Walls and buildings

The structural wall configuration with aligned columns and connecting portions addresses the limitations of conventional structures, enhancing design freedom, strength, and earthquake resistance, enabling flexible and robust outdoor space designs.

JP7740309B2Active Publication Date: 2025-09-17SEKISUI HOUSE KK
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Patent Information

Application Number
JP2023139657
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-08-30
Publication Date
2025-09-17
Estimated Expiration
2043-08-30

AI Technical Summary

Technical Problem

Conventional framework structures in buildings often fail to meet the diverse needs for the size and shape of outdoor spaces due to structural limitations, limiting design freedom in space layout and size.

Method used

A structural wall configuration comprising a first, second, third, and fourth wall portion, with connecting portions and columns aligned to enhance strength, allowing for thinner walls and increased design freedom, and a skeleton structure with parallel walls connected by members for improved earthquake resistance and spatial arrangement.

Benefits of technology

The solution increases design freedom in spatial arrangement and size, enhances structural strength, and improves earthquake resistance while allowing for varied outdoor space configurations.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

To provide a skeleton wall and a building which enhance design flexibility of arrangement or a size of a space.SOLUTION: A skeleton wall 3 for supporting a building body has: a first wall part 11; a second wall part 12 which is configured to be parallel to the first wall part 11 at an interval; a third wall part 13 which is connected to the first wall part 11 and the second wall part 12; and a fourth wall part 14 which is connected to the first wall part 11 and the second wall part 12 at a position opposite to the third wall part 13 in the first wall part 11 and the second wall part 12.SELECTED DRAWING: Figure 2
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Description

[Technical Field]

[0001] The present disclosure relates to a structural wall and a building. [Background technology]

[0002] Buildings that are configured to include outdoor spaces are known. The building disclosed in Patent Document 1 has a loggia. A wall (called a piloti wall in the document) is provided next to the loggia. The building of Patent Document 2 has a parking space provided under the roof unit, and a wall (called a piloti wall in the document) is provided next to the parking space. [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Japanese Patent Application Laid-Open No. 2001-336294 [Patent Document 2] Japanese Patent Application Laid-Open No. 2002-004486 Summary of the Invention [Problem to be solved by the invention]

[0004] Users and designers have increasingly diverse needs for the size and shape of outdoor spaces within buildings. However, conventional framework structures often cannot fully meet these needs due to structural limitations. Therefore, there is room for improvement in walls and buildings to increase the design freedom of space layout and size within buildings. [Means for solving the problem]

[0005] (1) A structural wall that solves the above problem is a structural wall that supports a building body and includes a first wall portion, a second wall portion that is parallel to the first wall portion at a distance, a third wall portion that connects the first wall portion and the second wall portion, and a fourth wall portion that connects the first wall portion and the second wall portion at a position on the first wall portion and the second wall portion opposite the third wall portion. This configuration increases the strength of the structural wall. Therefore, when the structural wall is incorporated as part of the structural structure of a building, it increases the design freedom of the spatial arrangement and size.

[0006] (2) In the structural wall of (1) above, each of the first wall portion and the second wall portion includes a plurality of columns having webs, and in each of the first wall portion and the second wall portion, the plurality of columns are arranged so that the webs of the columns are aligned along the extension direction of the wall in a plan view. This configuration allows the first wall portion and the second wall portion to be made thin, thereby allowing the structural wall to be made thin.

[0007] (3) In the structural wall of (1) or (2), a connecting portion is provided that connects the plurality of columns of the first wall portion and the plurality of columns of the second wall portion, the connecting portion including a first annular connecting portion that connects the upper ends of the columns of the first wall portion and the second wall portion in an annular shape. This configuration can improve the strength of the structural wall.

[0008] (4) In the skeleton wall of (3), the connecting portion includes a second annular connecting portion, and the second annular connecting portion connects the columns in an annular shape at intermediate portions of the first wall portion and the second wall portion, respectively. This configuration can improve the strength of the skeleton wall.

[0009] (5) In the skeleton wall of any one of (1) to (4) above, the distance between the width center of the first wall portion and the width center of the second wall portion is 300 mm or more and 700 mm or less. With this configuration, the width of the skeleton wall can be limited within a predetermined range.

[0010] (6) A skeleton wall that solves the above problem is a building having a skeleton structure, the skeleton structure comprising the skeleton wall according to any one of (1) to (5) above and a framework structure connected to the skeleton wall. With this configuration, the building includes a skeleton wall, which increases the design freedom of the spatial arrangement or size of the building.

[0011] (7) A skeleton wall that solves the above problem is a building having a skeleton structure, the skeleton structure comprising a plurality of skeleton walls and a framework structure connected to the skeleton walls, each of the plurality of skeleton walls being the skeleton wall described in any one of (1) to (5) above, the plurality of skeleton walls being configured as exterior walls of the building, and one of the plurality of skeleton walls being arranged parallel to the other. With this configuration, the building includes a high-strength skeleton wall, thereby increasing the design freedom of the spatial arrangement or size of the building. Furthermore, because one of the plurality of skeleton walls is arranged parallel to the other, a building with a distinctive appearance and high design quality can be provided.

[0012] (8) In the building of (7) above, some of the plurality of skeleton walls in a first group are arranged in a line at intervals, and the remaining plurality of skeleton walls in a second group are arranged in a line at intervals, the skeleton walls of the second group are arranged parallel to the skeleton walls of the first group, the skeleton walls of the first group are connected to each other by connecting members, and the skeleton walls of the second group are connected to each other by connecting members. This configuration can improve the earthquake resistance of the building.

[0013] (9) In the building of (8) above, the second group of structural walls are arranged alternately with the first group of structural walls in a front view of the building. This configuration can improve the design of the building.

[0014] (10) In the building of any one of (7) to (9) above, a building body supported by the plurality of skeleton walls and the framework structure is provided between a first boundary surface formed along a first group of the skeleton walls and a second boundary surface formed along a second group of the skeleton walls, and the building body forms an indoor space and an outdoor space. According to this configuration, the indoor space and the outdoor space can be provided in the space between the first boundary surface and the second boundary surface.

[0015] (11) In the building of (10) above, the outdoor space includes a first outdoor space, which is configured to include the area between two adjacent structural walls in the first group when viewed from the front, or the area between two adjacent structural walls in the second group. This configuration allows the surrounding space of the building to be connected to the outdoor space of the building, thereby improving the openness of the outdoor space.

[0016] (12) In the building of (10), the outdoor space includes a second outdoor space, and the second outdoor space is provided along one of the structural walls of the first group, or along one of the structural walls of the second group. This configuration makes it possible to provide an outdoor space that is less exposed to wind and rain. [Effects of the Invention]

[0017] The skeleton wall and building of the present disclosure can increase the degree of freedom in designing the layout or size of spaces. [Brief explanation of the drawings]

[0018] [Figure 1] FIG. [Figure 2] FIG. 2 is a cross-sectional view of the skeleton wall taken along line 2-2 in FIG. [Figure 3] FIG. 3 is a cross-sectional view of the skeleton wall taken along line 3-3 in FIG. [Figure 4] This is a floor plan of the first floor of the building. [Figure 5] This is a floor plan of the second floor of the building. [Figure 6] A diagram of the interior space on the first floor. DETAILED DESCRIPTION OF THE INVENTION

[0019] A building 1 and a skeleton wall 3 of this embodiment will be described with reference to FIGS. Examples of the building 1 include a detached house, an apartment building, a commercial facility, and a public facility. In this embodiment, the building 1 is a single-family home.

[0020] The building 1 has a skeleton structure 2. The skeleton structure 2 comprises one or more skeleton walls 3 and a frame structure 4 connected to the skeleton walls 3. The skeleton structure 2 may have a load-bearing wall. The frame structure 4 is made up of a plurality of columns and cross members connecting the plurality of columns. The cross members include beams, girders, and slope beams. The cross members may also include foundations. The frame structure 4 forms the framework of the building 1. Base materials are attached to the frame structure 4. The wall surfaces are made up of the base materials.

[0021] The frame structure 4 is connected to the skeleton wall 3. Specifically, several members constituting the frame structure 4 are connected to the skeleton wall 3. In one example, some of the cross members constituting the frame structure 4 are connected to the first annular connecting portion 17 of the skeleton wall 3. Some of the cross members constituting the frame structure 4 are connected to the second annular connecting portion 18 of the skeleton wall 3.

[0022] The skeleton walls 3 are configured as exterior walls of the building 1. The skeleton walls 3 may be configured as interior walls of the building 1. In this embodiment, the skeleton walls 3 are configured as exterior walls. In this embodiment, the exterior walls include walls for enclosing the interior space SB and pilotis walls.

[0023] [Structure wall] The skeleton wall 3 will be described with reference to FIGS. The structural wall 3 supports the building main body 20. The structural wall 3 comprises a first wall portion 11, a second wall portion 12, a third wall portion 13, and a fourth wall portion 14. The second wall portion 12 is configured parallel to the first wall portion 11 and spaced apart from it. The third wall portion 13 is connected to the first wall portion 11 and the second wall portion 12. The fourth wall portion 14 is connected to the first wall portion 11 and the second wall portion 12 at a position on the first wall portion 11 and the second wall portion 12 opposite to the third wall portion 13.

[0024] The skeleton wall 3 has an internal space SA surrounded by a first wall portion 11, a second wall portion 12, a third wall portion 13, and a fourth wall portion 14. Water pipes, gas pipes, ventilation pipes, and electrical wiring may be arranged in the internal space SA. The top of the skeleton wall 3 is closed off by a flat roof 34.

[0025] In the skeleton wall 3, the first wall portion 11 and the second wall portion 12 each include a plurality of columns 15. The columns 15 have a web 15A. The columns 15 have two flanges 15B that are perpendicular to the web 15A. The columns 15 are made of steel. Examples of steel include H-shaped steel and I-shaped steel. The plurality of columns 15 are placed in concrete 9. Specifically, the first wall portion 11 and the second wall portion 12 each are made of reinforced concrete.

[0026] In each of the first wall portion 11 and the second wall portion 12, the multiple pillars 15 are arranged so that the webs 15A of the pillars 15 are aligned along the extension direction DA of the first wall portion 11 or the second wall portion 12 in a plan view. The extension direction DA of the wall coincides with the longitudinal direction of the wall. In each of the first wall portion 11 and the second wall portion 12, the flanges 15B of the multiple pillars 15 extend in a direction intersecting the extension direction DA of the wall.

[0027] The third wall portion 13 may include one or more pillars 15. The fourth wall portion 14 may include one or more pillars 15. The pillars 15 of the third wall portion 13 and the pillars 15 of the fourth wall portion 14 are the same as the pillars 15 used in the first wall portion 11 or the second wall portion 12. In each of the third wall portion 13 and the fourth wall portion 14, the pillars 15 are arranged so that the webs 15A of the pillars 15 are aligned along the extension direction DB of the walls in a plan view.

[0028] The third wall portion 13 and the fourth wall portion 14 are each made of reinforced concrete, similar to the first wall portion 11 and the second wall portion 12. The first wall portion 11 to the fourth wall portion 14 are integrally formed of reinforced concrete.

[0029] The body wall 3 includes a connecting portion 16. The connecting portion 16 connects the plurality of pillars 15 of the first wall portion 11 and the plurality of pillars 15 of the second wall portion 12. The connecting portion 16 includes a first annular connecting portion 17. The connecting portion 16 may include a second annular connecting portion 18.

[0030] The first annular connecting portion 17 is connected to the shaft member that constitutes the flat roof 34. The first annular connecting portion 17 connects the upper ends of the columns 15 of the first wall portion 11 and the second wall portion 12 in a ring shape. Specifically, the first annular connecting portion 17 includes steel material along the first wall portion 11, steel material along the second wall portion 12, steel material along the third wall portion 13, and steel material along the fourth wall portion 14. The steel material that constitutes the first annular connecting portion 17 is made of H-shaped steel.

[0031] The second annular connecting portion 18 is coupled to an axis member supporting the floor portion of the second floor 22. The second annular connecting portion 18 connects the columns 15 in an annular shape at the intermediate portions of the first wall portion 11 and the second wall portion 12. Specifically, the second annular connecting portion 18 is disposed between the columns 15 between the first floor 21 and the second floor 22 and the columns 15 between the second floor 22 and the flat roof 34. The second annular connecting portion 18 connects the upper ends of the columns 15 between the first floor 21 and the second floor 22 in an annular shape. The second annular connecting portion 18 also connects the lower ends of the columns 15 between the second floor 22 and the flat roof 34 in an annular shape.

[0032] The width of the body wall 3 is 600 mm or more and 1000 mm or less. The distance between the width center of the first wall portion 11 and the width center of the second wall portion 12 is 300 mm or more and 700 mm or less. In one example, the distance between the width center of the first wall portion 11 and the width center of the second wall portion 12 is 500 mm.

[0033] [Buildings] An example of a building 1 will be described with reference to FIG. 1 and FIGS. The building 1 has a first floor 21 and a second floor 22. The building 1 includes a plurality of skeleton walls 3, a first exterior wall 31, a second exterior wall 32 opposite the first exterior wall 31, a floor structure 33 that forms the floor of the second floor 22, and a flat roof 34. The first exterior wall 31, the second exterior wall 32, the floor structure 33, and the flat roof 34 include a frame structure 4.

[0034] The second outer wall 32 is disposed at a predetermined distance from the first outer wall 31. The distance between the first outer wall 31 and the second outer wall 32 is longer than the distance between the first boundary surface SX1 and the second boundary surface SX2. The second outer wall 32 is disposed parallel to the first outer wall 31.

[0035] [Layout of Core Wall 3] 1, each of the plurality of body walls 3 extends from the foundation 30 to the flat roof 34. Each of the plurality of body walls 3 has the same height.

[0036] As shown in FIG. 4, one of the multiple skeleton walls 3 is arranged parallel to the other one. In one example, two skeleton walls 3 are arranged parallel to each other. The state in which two skeleton walls 3 are arranged parallel to each other (hereinafter referred to as a parallel arrangement state) is defined as follows: The parallel arrangement state of two skeleton walls 3 indicates a state in which a line along one skeleton wall 3 is parallel to a line along the other skeleton wall 3. Therefore, the parallel arrangement state includes a state in which two opposing skeleton walls 3 are parallel to each other, and a state in which two non-opposing skeleton walls 3 are parallel to each other.

[0037] When the building 1 has four or more skeleton walls 3, the skeleton walls 3 are arranged as follows: Some of the multiple skeleton walls 3 in a first group GA are arranged in a line with gaps between them. The remaining multiple skeleton walls 3 in a second group GB are arranged in a line with gaps between them. The skeleton walls 3 in the second group GB are arranged parallel to the skeleton walls 3 in the first group GA.

[0038] In this embodiment, the building 1 has six skeleton walls 3. The six skeleton walls 3 are divided into skeleton walls 3 of a first group GA and skeleton walls 3 of a second group GB.

[0039] The skeleton walls 3 of the first group GA include three skeleton walls 3. The three skeleton walls 3 of the first group GA are arranged in a row so that their longitudinal centerlines are aligned. The three skeleton walls 3 of the first group GA are arranged with a gap between them. The skeleton walls 3 of the first group GA are arranged between the first outer wall 31 and the second outer wall 32.

[0040] The structural walls 3 of the second group GB include three structural walls 3. The three structural walls 3 of the second group GB are arranged in a row so that their longitudinal centerlines are aligned. The three structural walls 3 of the second group GB are arranged with a gap between them. The structural walls 3 of the second group GB are arranged on the opposite side of the building 1 from the structural walls 3 of the first group GA. The structural walls 3 of the second group GB are arranged between the first exterior wall 31 and the second exterior wall 32.

[0041] The structural walls 3 of the second group GB may be arranged alternately with the structural walls 3 of the first group GA in a front view of the building 1. In this embodiment, the front surface of the building 1 is the first boundary surface SX1 or the second boundary surface SX2 (see below).

[0042] The skeleton walls 3 of the first group GA are connected to each other by connecting members 19. The skeleton walls 3 of the second group GB are connected to each other by connecting members 19. The connecting members 19 are made of steel. Examples of steel include H-shaped steel and I-shaped steel. The steel is waterproofed. The connecting members 19 connect the upper end side of one skeleton wall 3 to the upper end side of another skeleton wall 3. The connecting members 19 are coupled to the first annular connecting portion 17.

[0043] In a plan view of the building 1, the shape formed by the first line L1 along the first exterior wall 31, the second line L2 along the second exterior wall 32, the third line L3 along the structural wall 3 of the first group GA, and the fourth line L4 along the structural wall 3 of the second group GB is rectangular.

[0044] [Building body] The building 1 includes a building main body 20. The building main body 20 is provided between a first boundary surface SX1 formed along the structural wall 3 of the first group GA and a second boundary surface SX2 formed along the structural wall 3 of the second group GB.

[0045] The building body 20 is supported by a plurality of skeleton walls 3 and a frame structure 4. The building body 20 comprises an indoor space SB and an outdoor space SC. In this embodiment, the outdoor space SC includes a first outdoor space SC1 and a second outdoor space SC2. In this embodiment, the building body 20 includes a first exterior wall 31, a second exterior wall 32, a floor structure 33, and a flat roof 34.

[0046] [Indoor space] The interior space SB is configured as a space used as an office, a space for recreation, a space for education, a space for sports, a space for relaxation, and a space for watching movies or paintings. The interior space SB may also be configured as a living space.

[0047] [First outdoor space] 4, the first outdoor space SC1 is provided to include the area between two adjacent structural walls 3 in the first group GA when viewed from the front. The first outdoor space SC1 is also provided to include the area between two adjacent structural walls 3 in the second group GB when viewed from the front.

[0048] The first outdoor space SC1 may be configured as a piloti space or as a loggia space SD. In this embodiment, the first outdoor space SC1 is configured as a loggia space SD. On the first floor 21, the loggia area where the first outdoor space SC1 is provided does not have a floor. The loggia area is configured as a courtyard that is continuous with the ground around the building main body 20. The loggia area is open to the sky. Specifically, the loggia space SD includes an outdoor void SH that opens from the ground to the flat roof 34. The loggia space SD is connected to the sky above the flat roof 34 through a cutout 34A in the flat roof 34.

[0049] [Second outdoor space] The second outdoor space SC2 is provided along one of the structural walls 3 of the first group GA. Alternatively, the additional second outdoor space SC2 is provided along one of the structural walls 3 of the second group GB. In this embodiment, the second outdoor space SC2 is provided along the structural wall 3 of the first group GA. Moreover, the second outdoor space SC2 is provided along the structural wall 3 of the second group GB.

[0050] 4 and 5, the second outdoor space SC2 may be configured as a balcony space SF or as a deck space SE. In this embodiment, the building main body 20 has the balcony space SF and the deck space SE.

[0051] On the first floor 21 of the building body 20, a deck area where the deck space SE is provided has a deck floor 37. The deck floor 37 is configured at the same height as the first floor interior floor 36 of the interior space SB. The deck space SE is provided adjacent to the loggia space SD. The deck space SE is continuous with the loggia space SD. Specifically, no partition wall is provided between the deck space SE and the loggia space SD. A balcony floor 39 is arranged above the deck area.

[0052] A balcony floor 39 is provided on the second floor 22 of the building body 20. The balcony floor 39 constitutes a balcony space SF. The balcony floor 39 is configured at the same height as the second floor indoor floor 38 of the indoor space SB. The balcony space SF is provided adjacent to the loggia space SD. The balcony space SF is continuous with the loggia space SD via a railing. A portion of the flat roof 34 is placed on top of the balcony floor 39.

[0053] [Floor structure] As shown in FIG. 5, the floor structure 33 constitutes the floor of the second floor 22 as described above. The floor structure 33 extends from the first exterior wall 31 to the second exterior wall 32. A floor opening 33A is provided in the floor structure 33. The building main body 20 has an indoor atrium section SG. The indoor atrium section SG opens from the first floor 21 to the second floor 22 through the floor opening 33A. Six balcony floors 39 are connected to the floor structure 33. The floor structure 33 is connected to the structural wall 3 via the balcony floors 39. The floor structure 33 is supported by the structural wall 3 via the balcony floors 39.

[0054] FIG. 6 is a diagram showing the interior space SB on the first floor 21. FIG. 6 is a diagram showing the deck space SE as viewed from inside the room. The interior space SB is separated from the deck space SE by a first window sash 41. The interior space SB is separated from the loggia space SD by a second window sash 42. The first window sash 41 and the second window sash 42 extend from the first floor interior floor 36 to near the first floor ceiling 40. The first window sash 41 is arranged so as to be continuous with the second window sash 42. Therefore, the loggia space SD and deck space SE can be seen at a glance from inside the room.

[0055] [Operation of this embodiment] The operation of this embodiment will be described. The skeleton wall 3 has a first wall portion 11, a second wall portion 12, a third wall portion 13, and a fourth wall portion 14. The first wall portion 11, the second wall portion 12, the third wall portion 13, and the fourth wall portion 14 are connected in a ring shape in a plan view. This increases the strength of the skeleton wall 3. Furthermore, in this embodiment, the skeleton wall 3 is made of reinforced concrete. This further increases the strength of the skeleton wall 3.

[0056] When a structural wall 3 is incorporated into a building 1 as part of a structural structure 2, the structural wall 3 supports the structural structure 2. As a result, the structural structure 2 has a higher overall structural strength than a structural structure 2 that does not have a structural wall 3. Because the overall structural strength is higher, there is a structural margin for the required seismic strength. This increases the degree of freedom in spatial arrangement and size design.

[0057] In this embodiment, the building 1 has multiple skeleton walls 3. The building main body 20 is provided between the skeleton walls 3 of the first group GA arranged in a row and the skeleton walls 3 of the second group GB arranged in a row. The building main body 20 is supported by the skeleton walls 3 of the first group GA and the skeleton walls 3 of the second group GB. This increases the strength of the building 1 as a whole. Because the strength of the entire structure is increased, the building main body 20 has a structural margin relative to the required seismic strength. This increases the degree of freedom in the layout and design of the size of the space in the building main body 20. Specifically, the indoor space SB within the building main body 20 can be enlarged. Furthermore, there are fewer restrictions on the location of the indoor void section SG within the building main body 20. Furthermore, there is a high degree of freedom in the layout of the outdoor space SC. Furthermore, it is easy to increase the number of outdoor spaces SC or to enlarge the outdoor spaces SC.

[0058] [Effects of this embodiment] The effects of this embodiment will be described. (1) The skeleton wall 3 has a first wall portion 11, a second wall portion 12, a third wall portion 13, and a fourth wall portion 14. This configuration increases the strength of the skeleton wall 3. Therefore, when the skeleton wall 3 is incorporated as part of the skeleton structure 2 in the building 1, it increases the degree of freedom in designing the spatial arrangement or size.

[0059] (2) In the structural wall 3, each of the first wall portion 11 and the second wall portion 12 includes a plurality of columns 15 having webs 15A. In each of the first wall portion 11 and the second wall portion 12, the plurality of columns 15 are arranged so that the webs 15A of the columns 15 are aligned along the extension direction DA of the first wall portion 11 or the second wall portion 12 in a plan view. This configuration allows the first wall portion 11 and the second wall portion 12 to be made thinner. This allows the structural wall 3 to be made thinner. This improves the design of the building 1.

[0060] (3) The skeleton wall 3 has a first annular connecting portion 17. The first annular connecting portion 17 connects the upper ends of the pillars 15 of the first wall portion 11 and the second wall portion 12 in an annular shape. This configuration can improve the strength of the skeleton wall 3.

[0061] (4) The skeleton wall 3 has a second annular connecting portion 18. The second annular connecting portion 18 connects the pillars 15 in an annular shape at the intermediate portions of the first wall portion 11 and the second wall portion 12. This configuration can improve the strength of the skeleton wall 3.

[0062] (5) In the skeleton wall 3, the distance between the width center of the first wall portion 11 and the width center of the second wall portion 12 is 300 mm or more and 700 mm or less. With this configuration, the width of the skeleton wall 3 can be limited within a predetermined range.

[0063] (6) The skeleton structure 2 includes a skeleton wall 3 and a frame structure 4 connected to the skeleton wall 3. With this configuration, the building 1 includes the skeleton wall 3, which increases the design freedom of the spatial arrangement or size of the building 1.

[0064] (7) The skeleton structure 2 of the building 1 comprises a plurality of skeleton walls 3 and a framework structure 4 connected to the skeleton walls 3. The plurality of skeleton walls 3 are configured as the exterior walls of the building 1. One of the plurality of skeleton walls 3 is arranged parallel to the other. With this configuration, since the building 1 includes the skeleton walls 3, the design freedom of the spatial arrangement or size of the building 1 can be increased. Furthermore, since one of the plurality of skeleton walls 3 is arranged parallel to the other, it is possible to provide a building 1 with a distinctive appearance and high design quality.

[0065] (8) In the building 1, some of the first group GA of the multiple structural walls 3 are arranged in a row with gaps between them. The remaining second group GB of the multiple structural walls 3 are arranged in a row with gaps between them. The structural walls 3 of the second group GB are arranged parallel to the structural walls 3 of the first group GA. The structural walls 3 of the first group GA are connected to each other with connecting members 19. The structural walls 3 of the second group GB are connected to each other with connecting members 19. With this configuration, the structural walls 3 are connected to each other, thereby improving the earthquake resistance of the building 1.

[0066] (9) In the building 1, the structural walls 3 of the second group GB are arranged alternately with the structural walls 3 of the first group GA in a front view of the building 1. This configuration can improve the design of the building 1.

[0067] (10) In the building 1, a building body 20 is provided between a first boundary surface SX1 formed along the structural wall 3 of the first group GA and a second boundary surface SX2 formed along the structural wall 3 of the second group GB. The building body 20 forms an indoor space SB and an outdoor space SC. With this configuration, the indoor space SB and the outdoor space SC can be provided in the space between the first boundary surface SX1 and the second boundary surface SX2. The structural wall 3 is more visible than the building body 20. In addition, the structural wall 3 is thicker than the other walls. This gives the building 1 a sturdy impression.

[0068] (11) The first outdoor space SC1 is provided to include the area between two adjacent structural walls 3 in the first group GA when viewed from the front. Alternatively, the first outdoor space SC1 is provided to include the area between two adjacent structural walls 3 in the second group GB when viewed from the front. This configuration makes it possible to connect the space surrounding the building 1 with the outdoor space SC of the building 1. This improves the openness of the outdoor space SC. It also makes it easier for wind and light to enter the building 1.

[0069] (12) The second outdoor space SC2 is provided along one of the structural walls 3 of the first group GA. Alternatively, the second outdoor space SC2 is provided along one of the structural walls 3 of the second group GB. With this configuration, it is possible to configure the outdoor space SC that is less exposed to wind and rain.

[0070] <Modification> The above-described embodiment is an example of the possible forms of the structural wall 3 and the building 1, and is not intended to limit the forms. The structural wall 3 and the building 1 may take forms different from those illustrated in the above-described embodiment. Examples of such forms include forms in which part of the configuration of the embodiment is replaced, modified, or omitted, or forms in which a new configuration is added to the embodiment. Modified examples of the embodiment are shown below.

[0071] The skeleton wall 3 may have a reinforcing portion disposed within the internal space SA of the skeleton wall 3. The reinforcing portion extends from the first wall portion 11 to the second wall portion 12. There is no limit to the number of reinforcing portions of the skeleton wall 3. The reinforcing portion of the skeleton wall 3 may be disposed obliquely so as to extend from the upper portion of the first wall portion 11 to the lower portion of the second wall portion 12.

[0072] The upper part of the skeleton wall 3 is closed by the flat roof 34, but may be closed by another member. The upper part of the skeleton wall 3 may have an opening. The upper part of the skeleton wall 3 may be closed by a ceiling wall having an opening.

[0073] In the embodiment, the skeleton wall 3 has a reinforced concrete structure, but may have another structure. For example, each of the first wall portion 11 to the fourth wall portion 14 of the skeleton wall 3 may be reinforced with a bearing wall instead of the concrete 9.

[0074] This specification discloses the following techniques: [Appendix 1] The technology of Appendix 1 is a skeleton wall that supports the main body of a building. The skeleton wall has a first wall portion, a second wall portion that is configured parallel to the first wall portion at a distance, a third wall portion that connects the first wall portion and the second wall portion, and a fourth wall portion that connects the first wall portion and the second wall portion at a position on the first wall portion and the second wall portion opposite the third wall portion.

[0075] [Appendix 2] In the skeleton wall described in Appendix 1, each of the first wall portion and the second wall portion includes a plurality of columns having webs. In each of the first wall portion and the second wall portion, the plurality of columns are arranged so that the webs of the columns are aligned along the extension direction of the wall in a plan view.

[0076] [Appendix 3] The skeleton wall of Appendix 1 includes a connecting portion that connects the plurality of columns of the first wall portion and the plurality of columns of the second wall portion. The connecting portion includes a first annular connecting portion that connects upper ends of the columns of the first wall portion and the second wall portion in an annular shape.

[0077] [Appendix 4] In the body wall described in Appendix 3, the connecting portion includes a second annular connecting portion, which connects the columns in an annular shape at the intermediate portions of the first wall portion and the second wall portion.

[0078] [Appendix 5] In the skeleton wall described in Supplementary Note 1, the distance between the width center of the first wall portion and the width center of the second wall portion is 300 mm or more and 700 mm or less.

[0079] [Appendix 6] The technology of Supplementary Note 6 is a building having a skeleton structure, which includes a skeleton wall according to any one of Supplementary Notes 1 to 5, and a framework structure connected to the skeleton wall.

[0080] [Appendix 7] The technology of Supplementary Note 6 is a building having a skeleton structure. The skeleton structure comprises a plurality of skeleton walls and a framework structure connected to the skeleton walls. Each of the plurality of skeleton walls is a skeleton wall according to any one of Supplementary Note 1 to Supplementary Note 5. The plurality of skeleton walls are configured as outer walls of the building. One of the plurality of skeleton walls is arranged parallel to the other one.

[0081] [Appendix 8] In the building described in Supplementary Note 7, some of the plurality of structural walls in a first group are arranged in a line with gaps between them. The remaining plurality of structural walls in a second group are arranged in a line with gaps between them. The structural walls of the second group are arranged parallel to the structural walls of the first group. The structural walls of the first group are connected to each other with connecting members. The structural walls of the second group are connected to each other with connecting members.

[0082] [Appendix 9] In the building described in Supplementary Note 8, the skeleton walls of the second group are arranged alternately with the skeleton walls of the first group when viewed from the front of the building.

[0083] [Appendix 10] In the building described in Supplementary Note 7, a building body supported by the plurality of skeleton walls and the framework structure is provided between a first boundary surface formed along a first group of the skeleton walls and a second boundary surface formed along a second group of the skeleton walls. The building body forms an indoor space and an outdoor space.

[0084] [Appendix 11] In the building described in Supplementary Note 10, the outdoor space includes a first outdoor space. The first outdoor space is provided to include, in a front view, an area between two adjacent structural walls in the first group, or an area between two adjacent structural walls in the second group.

[0085] [Appendix 12] In the building described in Supplementary Note 10, the outdoor space includes a second outdoor space. The second outdoor space is provided along one of the skeleton walls of the first group, or is provided along one of the skeleton walls of the second group. [Explanation of symbols]

[0086] DA...extension direction, DB...extension direction, GA...first group, GB...second group, SB...indoor space, SC...outdoor space, SC1...first outdoor space, SC2...second outdoor space, 1...building, 2...core structure, 3...core wall, 4...frame structure, 11...first wall section, 12...second wall section, 13...third wall section, 14...fourth wall section, 15...column, 15A...web, 16...connecting section, 17...first annular connecting section, 18...second annular connecting section, 19...connecting member, 20...building body.

Claims

1. A skeleton wall that supports the main body of a building, A first wall portion; a second wall portion configured parallel to the first wall portion at a distance; a third wall portion connected to the first wall portion and the second wall portion; a fourth wall portion connected to the first wall portion and the second wall portion at a position on the opposite side of the first wall portion and the second wall portion from the third wall portion, each of the first wall portion and the second wall portion includes a plurality of posts having webs; In each of the first wall portion and the second wall portion, the plurality of pillars are arranged such that the webs of the pillars are aligned along the extension direction of the wall in a plan view. skeleton wall.

2. A skeleton wall that supports the main body of a building, A first wall portion; a second wall portion configured parallel to the first wall portion at a distance; a third wall portion connected to the first wall portion and the second wall portion; a fourth wall portion connected to the first wall portion and the second wall portion at a position on the opposite side of the first wall portion and the second wall portion from the third wall portion; a connecting portion that connects the plurality of pillars of the first wall portion and the plurality of pillars of the second wall portion, the coupling portion includes a first annular coupling portion, the first annular connecting portion annularly connects upper ends of the pillars of the first wall portion and the second wall portion; skeleton wall.

3. the connecting portion further includes a second annular connecting portion; the second annular connecting portion annularly connects the pillars at intermediate portions of the first wall portion and the second wall portion, The skeleton wall according to claim 2.

4. The distance between the width center of the first wall portion and the width center of the second wall portion is 300 mm or more and 700 mm or less. The skeleton wall according to claim 1 .

5. A building with a skeleton structure, The skeleton structure comprises a skeleton wall according to any one of claims 1 to 4 and a framework structure connected to the skeleton wall. architecture.

6. A building with a skeleton structure, The skeleton structure includes a plurality of skeleton walls and a frame structure connected to the skeleton walls, The plurality of skeleton walls are configured as exterior walls of the building, a first group of some of the plurality of body walls is arranged in a line at intervals; the remaining second group of the plurality of body walls are arranged in a row at intervals; the second group of body walls are arranged parallel to the first group of body walls; The first group of body walls are connected to each other by connecting members, the second group of body walls are connected to each other by a connecting member, Each of the plurality of body walls is A first wall portion; a second wall portion configured parallel to the first wall portion at a distance; a third wall portion connected to the first wall portion and the second wall portion; a fourth wall portion connected to the first wall portion and the second wall portion at a position on the opposite side of the first wall portion and the second wall portion from the third wall portion, architecture.

7. The second group of structural walls are arranged alternately with the first group of structural walls in a front view of the building. The building according to claim 6.

8. A building with a skeleton structure, The skeleton structure includes a plurality of skeleton walls and a frame structure connected to the skeleton walls, The plurality of skeleton walls are configured as exterior walls of the building, a first group of some of the plurality of body walls is arranged in a line at intervals; the remaining second group of the plurality of body walls are arranged in a row at intervals; the second group of body walls are arranged parallel to the first group of body walls; a building body supported by the plurality of skeleton walls and the framework structure is provided between a first boundary surface formed along the skeleton walls of the first group and a second boundary surface formed along the skeleton walls of the second group; The building body constitutes an indoor space and an outdoor space, Each of the plurality of body walls is A first wall portion; a second wall portion configured parallel to the first wall portion at a distance; a third wall portion connected to the first wall portion and the second wall portion; a fourth wall portion connected to the first wall portion and the second wall portion at a position on the opposite side of the first wall portion and the second wall portion from the third wall portion, architecture.

9. the outdoor space includes a first outdoor space, The first outdoor space is provided to include, in a front view, a region between two adjacent body walls in the first group, or a region between two adjacent body walls in the second group. The building according to claim 8.

10. The outdoor space includes a second outdoor space, The second outdoor space is provided along one of the first group of body walls, or is provided along one of the second group of body walls. The building according to claim 8.

Citation Information

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