

[0304] The heat pump unit can use the air discharged from the heat exchanger as a heat source.

[0305] The heat pump unit can supply the required amount of heat to the indoor space by heating and cooling the air while reducing heat loss by using outside and indoor air that has passed through a heat exchanger.

[0306] The heat pump section may include, for example, an evaporator, a compressor, a condenser, an expansion valve, a reversing valve, etc.

[0307]

[0308] Bracket section

[0309] The bracket section is provided so that the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F) is installed on the exterior of the building.

[0310] The bracket section includes: an upper installation bracket module (300, 600) provided such that the upper portion of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F) is installed on the outside of the building; and a lower installation bracket module (900) provided such that the lower portion of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F) is installed on the outside of the building.

[0311] To explain in more detail an example of the structure of the upper mounting bracket module (300, 600), the upper mounting bracket module (300, 600) includes: a first upper mounting bracket (305, 605) comprising a first fixing plate (301, 601) that is coupled to the outer wall or slab of a building; and a second fixing plate (303, 603) that is bent and extended from the end of the first fixing plate (301, 601); and a second upper mounting bracket (307, 607) having one side coupled to the second fixing plate (303, 603) and the other side coupled to the upper part of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F).

[0312] The first upper mounting bracket (300, 600) includes a first fixing plate (301, 601) and a second fixing plate (303, 603).

[0313] The first fixed plate (301) is an embodiment that is coupled to the outer wall of a building, and the first fixed plate (601) is an embodiment that is coupled to the slab of a building.

[0314] The first fixed plate (301) is connected to the outer wall of the building by a fixed member (B).

[0315] The first fixing plate (301) may have at least one hole (H) formed therein through which the fixing member (B) passes.

[0316] The first fixed plate (301) may have serrations formed around the hole (H).

[0317] A washer (W) may be further fastened between the head (BH) of the fixing member (B) and the first fixing plate (301), and a serration may be formed on one side of the washer (W) to engage with the serration formed around the hole (H) of the first fixing plate (301) to increase the bonding strength.

[0318] The first fixed plate (601) is connected to the slab of the building by a fixed member (B).

[0319] The first fixing plate (601) may have at least one hole (H) formed therein through which the fixing member (B) passes.

[0320] The first fixed plate (601) may have serrations formed around the hole (H).

[0321] A washer (W) may be further fastened between the head (BH) of the fixing member (B) and the first fixing plate (601), and a serration may be formed on one side of the washer (W) to engage with the serration formed around the hole (H) of the first fixing plate (601) to increase the bonding strength.

[0322] The second fixed plate (303, 603) is formed by bending and extending from the end of the first fixed plate (301, 601).

[0323] The second fixing plate (303, 603) may have at least one hole (H) formed therein through which the fixing member (B) passes.

[0324] The second fixed plate (303, 603) may have serrations formed around the hole (H).

[0325] A washer (W) may be further fastened between the head (BH) of the fixing member (B) and the second fixing plate (303, 603), and a serration may be formed on one side of the washer (W) to engage with the serration formed around the hole (H) of the second fixing plate (303, 603) to increase the bonding strength.

[0326] One side of the second upper mounting bracket (307, 607) is connected to the second fixing plate (303, 603), and the other side is connected to the upper part of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F).

[0327] For the first upper mounting bracket (300) which is an embodiment coupled to the outer wall of a building, the second upper mounting bracket (307) may include a first extension plate portion (307a) coupled to the second fixing plate (303), and a second extension plate portion (307b) formed to protrude forward from the end of the extension plate portion (307a) and coupled to the upper part of the curtain wall frame portion (105A, 105B, 105C, 105D, 105E, 105F).

[0328] For the first upper mounting bracket (600) which is an embodiment coupled to the slab of a building, the second upper mounting bracket (607) includes a first base plate (609) coupled to the second fixing plate (603) by a fixing member (B), and a second base plate (611) that is bent and extended from the end of the first base plate (609) and coupled to the upper part of the curtain wall frame part (105A).

[0329] The first base plate (609) is connected to the second fixed plate (603) by a fixed member (B).

[0330] The first base plate (609) may have at least one hole (H) formed therein through which a fixing member (B) passes.

[0331] The first base plate (609) may have serrations formed around the hole (H).

[0332] A washer (W) may be further fastened between the head (BH) of the fixing member (B) and the first base plate (609), and a serration may be formed on one side of the washer (W) to engage with the serration formed around the hole (H) of the first base plate (609) to increase the bonding strength.

[0333] The second base plate (611) is formed by bending and extending from the end of the first base plate (609).

[0334] The second base plate (611) is connected to the upper part of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F) by a fixing member (not shown).

[0335] The second base plate (611) may have at least one hole (H) formed therein through which a fixing member passes.

[0336] The second base plate (611) may have serrations formed around the hole (H).

[0337] A washer (W) may be further fastened between the head of the fixing member and the second base plate (611), and serrations may be formed on one side of the washer (W) to engage with the serrations formed around the hole (H) of the second base plate (6111) to increase the bonding strength.

[0338]

[0339] Next, the lower installation bracket module (900) is provided so that the lower part of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F) is installed on the outside of the building.

[0340] To explain in more detail an example of the structure of the lower installation bracket module (900), the lower installation bracket module (900) comprises: a first lower installation bracket (901) including a first connecting plate (1001) that is connected to a stepped portion formed on the outer wall of a building; and a second connecting plate (1003) that is bent and extended from the end of the first connecting plate (1001); and a second lower installation bracket (907) including a first panel (903) connected to the second connecting plate (1003); and a second panel (905) that is bent and extended from the end of the first panel (903) and connected to the lower portion of the curtain wall frame portion (105A, 105B, 105C, 105D, 105E, 105F).

[0341] The first lower mounting bracket (901) includes a first connecting plate (1001) and a second connecting plate (1003).

[0342] The first connecting plate (1001) is connected to a stepped portion formed on the outer wall of the building.

[0343] The first connecting plate (1001) is connected to the stepped portion by a fixing member (not shown).

[0344] The first coupling plate (1001) may have at least one hole (H) formed therein through which a fixing member passes.

[0345] The first coupling plate (1001) may have serrations formed around the hole (H).

[0346] A washer (W) may be further fastened between the head of the fixing member and the first coupling plate (1001), and serrations may be formed on one side of the washer (W) to engage with the serrations formed around the hole (H) of the first coupling plate (1001) to increase the bonding strength.

[0347] The second connecting plate (1003) is formed by being bent and extended from the end of the first connecting plate (1001).

[0348] In the second coupling plate (1003), at least one hole (H) is formed for coupling with the second lower mounting bracket (907).

[0349] Meanwhile, the first lower mounting bracket (901) may further include a support plate (909) that interconnects and supports the first coupling plate (1001) and the second coupling plate (1003).

[0350] As a result, the rigidity of the first lower mounting bracket (901) can be further improved.

[0351] The second lower mounting bracket (907) includes the first panel (903) and the second panel (905).

[0352] The first panel (903) is connected to the second connecting plate (1003).

[0353] The first panel (903) may have at least one hole (H) formed therein through which a fixing member (B) passes.

[0354] The first panel (903) may have serrations formed around the hole (H).

[0355] A washer (W) may be further fastened between the head (BH) of the fixing member (B) and the first panel (903), and a serration may be formed on one side of the washer (W) to engage with the serration formed around the hole (H) of the first panel (903) to increase the bonding strength.

[0356] The second panel (905) is formed by being bent and extended from the end of the first panel (903).

[0357] The second panel (905) is connected to the lower part of the curtain wall frame section (105A, 105B, 105C, 105D, 105E, 105F).

[0358]

[0359] As described above, according to the embodiments of the present invention, a partitionable space is formed on the inner side of the curtain wall frame, thereby providing the effect of allowing devices to be selectively arranged to meet the diverse needs of the user.

[0360] In addition, since a bracket part is provided to enable the curtain wall frame part to be installed on the exterior of the building, the exterior installation work of the present invention is facilitated.

[0361] Although it has been described above that all components constituting an embodiment of the present invention are combined or operate as a single unit, the present invention is not necessarily limited to such an embodiment. That is, within the scope of the purpose of the present invention, all components may be selectively combined in one or more ways to operate.

[0362] The foregoing description is merely an illustrative explanation of the technical concept of the present invention, and those skilled in the art to which the present invention pertains will be able to make various modifications and variations within the scope of the essential characteristics of the present invention. Accordingly, the embodiments disclosed in the present invention are intended to explain, not limit, the technical concept of the present invention, and the scope of the technical concept of the present invention is not limited by these embodiments. The scope of protection of the present invention shall be interpreted by the claims below, and all technical concepts within an equivalent scope shall be interpreted as being included within the scope of rights of the present invention.

Claims

1. As a modular structure installed on the exterior of a building, A curtain wall frame section having a space formed on the inside, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames. An electric power generation unit provided in front of the above-mentioned curtain wall frame; and A bracket portion provided so that the above curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 2. As an envelope system composed of modules and installed on the exterior of a building, A curtain wall frame section having a space formed on the inside, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames. A heat exchange ventilation unit provided in front of the above curtain wall frame section; A heat pump unit provided within the space of the above curtain wall frame unit; and A bracket portion provided so that the above curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 3. As an envelope system composed of modules and installed on the exterior of a building, A curtain wall frame section having a space formed on the inside, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames. A window / door section coupled to the curtain wall frame section to close the front of the central area, which is part of the space of the curtain wall frame section; A first shaping member coupled to the curtain wall frame portion to close an upper area formed above the central area, which is another area among the spaces of the curtain wall frame portion; A second shaping member coupled to the curtain wall frame portion to close a lower region formed at the lower part of the central region, which is another region among the spaces of the curtain wall frame portion; and A bracket portion provided so that the above curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 4. An envelope system composed of modules and installed on the exterior of a building, A curtain wall frame section having a space formed on the inside, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames. A heat exchange ventilation unit coupled to the curtain wall frame to open and close the front of the central area, which is part of the space of the curtain wall frame; An electric power generation unit provided while closing at least one of the upper region formed above the central region and the lower region formed below, which are other regions among the spaces of the curtain wall frame portion; A heat pump unit provided within either an upper region formed above the central region or a lower region formed below the central region, which are different regions among the spaces of the curtain wall frame portion; and A bracket portion provided so that the above curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 5. As an envelope system composed of modules and installed on the exterior of a building, A curtain wall frame section having a space formed on the inside, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames. A window / door section coupled to the curtain wall frame section to close the front of the central area, which is part of the space of the curtain wall frame section; A first shaping member coupled to the curtain wall frame portion to close an upper area formed above the central area, which is another area among the spaces of the curtain wall frame portion; A second shaping member coupled to the curtain wall frame portion to close a lower region formed at the bottom of the central region, which is another region among the spaces of the curtain wall frame portion; An electric power generation unit provided in at least one of the first secondary unit or the second secondary unit; and A bracket portion provided so that the above curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 6. An envelope system composed of modules and installed on the exterior of a building, A curtain wall frame section having a space formed on the inside, comprising: a pair of first frames arranged at a predetermined interval vertically; and a pair of second frames arranged at a predetermined interval while mutually connecting the sides of the pair of first frames. A window / door section coupled to the curtain wall frame section to close the front of the central area, which is part of the space of the curtain wall frame section; A first heat exchange ventilation unit provided in the curtain wall frame portion to open and close an upper area formed above the central area, which is another area among the spaces of the curtain wall frame portion; A second heat exchange ventilation unit provided in the curtain wall frame portion to open and close a lower area formed at the bottom of the central area, which is another area among the spaces of the curtain wall frame portion; and A bracket portion provided so that the above curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 7. In Paragraph 1 or 2, The above curtain wall frame section is, A first partition frame positioned between the pair of first frames so as to be parallel with at least one of the pair of first frames, so as to divide the space into multiple parts; A modular building envelope system characterized by further including 8. In any one of paragraphs 3 through 6, The above curtain wall frame section is, A first partition frame positioned parallel to at least one of the pair of first frames between the pair of first frames so as to partition the upper region and the lower region respectively; A modular building envelope system characterized by further including 9. In any one of paragraphs 1 through 6, The above curtain wall frame section is, A second partition frame positioned between the pair of second frames and parallel to at least one of the pair of second frames so as to divide the space into multiple parts; A modular building envelope system characterized by further including 10. In any one of paragraphs 1 through 6, The above bracket part is, An upper installation bracket module configured such that the upper portion of the curtain wall frame is installed on the outside of the building; and A lower installation bracket module provided such that the lower part of the curtain wall frame portion is installed on the outside of the building; A modular building envelope system characterized by including 11. In Paragraph 10, The above upper mounting bracket module is, A first upper mounting bracket comprising: a first fixing plate coupled to an outer wall or slab of a building; and a second fixing plate formed by being bent and extended from the end of the first fixing plate; and A second upper mounting bracket, one side of which is connected to the second fixed plate and the other side of which is connected to the upper part of the curtain wall frame; A modular building envelope system characterized by including 12. In Paragraph 10, The above lower installation bracket module is, A first lower mounting bracket comprising: a first coupling plate coupled to a stepped portion formed on the outer wall of a building; and a second coupling plate formed by being bent and extended from the end of the first coupling plate; and A second lower mounting bracket comprising: a first panel coupled to the second coupling plate; and a second panel formed by being bent and extended at the end of the first panel and coupled to the lower part of the curtain wall frame portion; A modular building envelope system characterized by including

Citation Information

Patent Citations

  • External wall structure of building

    JP1996184114A

  • A assembly type curtain wall module structure and construction method thereof

    KR100989934B1

  • Curtain wall fixing device capable of adjusting level of curtain wall

    KR101412086B1

  • Installation structure of air conditioner attached to the exterior of a building in a drawer style

    KR102711720B1

  • KR20220131738A