Multifunctional floor air conditioning system

By integrating exhaust and air supply systems, sound-absorbing materials, and intelligent temperature and humidity control into the floor-standing air conditioning system, the problems of air volume, noise, and antibacterial properties are solved, improving the comfort and energy efficiency of the air conditioning system.

CN120969927APending Publication Date: 2025-11-18LK TOTAL AIR CONDITIONING CO LTD
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Patent Information

Application Number
CN202410647615.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Priority Date
2024-05-13
Filing Date
2024-05-23
Publication Date
2025-11-18

AI Technical Summary

Technical Problem

Traditional floor-standing air conditioning systems struggle to control airflow, reduce noise, and kill bacteria, and they cannot effectively control temperature and humidity, leading to decreased comfort and energy waste.

Method used

A multifunctional floor-standing air conditioning system was designed. By integrating the exhaust and air supply systems in the internal space between the ceiling and the floor, and combining sound-absorbing materials, filters, temperature and humidity control systems, and intelligent environmental control units, it achieves airflow regulation, noise reduction, antibacterial properties, and the creation of a comfortable environment.

Benefits of technology

It enables convenient airflow control, noise reduction, antibacterial function, and maintenance of a comfortable environment, reducing energy consumption and improving indoor comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a multifunctional floor air conditioning system, which comprises a ceiling space at the upper part of a ceiling, a floor space at the lower part of a floor, an air conditioning unit device integrated with an exhaust unit provided with an exhaust fan and an air supply unit provided with an air supply fan, and a movable exhaust port arranged in an internal space, an exhaust pipe installed in the ceiling space is connected with an exhaust part of the air conditioning device, a fixed exhaust port is arranged in the internal space, is connected with an exhaust part of the air conditioning unit through the exhaust pipe, forms a plurality of openings at the bottom, is connected with the internal space, and is respectively opened and closed by opening and closing pieces. A plurality of floor air outlets are placed in each opening, outside air of the floor space is supplied to the interior space when the opening is opened, a humidity control system installed in a certain part of the indoor space as a structure, a temperature control system for controlling the temperature of the room, and a control system for controlling the temperature of the room. And the temperature and humidity control system finally intelligently controls the air in the room through intelligent learning.
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Description

TECHNICAL FIELD

[0001] The present invention relates to a multifunctional floor air conditioning system that is easy to adjust air volume and provides noise reduction and antibacterial functions, as well as creating a comfortable indoor environment by controlling temperature and humidity and reducing power consumption. BACKGROUND

[0002] In the past, most buildings have adopted a ceiling-raised air conditioning system. The ceiling-outside air conditioning system is configured to supply cool air to the room through an air duct on the ceiling. In the case of such a ceiling air intake air conditioning system, in order for the cool air from the ceiling to reach the living area below 1.8 meters, and even more so at the position where people sit, the hot air above must be cooled first and then descend to the bottom, which inevitably reduces the cooling efficiency.

[0003] Against this background, a newly proposed air conditioning system is a floor air conditioning system. The floor air conditioning system uses the space inside the double layer for air supply and brings it into the room through the floor outlet.

[0004] Such a floor air conditioning system is suitable for facilities such as halls, theaters, and churches with high ceilings, as cool air is supplied from the floor side close to where people sit, which can reduce unnecessary heat load and require less power to transport the air conditioner.

[0005] However, the floor air outlet of the above-mentioned conventional floor air conditioning system has a problem of inhaling indoor air through a vortex, limiting the air diffusion range, so it is difficult to control the air distribution and air volume according to the heating mode, resulting in a decrease in air conditioning efficiency, and energy waste and cost increase due to air conditioning facilities.

[0006] Patent Document 1 provides a floor hole silent outlet that can be easily opened and closed by a simple rotation operation of the input plate and can control the air volume, but it is not easy to control the air volume because the user must operate the input plate himself.

[0007] In addition, the existing floor air conditioning system not only does not easily control the air volume, but also does not properly control the temperature and humidity, making the room hot and uncomfortable due to a large amount of moisture.

[0008] In addition, it is pointed out that a large amount of power is consumed due to unnecessary operation of the system, resulting in excessively high power costs.

[0009] PRIOR ART DOCUMENTS

[0010] PATENT DOCUMENTS

[0011] (Patent Document 1) Registered Patent No. 10-2661072 SUMMARY

[0012] PROBLEMS TO BE SOLVED BY THE INVENTION

[0013] The present invention aims to provide a multifunctional floor air conditioning system that has the function of creating a comfortable indoor environment and saving electric energy by controlling temperature and humidity and easily adjusting air volume, noise reduction, and antibacterial function, and the function of easily adjusting air volume, noise reduction, and antibacterial function.

[0014] Means for solving the problem

[0015] The present invention is to achieve the aforementioned object, comprising an internal space provided between the ceiling and the floor portion, a ceiling space of the ceiling upper portion connected with the floor space of the floor lower portion through the external space, the air conditioning device integrated with the exhaust portion provided with an exhaust fan, the air supply portion provided with an air supply fan, the movable exhaust port located in the internal space and connected with the exhaust portion of the air conditioning device through the exhaust duct installed in the ceiling space, the fixed exhaust port provided in the internal space and connected with the exhaust portion of the air conditioning device 100 through the exhaust duct, a plurality of openings formed in the floor portion 2 and connected with the internal space A and opened and closed by the opening and closing member 21A respectively, a plurality of floor exits provided in the openings and supplying the external air of the floor space to the internal space when the openings are opened, a humidity control system of the room prepared in the structure to be installed in any portion of the internal space A, a temperature control system controlling the temperature of the room prepared in the structure to be installed in any portion of the internal space A, and a floor air conditioning system having a plurality of functions including the humidity control system, which finally controls the indoor air in an intelligent manner through intelligent learning while storing the temperature and humidity data provided by the humidity control system and the temperature control system.

[0016] The outlet of the floor includes a cylindrical perforated mesh through which outside air of the lower space flows, a cover frame formed at a lower portion of the perforated mesh to cover the lower portion of the perforated mesh, first sound absorbing bodies formed at a distance from the inner and outer surfaces of the perforated mesh and regularly arranged, second sound absorbing bodies regularly arranged inwardly spaced from the first sound absorbing bodies, a space formed between the first sound absorbing bodies and the second sound absorbing bodies, a porous sound absorbing material provided at the inner side of the second sound absorbing bodies, a blowing control unit for controlling the amount of air blown, the blowing control unit including a blowing duct vertically disposed in the porous sound absorbing material, the blowing duct being rotatably coupled to the upper and lower portions, respectively, upper and lower vanes for controlling the opening of the air passage, the blowing duct being connected to the upper plate by the upper vane, the lower vane being connected to the lower plate, the upper and lower plates being connected to each other, the inclined plate forming an inclined surface when moving downward, a humidity control system detecting the body temperature, sweat smell, and behavior of a person remaining in the indoor space by measuring biological complex data required to control humidity, a control server unit for providing a comfortable indoor environment for the person based on the biological complex data, a heating portion and a cooling unit for providing optimal air to the indoor space based on the control of the control server unit, a heat exchanger for further exchanging energy provided by the heating and cooling portions, and the biological complex instrument being characterized by a multifunctional floor air conditioning system, the detection sensor being capable of detecting the sweat smell, and the first camera monitoring the behavior pattern of the person in a photographing manner.

[0017] In the perforated net and the first sound-absorbing body, a filter for filtering foreign matter in external air is provided, the filter is formed by bending into an obstetric shape, bones and spines are formed at a certain interval, the height and pitch of the obstetric part are each in the range of 2-5 mm, the filter is a support layer of a net structure; the first filter layer is made of low-melting fiber yarn; it is composed of a melt-blown second filter layer, an antibacterial functional coating solution is sprayed on one or more selected layers of the support layer, the first filter layer and the second filter layer, the antibacterial functional coating solution is composed of 300-500 parts by weight of bamboo charcoal powder, 300-500 parts by weight of cedar extract water, and 100-300 parts by weight of a binder, the blower control unit is arranged at the lower part of the air pipe to blow air, and the system further comprises a blower for generating static air, a thermometer for detecting the body temperature of a person staying in the indoor space, a second camera for shooting the face pattern of the person, an analysis server for comparing and analyzing the image provided by the second camera and the temperature data provided by the temperature measuring device, and a control unit for adjusting the heating and cooling parts according to the temperature analysis data obtained by the analysis server, the temperature and humidity control system has the characteristics of a multifunctional floor air conditioning system, and the system further comprises a cloud part for storing and managing large capacity, the former stores and manages the temperature and humidity data provided by the humidity control system and the temperature and humidity data from the cloud unit, and the latter is the temperature and humidity data learned and trained based on the intelligent edge computer unit, and finally controls the indoor air in an intelligent way. The intelligent complex environment control unit.

[0018] Inventive effects

[0019] According to the floor air conditioning system of the present application, not only the air volume can be conveniently controlled and the noise reduction and antibacterial functions can be provided, but also the moisture generated in the floor area can be appropriately removed, the air rising from the floor can be kept in the best comfortable state, even the odor can be kept in a pleasant state, and the effect of saving electric energy can be proved. BRIEF DESCRIPTION OF DRAWINGS

[0020] Figure 1 is a schematic diagram of the multifunctional floor air conditioning system of the present application.

[0021] Figure 2 is a schematic diagram of the floor air outlet of a single embodiment of the present application.

[0022] Figure 3 is a schematic diagram of the sound-absorbing material of a single embodiment of the present application.

[0023] Figure 4 is a schematic diagram of the filter member of a single embodiment of the present application.

[0024] Figure 5 is a schematic diagram of the floor air outlet of another embodiment of the present application.

[0025] Figure 6is a configuration diagram of the humidity control system configured as blocks.

[0026] Figure 7 is a schematic diagram of the temperature control system configured as blocks.

[0027] Figure 8 is a diagram of the temperature and humidity control system configured as blocks.

[0028] Figure 9 is a diagram of the air flow control system configured as blocks.

[0029] Figure 10 is a diagram conceptually representing the air flow control system installation structure.

[0030] Figure 11 is a diagram of the air flow control system fixed cap and control cap structure in a conceptual three-dimensional cross-sectional state.

[0031] Figure 12 is a conceptual diagram showing the fixed cap and control cap cross-sectional structure of the air flow control system.

[0032] Figure 13 is Figure 12 is an enlarged view of a portion of the fixed cap and control cap cross-sectional structure shown.

[0033] Figure 14 is Figure 11 is a conceptual diagram of the fixed cap and adjustment cap planar structure shown.

[0034] Figure 15 is Figure 14 is an enlarged view of a portion of the fixed cap and adjustment cap shown.

[0035] BRIEF DESCRIPTION OF DRAWINGS

[0036] 400A: floor socket

[0037] 400: perforated web

[0038] 410: cover plate

[0039] 610: first sound absorbing

[0040] 620: second sound absorbing

[0041] 630: porous sound absorbing material

[0042] 900: humidity control system

[0043] 1000: temperature control system

[0044] 2000: temperature and humidity control system

[0045] 3000: air flow control system DETAILED DESCRIPTION

[0046] Hereinafter, embodiments are described in detail with reference to the accompanying drawings. However, various changes can be made to the embodiments, and the scope of the patent application is not limited or restricted by the embodiments. Any changes, modifications, or replacements of the embodiments should be understood to be included in the scope of the rights.

[0047] The specific structure or function description of the embodiments is initiated only for the purpose of illustration, and can be changed and implemented in various forms. Therefore, the embodiments are not limited to the specific form of disclosure, and the scope of the specification includes changes, unification or replacement included in the descriptive concept.

[0048] Terms such as first or second can be used to describe various components, but the interpretation of these terms should be used only to distinguish one component from another component. For example, the first component can be named the second component, and similarly, the second component can be named the first component.

[0049] When a component is referred to as "connected" to another component, it is understood that it can be directly connected to or connected to another component, but there can be another component in between.

[0050] The terms used in the embodiments are only for the purpose of illustration, and should not be interpreted as limiting. The singular expression includes the plural expression, unless the context clearly indicates otherwise. In this specification, the term "include" or "have" should be understood as specifying the presence of features, numbers, steps, actions, components, parts, or combinations thereof described herein, and does not exclude the presence or addition of one or more other features or numbers, steps, actions, components, parts, or combinations thereof.

[0051] Unless otherwise defined, all terms used herein, including technical or scientific terms, have the same meaning as commonly understood by those skilled in the art to which the embodiments belong. Terms defined in a commonly used dictionary should be interpreted as having a meaning consistent with its meaning in the relevant description, and should not be interpreted in an idealistic or overly formal sense, unless specifically defined in this application.

[0052] In addition, in describing the drawings, the same components should be given the same reference numerals regardless of the drawing code, and the same repeated description should be omitted. In describing the embodiments, if it is judged that a specific description of the relevant notification technology can unnecessarily obscure the gist of the embodiments, detailed explanation should be omitted.

[0053] Advantages and features of the present application and methods of accomplishing the same can be understood by reference to the following detailed description taken in conjunction with the accompanying drawings, in which:

[0054] In the embodiments of the present application, all terms used herein, including technical or scientific terms, have the same meaning as commonly understood by one of ordinary skill in the art to which the present application pertains, unless otherwise defined. Terms such as those defined in a generally used dictionary should be interpreted as having a meaning consistent with its meaning in the context of the relevant description, and should not be interpreted in an ideal or overly formal sense, unless explicitly defined in the embodiments of the present application.

[0055] The shapes, sizes, ratios, angles, and numbers disclosed in the drawings for illustrating the embodiments of the present application are illustrative and are not limited to the shown matters. Also, in describing the present application, if it is judged that a detailed description of the related known technology can unnecessarily obscure the gist of the present application, the detailed description will be omitted. If the words such as "include", "have", and "be done" are used in the specification, other parts can be added unless "only" is used. This includes a case where a component is expressed in singular and includes plural, unless specifically and explicitly stated.

[0056] In interpreting the components, it will be interpreted to include an error range even if it is not explicitly stated.

[0057] If the description of the positional relationship is described as "above", "top", "below", "beside", etc., one or more other parts can be located between the two parts unless "immediately" or "directly" is used.

[0058] The term "opening" of one element or another element or layer of a layer includes any case where another layer or other element is directly inserted on or in the middle of another device. Throughout the specification, the same reference numerals represent the same components.

[0059] For convenience of explanation, the size and thickness of each configuration shown in the drawings are shown, and the present application is not necessarily limited to the size and thickness of the shown structure.

[0060] The features of each of the embodiments of the present application can be partially or wholly combined with each other, and as can be fully understood by those skilled in the art, they can be technically interlocked and driven, and each embodiment can be executed independently of or in association with each other.

[0061] Referring to the accompanying drawings, embodiments of the present invention have been described in more detail. However, the present invention is not necessarily limited to such embodiments, and various modifications can be made without departing from the spirit of the invention. Therefore, the embodiments disclosed in this invention are not intended to limit the spirit of the invention, but are for illustrative purposes, and the scope of the spirit of the invention is not limited by such embodiments. Therefore, the above embodiments should be understood as illustrative and not limited in all respects. The scope of protection of the present invention should be interpreted according to the following claims, and all technical ideas within the equivalent scope should be interpreted as falling within the scope of the claims of the present invention.

[0062] Therefore, other implementations, other methods of implementation, and implementations equivalent to the patent claims also fall within the scope of the following claims.

[0063] Figure 1 This is a schematic diagram of the multifunctional floor-standing air conditioning system of the present invention. Figure 2 This is a schematic diagram of a floor air outlet according to a single embodiment of the present invention. Figure 3 This is a schematic diagram of a sound-absorbing material according to a single embodiment of the present invention. Figure 4 This is a schematic diagram of a filter component according to a single embodiment of the present invention. Figure 5 This is a schematic diagram of a floor air outlet according to another embodiment of the present invention. Figure 6 This is a configuration diagram of the humidity control system as a block. Figure 7 This is a schematic diagram of a temperature control system configured in blocks. Figure 8 A diagram showing the configuration of a temperature and humidity control system as blocks. Figure 9 A conceptual diagram illustrating the installation configuration for an airflow control system. Figure 10 A conceptual diagram of the installation structure for the airflow control system. Figure 11 A conceptual three-dimensional structural diagram of the fixed cap and control cap of the airflow control system. Figure 12 Cross-sectional structural diagram of the fixed cap and control cap of the airflow control system. Figure 13 for Figure 12 The diagram shows an enlarged portion of the fixed cap and control cap structure. Figure 14 yes Figure 11 and Figure 11 The diagram shown is a conceptual representation of the planar structure of the fixed cap and the adjusting cap. Figure 15 yes Figure 14 Enlarged view of the fixed cap and adjusting cap shown.

[0064] Reference Figure 1The floor air conditioning system of the present invention is disposed between a ceiling portion 1 and a floor portion 2, a ceiling space D of the ceiling portion 1 is connected with a floor space F of the lower portion of the floor portion 2 through an outside space E; an exhaust unit equipped with an exhaust fan 111 and a supply unit equipped with a supply fan 121 are integrated with an air conditioning unit 100; a movable type is connected to an exhaust portion exhaust port 200 of the air conditioning device 100 through an exhaust duct 10 located in an inside space A and installed in the ceiling space D; a fixed exhaust port 300 is placed in the inside space 10 and connected with the exhaust portion of the air conditioning unit 100 through the exhaust duct 10; a plurality of openings 20A are formed in the floor portion 2, connected with the inside space 20A, and opened and closed by opening and closing members 21A, respectively; and each of the openings 20A can include a plurality of floor outlets 400A, which supply outside air of the floor space F into the inside space A when the openings 20A are opened.

[0065] The air conditioning device 100 further includes a ventilation port 500 disposed in the inside space A, the ventilation port 500 is connected with a ventilation duct 50 installed above an upper ceiling partition 1 above the ceiling space D, and the ventilation duct 50 is installed to connect a supply portion of the air conditioning device 100. At this time, the ventilation duct 500 is provided with a valve or damper 510 to block the flow of ventilation or adjust the amount of ventilation. In addition, in or near the air supply portion of the air conditioning unit 100, ventilation and air supply can be cut off to selectively send one of the ventilation and air supply to the floor space F, or a ventilation control valve 520 adjusts the amount of ventilation and air supply (i.e. outside air) mixed.

[0066] On the other hand, the air conditioning unit 100 includes an electric heat exchange unit 101, which converges the temperature of the outside air to room temperature by heat exchange between the exhaust portion and the outside air passing through the air supply portion, and a first HEPA filter 122 provided in the supply device to remove five sound level substances in the outside air flowing from the outside of the building, and a second HEPA filter 112 provided in the exhaust portion to remove pollutants (pathogens, etc.) discharged from the inside of the building to the outside of the building, and it is desirable to provide a cold / hot water coil portion 123 in the supply device to increase the temperature of the cold outside air or to reduce the hot temperature in winter or summer.

[0067] The first exhaust port 200 is connected to the exhaust pipe 10 through a flexible pipe 210 capable of stretching, rotating, and twisting, and the inner wall of the internal space A can be provided with a plurality of fixing members 7 to fix the first exhaust port 200 at a position movable by the flexible pipe 210 to a plurality of positions. The outlet 400A for the floor is a cylindrical perforated net 400 through which external air of the floor space F flows in; a cover plate 410 is formed at the lower portion of the perforated net 400, but is formed at the lower portion of the perforated net 400 covering the opening; a first sound absorbing body 610 in which a plurality of penetration holes 611 are formed, which are spaced apart from the inner circumference of the perforated net 400 and are arranged at regular intervals; the first sound absorbing body 610 includes a second sound absorbing body 620 which is spaced inwardly and regularly arranged to form a plurality of penetration holes 621, the first sound absorbing body 610 and the second sound absorbing body 620 form a certain volume of space, and the second sound absorbing material 620 can be placed inside the second sound absorbing material 630.

[0068] The perforated net 400 is formed with a plurality of penetration holes at the outer circumferential surface, but the shape of the opening can consist of shapes including a circle, a triangle, a square, an ellipse, a track shape, a diamond, a hexagon, and an octagon. According to the present application, the cylindrical first sound absorbing body 610 and the second sound absorbing body 620 respectively have a plurality of through holes 611 and a plurality of through holes 621. The first sound absorbing body 610 and the second sound absorbing body 620 are spaced apart from each other, and the second sound absorbing body 620 is spaced inwardly with respect to the first sound absorbing body 610. Through this configuration, a certain volume of space is formed between the first sound absorbing body 610 and the second sound absorbing body 620, and as noise is propagated through the holes 611, 621 formed in the first sound absorbing body 610 and the second sound absorbing body 620, respectively, the noise is configured to be absorbed by the porous sound absorbing material 630. In one embodiment of the present application, the first sound absorbing body 610 and the second sound absorbing body 620 can be made of a material including at least one of nitrile rubber, cork, and synthetic rubber. Referring to Figure 3 , the sound absorbing material 630 can be composed of a plurality of components. In other words, the sound absorbing material 630 can be composed of a hollow cylinder and the like, and the sound absorbing material 630 formed at a certain height can match the height of the first sound absorbing body 610 and the second sound absorbing body 620 by overlapping a plurality of components. In addition, between the perforated net 400 and the first sound absorber 610, a filter 700 can be provided to filter foreign matter in air entering from the outside. The first sound absorbing body 610, the second sound absorbing body 620, the sound absorbing material 630, and the filter 700 can be fixed by a lower frame 410 and an upper fixing frame 420, for example. At this time, the fixing frame 420 can form a mesh network composed of a wire.

[0069] Referring to Figure 4, the filter member 700 can form a cylinder by bending into an umbrella shape, such that the bone portion 701 and obstetric portion 702 are regularly formed. Accordingly, when the circumference of the filter member 700 is a regular radius R, the circumference is 2ΠR, but in the present invention, it can be seen that the circumference (2x10xL) is formed, for example, when the circumference is a decagon. Accordingly, the dust collection area can be provided 1.7 to 3 times or more, thereby achieving the effect of improving the filter characteristics by 1.7 to 3 times.

[0070] It is good that the bone and spine of the filter member 700 are composed of one of the whole numbers of 20 to 50 angles, but the number of mountains and bones varies depending on the diameter of the perforated network 400. The height and pitch of the filter member 700 of the obstetric portion 702 can be in the range of 2-5 mm, respectively. In addition, the filter 700 is a mesh structure of the support layer 710; the first filter layer of the low-melting fiber yarn 711; it is composed of a second filter layer 712 of melt-blown material, and an antibacterial functional coating solution can be sprayed and coated on one or more selected layers between the support layer 710, the first filter layer 711, and the second filter layer 712.

[0071] The filter member 700 is formed by embossing the support layer 710, the first filter layer 711, and the second filter layer 712 and can be folded into a corrugated shape, assembled using a bending device of a small-scale embossing method. Here, the antibacterial functional coating solution can be mixed by 300-500 parts by weight of bamboo charcoal powder, 300-500 parts by weight of cypress extract, and 100-300 parts by weight of a binder. The bamboo charcoal powder is manufactured as a food additive for the refining process of soju to remove off-flavors and leached minerals. After the refining process, the bamboo charcoal powder (320±5 mesh) discharged into the slurry phase is hot air dried. Cypress extract water is a transparent extract water having a unique cypress aroma and is a byproduct of refining essential oil from cypress leaves. The bamboo charcoal powder is a diatomite residue used during refining, and the silica content (Si. 13.3%) is higher than that of pure bamboo charcoal (Si. 0.5%). The presence of silica is believed to have a favorable effect on hop adhesion.

[0072] From one ton of cypress leaves, about 1-2 liters of essential oil and about 200 liters of cypress extract water are obtained. The cypress extract water is water-soluble, and the pH values of 4 and 5 indicate a slight acidity.

[0073] If the weight of the bamboo charcoal powder is less than 300 weight, the deodorization rate and antibacterial performance of formaldehyde can be reduced, and if the weight exceeds 500 weight, it can be difficult to apply a liquid coating. Likewise, if the weight of the cypress extract is less than 300, the deodorization rate and antibacterial performance of formaldehyde can be reduced, and if it exceeds 500 weight, it can be difficult to apply a liquid. This is the result of repeated studies on 6 samples prepared by the inventors, in which the mixing ratio of a certain amount of bamboo charcoal powder and cypress extract is different, and the formaldehyde deodorization rate is 3 times.

[0074] The above-mentioned 6 samples were subjected to repeated antibacterial tests of E. coli and P. aeruginosa, and a large amount of bacteria was observed in the untreated group, but no bacteria were observed in all samples containing bamboo charcoal powder, and the bacterial reduction rate was 99.4% after 24 hours, having a very good antibacterial efficacy.

[0075] When the addition amount of bamboo charcoal is the same as the addition amount of the liquid coating roll. Using cypress extraction water instead of water can effectively deodorize formaldehyde. The far infrared emissivity of the bamboo charcoal liquid coating agent. The amount of anion emission and the bacterial reduction rate of all samples are the same. This is due to the addition of bamboo charcoal, which is judged to be unrelated to the cypress extract. On the other hand, the floor air conditioning system according to the present application can further include a blowing control unit 800 that controls the amount of air blown. Referring to Figure 5 , the blowing control unit 800 is composed of a blowing pipe 810 vertically placed in the porous sound-absorbing material 630; the air blower 820 can be configured to be placed in the lower part of the blowing pipe 810 and provide a constant amount of air with a set target value.

[0076] The blowing pipe 810 can include upper blades 810a and lower blades 810b, which are respectively rotationally coupled to the upper and lower parts to adjust the opening of the air passage. Specifically, the blowing pipe 810 is composed of an upper plate 811 to which the upper blades 810a are connected with respect to the top; a lower plate 810b engaged with the lower blades 812 for the bottom; and a slope plate 813 formed by connecting the upper plate 811 and the lower plate 812 to each other and at a downward slope. In other words, the upper blades 810a of the upper plate 811 and the lower blades 810b of the lower plate 812 are rotationally engaged with each other while maintaining the same spacing, or are reduced or distanced from each other as necessary, to control the spacing between the blades 810a, 810b, so that the amount and speed of air blown and the blowing direction of the external air to be discharged can be adjusted. The upper blades 810a and the lower blades 810b can be respectively installed on the upper plate 811 and the lower plate 812, connected with a rotation shaft (not shown)

[0077] Preferably, the upper blades 810a are installed to rotate such that the angle of rotational control is greater than 90°, and the lower blades 810b can be installed such that the angle of rotational control is less than 90°.

[0078] On the other hand, in some parts of the indoor space A, for example, asFigure 6 to Figure 8 As shown, the humidity control system 900, the temperature control system 1000, and the temperature and humidity control system 2000 can be configured to install them in such a way.

[0079] The humidity control system 900 can include a bio-composite material instrument 910, a sensing sensor 911, a first camera 912, a control server 913, a heating unit 914, a heat exchanger 915, and a cooling unit 916.

[0080] The humidity control system 900 is used to control the humidity of the indoor space A, and the bio-composite material measuring instrument 910 detects the body temperature, sweat smell, and behavior of the person staying in the indoor space in a way to measure the bio-composite material data required to control the humidity.

[0081] The bio-composite measuring device 910 can include a configuration further including a sensor 911 that detects the sweat smell of a person staying in the indoor space A, and a first camera 912 that monitors the behavior pattern of a person staying in the indoor space A by photographing.

[0082] The control server unit 913 can control the optimal humidity by controlling the heating portion 914 and the cooling portion 916 to provide a comfortable indoor environment for a person staying in the indoor space A according to the bio-composite data.

[0083] The heating unit 914 and the cooling unit 916 can provide optimal air to the indoor space A according to the control of the control server unit 913, and the heat exchanger unit 915 performs a heat exchange function of the energy provided by the heating portion and the cooling portion.

[0084] On the other hand, the temperature control system 1000 can include a configuration including a temperature measuring device 1100, a second camera 1200, an analysis server 1300, and a control unit 1400.

[0085] The temperature control system 1000 is to control the temperature of the indoor space A, and the temperature measuring device 1100 performs a function of measuring the body temperature of a person staying in the indoor space A, but measures the body temperature of the person in a non-contact infrared manner.

[0086] The second camera 1200 collects images by photographing the face pattern of a person staying in the indoor space A.

[0087] The analysis server 1300 makes a judgment by analyzing a method of providing optimal comfortable air in the indoor space A based on the image provided by the second camera and the temperature data provided by the temperature measuring device.

[0088] The control unit 1400 can control the heating portion 914 and the cooling portion 916 by based on the temperature analysis data derived from the analysis server, thereby providing the best comfortable air in the indoor space A.

[0089] On the other hand, when even the functions of the humidity control system 900 and the temperature control system 1000 cannot satisfy the best air provided to the indoor space A, the temperature and humidity control system 2000 can also operate.

[0090] In other words, the temperature and humidity control system 2000 can more intelligently and accurately control the temperature and humidity of the air based on the temperature and humidity data provided by the humidity control system 900 and the temperature control system 1000.

[0091] The temperature and humidity control system 2000 can include a configuration including a cloud unit 2100, a smart edge computer unit 2200, and a smart complex environment control unit 2300.

[0092] The cloud portion 2100 performs a function of storing and managing a large amount of data on temperature and humidity provided from the humidity control system 900 and the temperature control system 1000.

[0093] The smart edge computer unit 2200 will perform a function of intelligently repeating learning and training the temperature and humidity data provided from the cloud unit 2100.

[0094] The smart complex environment control unit 2300 performs a final control function on the air in an intelligent manner based on learning data trained from the smart edge computer unit 2200, thereby providing the best comfortable air for the indoor space A, allowing people to obtain the greatest satisfaction.

[0095] On the other hand, the plurality of floor outlets 400A supplying the outside air of the floor space F to the internal space A can be provided with a structure in which the air flow control system 3000 is installed, for example, as shown in Figure 9 .

[0096] Such an air flow adjustment system 3000 can include a fixed cap 3100, a control cap 3200, a micro flow source plate 3230, an elastic portion 3240, a grounding portion 3250, a terminal portion 3260, and an electrical sensing unit 3270 located at the bottom outlet 400A, as shown in Figure 10 to Figure 15 .

[0097] The fixed cap 3100 is fixed to the structure buried in the upper portion of the outlet 400A, and the lattice portion 3110 and the exhaust portion 3120 of the square structure can be composed of the structure.

[0098] The lattice portion 3110 can be composed of, for example, a mesh structure, and the exhaust portion 3120 can be composed of a structure formed between the lattice portions 3110, but the exhaust portion 3120 is provided to the internal space A in such a way that the air flow is adjusted so that people can feel the best comfort.

[0099] The adjustment cap 3200 can be installed at the lower portion of the fixed cap 3100 of the rotatable structure, and the membrane portion 3210 is opened and closed in such a way to adjust the space and the gap portion 3220 of the exhaust portion 3120 at the vertical bottom position of the exhaust portion 3120, to form a predetermined space area between the lattice portions 3110 at the vertical bottom position of the lattice portions 3110, which can include the configuration of the niche portion 3220.

[0100] The adjustment cap 3200 is rotated in an interlocking structure, the gear portion G is rotated by the power of the motor M installed on one side, the membrane portion 3210 is adjusted to rotate in accordance with the rotation of the control cap 3200, so that the space of the exhaust portion 3120 can be adjusted, the space of the exhaust portion 3120 at the same time of adjusting the air volume and the air flow pressure of the exhaust portion 3120 makes the space of the exhaust portion 3120, the air flow is discharged in the direction of the internal space A. People can feel the best comfort.

[0101] Of course, in order for people to feel the best comfort in this way, the rotational adjustment of the membrane portion 3210 can be achieved by the intelligent complex environment control unit 2300 of the temperature and humidity control system 2000.

[0102] In other words, the intelligent complex environment control unit 2300 is able to precisely control the gear portion G connected to the shaft of the motor M, so as to finally control the air in an intelligent way according to the learning data of temperature and humidity, so as to provide the best and comfortable air, so that people in the indoor space A get the greatest satisfaction.

[0103] Of course, it is preferred to use a stepper motor, for example, for such a motor M, but it is more preferred to use a variable reluctance type because it corresponds to the functional advantages of high-speed response and low inertia of the rotor, thereby quickly adjusting the air volume and the air flow pressure and minimizing the inertia.

[0104] The operation method of the membrane portion 3210 is to control the rotation in the exhaust portion 3120, and since the exhaust space area of the exhaust portion 3120 is controlled in an increasing or decreasing manner, the air flow pressure and the air volume of the air discharged from the exhaust portion 3120 are controlled and can be discharged.

[0105] On the other hand, inside the niche portion 3220, a micro flow source plate 3230 is installed in a structure that covers the gap portion 3220, and this micro flow source plate 3230 is combined with an elastic portion 3240 installed at one end to cover the gap portion 3220.

[0106] The elastic portion 3240 provides an elastic force in the direction of the micro flow source plate 3230 to cover the gap portion 3220.

[0107] If the air flow and air flow pressure are provided stronger than the elastic force provided by the micro flow source plate 3230, the micro flow source plate 3230 takes a retracted action in the gap portion 3220, and the air flow can be discharged through the gap portion 3220 by the exhaust portion 3120.

[0108] Of course, if the air flow and air pressure of the air are weaker than the elastic force provided to the micro flow source plate 3230, the air flow can be regenerated when the micro flow source plate 3230 returns to its original state.

[0109] Therefore, according to the volume of the air flow and the degree of the air flow pressure, the air flow can be discharged or blocked by acting on the elastic force provided stronger or weaker than the elastic portion 3240. The elastic portion 3240 is preferred, for example, using a torsion spring.

[0110] One end of the torsion spring is a structure to be caught on the micro flow source plate 3230, and the other end of the torsion spring is installed in a structure caught on the membrane portion 3210 so that the micro flow source plate 3230 can provide an elastic force in the direction of covering the gap portion 3220.

[0111] In addition, such air flow and air flow pressure can be achieved by adjusting the rotation strength of the fan according to the control of the intelligent complex environment control unit 2300, which can control the internal air of the indoor space A by directly calculating the temperature felt by a person, rather than simply controlling the temperature and humidity separately.

[0112] The intelligent complex environment control unit 2300 not only prevents sudden changes in temperature and humidity by mixing fresh outside air with internal air when entering through the fan, but also has the function of discharging stagnant internal hot and humid air to the outside in the hot season.

[0113] On the other hand, a grounding portion 3250 is provided at the lower end of the micro flow source plate 3230, and a terminal portion 3260 is installed at the lower portion of the grounding portion 3250.

[0114] Therefore, if the micro-current source plate 3230 covers the gap portion 3220, the ground portion 3250 and the terminal portion 3260 are in a grounded state, and this grounding can be sensed by the electric sensing unit 3270, and thus the electric sensing unit 3270 sensing the grounding condition performs a function of instructing the battery charging portion to be charged.

[0115] Of course, the battery charging unit performs a function of charging the power converted by the solar panel to the energy of the conversion portion, and the micro-current source plate 3230 covers the gap portion 3220.

[0116] In other words, the micro-current source plate 3230 covers the gap portion 3220, indicating that the floor air conditioning system in the building is in a non-operation state, and in this non-operation state of the floor air conditioning system, the battery charging unit is charged by the charging instruction of the electric sensing unit 3270.

[0117] Since the battery charged in this way provides necessary power for the operation of the aromatherapy powder installed in the room according to a predetermined set timer, the aromatherapy powder sprays a subtle aromatic fragrance to the inside of the indoor space A.

[0118] Of course, if the odor detection sensor detects that the fragrance diffused in the room has been sprayed a certain amount, the odor detection sensor can instruct the breaker to be powered off, thereby cutting off the power supply provided by the battery charging portion, and the power charged by the battery charging portion can be supplemented not only to the aromatherapy powder but also to the motor M and the fan by the distributor.

[0119] Therefore, when the floor air conditioning system is not operated, the charging power of the battery charging portion can be effectively supplemented and utilized, thereby improving the effective utilization of electric energy and the consumption of electric energy.

[0120] The above describes the composition and features of the present application based on the embodiment of the present application, but the present application is not limited thereto, and it is clear to those skilled in the art to which the present application pertains that various changes or modifications can be made within the idea and scope of the present application, and thus such changes or modifications belong to the scope of the appended patent claims.

Claims

1. A multi-functional floor air conditioning system, characterized in that, the multi-functional floor air conditioning system comprises: a ceiling space of a ceiling upper portion is provided between a ceiling and a floor portion, and the ceiling space of the ceiling upper portion is connected to a floor space below the floor portion through an outside space; an air conditioning unit in which an exhaust fan unit equipped with an exhaust fan and a supply fan unit equipped with a supply fan are combined together; a movable exhaust port provided in the indoor space and connected to an exhaust portion of the air conditioning unit through an exhaust duct provided in the ceiling space; a fixed exhaust port provided in the indoor space and connected to the exhaust portion of the air conditioning unit 100 through an exhaust duct; a plurality of openings are formed in the floor portion 2 to communicate with the indoor space (A), and each of the openings is opened and closed by an opening and closing member 21A; a plurality of floor air outlets are provided for the floor, and each of the air outlets is provided at the opening to supply outside air of the floor space to the indoor space when the opening is opened; a humidity control system prepared as a structure installed in any portion of the indoor space and controlling humidity in the room; a temperature control system (A) installed in the structure in any portion of the indoor space and controlling temperature in the room; and a temperature and humidity control system controlling indoor air in a final intelligent manner by intelligently learning while storing temperature and humidity data provided by the humidity control system and the temperature control system.

2. The multi-functional floor air conditioning system according to claim 1, wherein the temperature and humidity control system comprises: a temperature and humidity sensor installed in the structure in any portion of the indoor space and measuring temperature and humidity in the room; a temperature and humidity control unit installed in the structure in any portion of the indoor space and controlling temperature and humidity in the room; and a temperature and humidity control unit installed in the structure in any portion of the indoor space and controlling temperature and humidity in the room.

3. The multi-functional floor air conditioning system according to claim 1, wherein the temperature and humidity control system comprises: a temperature and humidity sensor installed in the structure in any portion of the indoor space and measuring temperature and humidity in the room; a temperature and humidity control unit installed in the structure in any portion of the indoor space and controlling temperature and humidity in the room; and a temperature and humidity control unit installed in the structure in any portion of the indoor space and controlling temperature and humidity in the room.

4. The multi-functional floor air conditioning system according to claim 1, wherein the temperature and humidity control system comprises: a temperature and humidity sensor installed in the structure in any portion of the indoor space and measuring temperature and humidity in the room; a temperature and humidity control unit installed in the structure in any portion of the indoor space and controlling temperature and humidity in the room; and a temperature and humidity control unit installed in the structure in any portion of the indoor space and controlling temperature and humidity in the room.

5. The multi-functional floor air conditioning system according to claim 1, wherein the temperature and humidity control system comprises: a temperature and