JP2013221402A - Facility installation structure for building - Google Patents
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Abstract
Description
本発明は、建物の屋外側に蓄電池などの建物用設備を設置するための建物用設備設置構造に関するものである。 The present invention relates to a building installation structure for installing building equipment such as a storage battery on the outdoor side of a building.
従来から、安定した温度環境等を考慮して、建物の屋外側に建物用設備としての蓄電池を設置することがなされている(特許文献1等を参照)。 Conventionally, in consideration of a stable temperature environment and the like, a storage battery as a facility for a building is installed on the outdoor side of the building (see Patent Document 1 and the like).
しかしながら、特許文献1のような従来の建物用設備設置構造では、蓄電池の重量が比較的小さい場合を想定していたため、建物の外壁に設置すれば、浸水の被害を防止することができたが、近年では、建物に設置される蓄電池の大容量化が進み、その重量も大きくなってきているので、これに対応しきれなくなってきた。 However, in the conventional building equipment installation structure such as Patent Document 1, since it was assumed that the weight of the storage battery was relatively small, if it was installed on the outer wall of the building, flooding damage could be prevented. In recent years, the capacity of storage batteries installed in buildings has been increasing, and the weight has been increasing, making it impossible to cope with this.
そこで、本発明は、大容量で重量の大きな蓄電池などに対応することができる建物用設備設置構造を提供することを目的としている。 Therefore, an object of the present invention is to provide a building installation structure that can accommodate a large capacity and heavy storage battery.
前記目的を達成するために、本発明の建物用設備設置構造は、建物の屋外側に建物用設備としての蓄電池を設置するための建物用設備設置構造であって、前記建物の建物本体下部の建物基礎に隣接して、該建物基礎の設けられた地盤面より高く該建物基礎よりも低い建物用設備設置用基礎が設けられており、該建物用設備設置用基礎の上に、前記建物用設備としての蓄電池からの配線に利用可能な内部空間を有する架台を介して、前記建物用設備としての蓄電池が設置されており、前記蓄電池は、前記内部空間を利用して前記架台の上面に固定されており、前記架台は、前記建物用設備設置用基礎に固定されていることを特徴とする。 In order to achieve the above object, a building equipment installation structure according to the present invention is a building equipment installation structure for installing a storage battery as a building equipment on the outdoor side of a building, wherein Adjacent to the building foundation, there is provided a building installation foundation that is higher than the ground surface on which the building foundation is provided and lower than the building foundation. On the building installation foundation, the building foundation is installed. A storage battery as the building equipment is installed via a gantry having an internal space that can be used for wiring from the storage battery as the equipment, and the storage battery is fixed to the upper surface of the gantry using the internal space. The gantry is fixed to the building installation foundation.
また、前記建物基礎の上端部と前記建物の外壁との間には壁内換気用の隙間が設けられているとよい。 Moreover, it is good for the clearance gap for wall ventilation to be provided between the upper end part of the said building foundation, and the outer wall of the said building.
ここで、前記建物基礎の上端部には、水切り材が設けられているとよい。 Here, a draining material may be provided at the upper end of the building foundation.
また、前記建物用設備設置用基礎の内部に中空部を有していてもよい。 Moreover, you may have a hollow part inside the said foundation for building installation.
さらに、前記建物用設備設置用基礎の内部に軽量化部材が設けられていてもよい。 Furthermore, the weight reduction member may be provided in the inside of the said building installation base.
このような本発明の建物用設備設置構造は、建物の屋外側に建物用設備としての蓄電池を設置するための建物用設備設置構造であって、建物の建物本体下部の建物基礎に隣接して、建物基礎の設けられた地盤面より高く建物基礎よりも低い建物用設備設置用基礎が設けられており、建物用設備設置用基礎の上に、建物用設備としての蓄電池からの配線に利用可能な内部空間を有する架台を介して、建物用設備としての蓄電池が設置されており、蓄電池は、内部空間を利用して架台の上面に固定されており、架台は、建物用設備設置用基礎に固定された構成とされている。 Such a building equipment installation structure of the present invention is a building equipment installation structure for installing a storage battery as a building equipment on the outdoor side of the building, and is adjacent to the building foundation at the bottom of the building body. The building installation foundation is higher than the ground level where the building foundation is installed and lower than the building foundation, and can be used for wiring from the storage battery as the building installation on the building installation foundation A storage battery is installed as a building equipment via a base having a large internal space, and the storage battery is fixed to the top surface of the base using the internal space. It is a fixed configuration.
こうした構成なので、建物用設備設置用基礎が建物用設備としての蓄電池をしっかりと支持するため、大容量で重量の大きな蓄電池にも対応することができる。 Since it is such a structure, since the foundation for building installation firmly supports the storage battery as the building installation, it can cope with a large capacity and heavy storage battery.
また、建物用設備としての蓄電池が設置される位置が地盤面よりも高くなるため、浸水の被害を防止することができるうえに、建物用設備設置用基礎は建物基礎よりも低いため、建物基礎と建物本体の外壁との間に、水切り材や化粧材などを通常通り取り付けることができ、さらに建物用設備設置用基礎から建物本体に雨水が流れ込むこともない。 In addition, since the location where the storage battery as the building equipment is installed is higher than the ground surface, inundation damage can be prevented and the building equipment installation foundation is lower than the building foundation. A draining material, a decorative material, etc. can be attached as usual between the building and the outer wall of the building body, and rainwater does not flow into the building body from the building installation foundation.
さらに、建物用設備は、架台を介して、建物用設備設置用基礎の上に設置されているため、この架台の高さ分、さらに建物用設備が設置される位置が地盤面よりも高くなるうえに、この架台の内部の空間を利用して建物用設備からの配線等を容易に行うことができる。 Furthermore, since the building equipment is installed on the foundation for building equipment installation via the gantry, the height of the gantry and the position where the building equipment is installed are higher than the ground surface. In addition, wiring from the building facilities can be easily performed using the space inside the frame.
また、建物基礎の上端部と建物の外壁との間には壁内換気用の隙間が設けられている場合は、建物用設備の設置に左右されずに、壁内換気が行え、建物本体の健全性を保つことができる。 If there is a gap for ventilation in the wall between the upper end of the building foundation and the outer wall of the building, ventilation in the wall can be performed without being influenced by the installation of the building equipment. Soundness can be maintained.
ここで、建物基礎の上端部には、水切り材が設けられている場合は、壁内換気用の隙間から雨水が流れ込むことをより抑制することができる。 Here, when a draining material is provided at the upper end of the building foundation, it is possible to further suppress rainwater from flowing into the gap for ventilation in the wall.
また、建物用設備設置用基礎の内部に中空部を有する場合は、建物用設備設置用基礎の軽量化を図ることができる。 Moreover, when it has a hollow part inside the foundation for building installation, the weight of the building installation foundation can be reduced.
さらに、建物用設備設置用基礎の内部に軽量化部材が設けられている場合は、建物用設備設置用基礎の軽量化及び耐力の向上を図ることができる。 Furthermore, when the weight reduction member is provided inside the building installation foundation, the building installation foundation can be reduced in weight and strength.
以下、本発明を実施するための形態を、図面に示す実施例1〜3に基づいて説明する。 EMBODIMENT OF THE INVENTION Hereinafter, the form for implementing this invention is demonstrated based on Examples 1-3 shown in drawing.
先ず、実施例1の構成について説明する。 First, the configuration of the first embodiment will be described.
図1及び図2は、実施例1の建物用設備設置構造を備えた建物1の概略構成を示している。 1 and 2 show a schematic configuration of a building 1 having the building installation structure for building of the first embodiment.
まず、この建物1は、地盤に打設された建物基礎1Bの上に建物本体1Aが構築されて成る。 First, the building 1 is constructed by building a building body 1A on a building foundation 1B placed on the ground.
そして、建物基礎1Bに隣接して、内部に鉄筋(図示せず)が設けられた建物用設備設置用基礎としての蓄電池設置用基礎2が打設されて設けられている。 Then, adjacent to the building foundation 1B, a storage battery installation foundation 2 is provided as a building facility installation foundation in which reinforcing bars (not shown) are provided.
ここで、この蓄電池設置用基礎2の高さは、地盤面より320mm高く、建物基礎1Bよりも80mm低くなるように設定されている。 Here, the height of the storage battery installation foundation 2 is set to be 320 mm higher than the ground surface and 80 mm lower than the building foundation 1B.
なお、実証試験を行ったところ、この蓄電池設置用基礎2の高さは、建物基礎1Bよりも30mm〜200mm低く設定すると、建物1の外壁11の下端部と建物基礎1Bの上端部との間に形成された壁内換気用の隙間3から水が浸入し難いことが確認された。 In addition, when the verification test was performed, when the height of the storage battery installation foundation 2 is set to be 30 mm to 200 mm lower than the building foundation 1B, it is between the lower end portion of the outer wall 11 of the building 1 and the upper end portion of the building foundation 1B. It was confirmed that it was difficult for water to enter through the gap 3 for ventilation inside the wall.
また、この実施例1のように、建物基礎1Bの上端部に水切り材4を設けると、より水が浸入し難いことも確認された。 Moreover, when the draining material 4 was provided in the upper end part of the building foundation 1B like this Example 1, it was also confirmed that water does not enter more easily.
そして、壁内換気用の隙間3からの換気を阻害しないように、外壁11から間隔をあけて、蓄電池設置用基礎2の上に、架台5を介して、大容量で重量の大きな建物用設備としての蓄電池6が設置されている。 Then, a large-capacity and heavy building equipment is provided on the storage battery installation base 2 via the mount 5 with a space from the outer wall 11 so as not to hinder ventilation from the gap 3 for ventilation in the wall. As a storage battery 6 is installed.
ここで、架台5は、アンカーボルト7,・・・により蓄電池設置用基礎2に固定されている。 Here, the gantry 5 is fixed to the storage battery installation base 2 by anchor bolts 7.
また、蓄電池6は、その脚部が架台5の上面にボルトとナットにより固定されている。 Further, the leg of the storage battery 6 is fixed to the upper surface of the gantry 5 with bolts and nuts.
なお、蓄電池設置用基礎2の下部には、支持力を大きくするための支持杭8が設けられている。 In addition, the support pile 8 for enlarging support force is provided in the lower part of the foundation 2 for storage battery installation.
次に、実施例1の作用効果について説明する。 Next, the effect of Example 1 is demonstrated.
このような実施例1の建物用設備設置構造は、建物1の屋外側に建物用設備としての蓄電池6を設置するための建物用設備設置構造である。 The building equipment installation structure of Example 1 is a building equipment installation structure for installing the storage battery 6 as the building equipment on the outdoor side of the building 1.
そして、建物1の建物本体1A下部の建物基礎1Bに隣接して、建物基礎1Bの設けられた地盤面より高く建物基礎1Bよりも低い建物用設備設置用基礎としての蓄電池設置用基礎2が設けられており、蓄電池設置用基礎2の上に蓄電池6が設置された構成とされている。 Then, adjacent to the building foundation 1B below the building body 1A of the building 1, a storage battery installation foundation 2 is provided as a building installation foundation that is higher than the ground surface on which the building foundation 1B is provided and lower than the building foundation 1B. It is set as the structure by which the storage battery 6 was installed on the foundation 2 for storage battery installation.
こうした構成なので、蓄電池設置用基礎2が蓄電池6をしっかりと支持するため、大容量で重量の大きな蓄電池6に対応することができる。 Since it is such a structure, since the storage battery installation base 2 firmly supports the storage battery 6, it can respond to the storage battery 6 having a large capacity and a large weight.
また、蓄電池6が設置される位置が地盤面よりも高くなるため、浸水の被害を防止することができるうえに、蓄電池設置用基礎2は建物基礎1Bよりも低いため、建物基礎1Bと建物本体1Aの外壁11との間に、水切り材4や化粧材(図示せず)などを通常通り取り付けることができ、さらに蓄電池設置用基礎2から建物本体1Aに雨水が流れ込むこともない。 Moreover, since the position where the storage battery 6 is installed is higher than the ground surface, it is possible to prevent inundation damage and the storage battery installation base 2 is lower than the building foundation 1B. A draining material 4 or a decorative material (not shown) can be attached as usual between the outer wall 11 of 1A, and rainwater does not flow from the storage battery installation base 2 into the building body 1A.
ここで、蓄電池6は、架台5を介して、蓄電池設置用基礎2の上に設置されている。 Here, the storage battery 6 is installed on the storage battery installation base 2 via the gantry 5.
このため、この架台5の高さ分、さらに蓄電池6が設置される位置が地盤面よりも高くなるうえに、この架台5の内部の空間を利用して蓄電池6からの配線等を容易に行うことができる。 Therefore, the height of the gantry 5 and the position where the storage battery 6 is installed are higher than the ground surface, and wiring from the storage battery 6 is easily performed using the space inside the gantry 5. be able to.
また、架台5は、蓄電池設置用基礎2にアンカーボルト7,・・・で固定されている。 Further, the gantry 5 is fixed to the storage battery installation base 2 with anchor bolts 7.
このため、架台5に大きな引抜耐力を持たせることができるので、地震などによる大きな揺れがあっても、蓄電池6の転倒を防止することができる。 For this reason, since the stand 5 can be provided with a large pulling strength, the storage battery 6 can be prevented from falling even if there is a large shake due to an earthquake or the like.
さらに、建物基礎1Bの上端部と建物1の外壁11との間には壁内換気用の隙間3が設けられている。 Furthermore, a gap 3 for in-wall ventilation is provided between the upper end of the building foundation 1 </ b> B and the outer wall 11 of the building 1.
このため、蓄電池6の設置に左右されずに、壁内換気が行え、建物本体1Aの健全性を保つことができる。 For this reason, ventilation in a wall can be performed without being influenced by the installation of the storage battery 6, and the soundness of the building body 1A can be maintained.
ここで、建物基礎1Bの上端部には、水切り材4が設けられている。 Here, the draining material 4 is provided in the upper end part of the building foundation 1B.
このため、壁内換気用の隙間3から雨水が流れ込むことをより抑制することができる。 For this reason, it can suppress more that rainwater flows in from the clearance gap 3 for ventilation in a wall.
次に、実施例2について説明する。 Next, Example 2 will be described.
なお、実施例1で説明した内容と同一乃至均等な部分の説明については同一符号を付して説明する。 In addition, the description which attaches | subjects the same code | symbol about the description of the same thru | or equivalent part as the content demonstrated in Example 1, and demonstrates.
図3は、実施例2の建物用設備設置構造を備えた建物1の概略構成を示している。 FIG. 3 shows a schematic configuration of the building 1 having the building installation structure for the building of the second embodiment.
この実施例2の建物用設備設置構造では、建物用設備設置用基礎としての蓄電池設置用基礎2の内部に中空部9を有することが実施例1の建物用設備設置構造と主に異なる。 The building equipment installation structure of the second embodiment is mainly different from the building equipment installation structure of the first embodiment in that a hollow portion 9 is provided inside the storage battery installation foundation 2 as a building equipment installation foundation.
このため、中空部9を有する分、蓄電池設置用基礎2の軽量化を図ることができる。 For this reason, since the hollow portion 9 is provided, the weight of the storage battery installation base 2 can be reduced.
なお、他の構成及び作用効果については、実施例1と略同様であるので説明を省略する。 Other configurations and functions and effects are substantially the same as those in the first embodiment, and thus description thereof is omitted.
次に、実施例3について説明する。 Next, Example 3 will be described.
なお、実施例1で説明した内容と同一乃至均等な部分の説明については同一符号を付して説明する。 In addition, the description which attaches | subjects the same code | symbol about the description of the same thru | or equivalent part as the content demonstrated in Example 1, and demonstrates.
図4は、実施例3の建物用設備設置構造を備えた建物1の概略構成を示している。 FIG. 4 shows a schematic configuration of the building 1 having the building installation structure for the building of the third embodiment.
この実施例3の建物用設備設置構造では、建物用設備設置用基礎としての蓄電池設置用基礎2の内部に軽量化部材(EPS材)10が設けられていることが実施例1の建物用設備設置構造と主に異なる。 In the building equipment installation structure of the third embodiment, the lightening member (EPS material) 10 is provided inside the storage battery installation base 2 as the building equipment installation foundation. Mainly different from the installation structure.
このため、軽量化部材(EPS材)10を設けた分、蓄電池設置用基礎2の軽量化及び耐力(特に圧縮耐力)の向上を図ることができる。 For this reason, it is possible to reduce the weight and improve the proof stress (especially the compressive strength) of the storage battery installation base 2 by the amount of the light weight member (EPS material) 10 provided.
なお、他の構成及び作用効果については、実施例1と略同様であるので説明を省略する。 Other configurations and functions and effects are substantially the same as those in the first embodiment, and thus description thereof is omitted.
以上、図面を参照して、本発明を実施するための形態を実施例1〜3に基づいて詳述してきたが、具体的な構成は、これら実施例1〜3に限らず、本発明の要旨を逸脱しない程度の設計的変更は、本発明に含まれる。 As mentioned above, although the form for implementing this invention has been explained in full detail based on Examples 1-3 with reference to drawings, the concrete structure is not limited to these Examples 1-3, Design changes that do not depart from the gist are included in the present invention.
例えば、上記した実施例1〜3では、架台5を設けて実施したが、これに限定されず、架台5を設けずに実施してもよい。 For example, in Embodiments 1 to 3 described above, the gantry 5 is provided. However, the present invention is not limited to this, and the gantry 5 may be omitted.
また、上記した実施例1〜3では、建物用設備として、蓄電池6を用いて実施したが、これに限定されず、例えば、給湯機やエアーコンディショナの室外機などを用いて実施してもよい。 Moreover, in Example 1-3 mentioned above, although implemented using the storage battery 6 as an installation for buildings, it is not limited to this, For example, even if implemented using the outdoor unit of a water heater, an air conditioner, etc. Good.
さらに、上記した実施例1〜3では、建物用設備設置用基礎としての蓄電池設置用基礎2を打設して実施したが、これに限定されず、例えば、建物用設備設置用基礎としての蓄電池設置用基礎2として、工場等で製造したプレキャスト部材を用いて実施してもよい。 Further, in Examples 1 to 3 described above, the storage battery installation foundation 2 as a building facility installation foundation was placed and implemented. However, the present invention is not limited to this, for example, a storage battery as a building installation foundation. You may implement using the precast member manufactured in the factory etc. as the foundation 2 for installation.
また、上記した実施例1〜3では、蓄電池6自体に、特に上部や周囲の防水性を高める処理を施して実施したが、これに限定されず、例えば、蓄電池6の上部や周囲に簡単な雨除けを設けて実施してもよい。 Moreover, in above-described Examples 1 to 3, the storage battery 6 itself was subjected to a process for improving the waterproof property of the upper part and the surrounding area. However, the present invention is not limited to this. A rain guard may be provided.
さらに、上記した実施例3では、軽量化部材10としてEPS材を用いて実施したが、これに限定されず、例えば、EPS材に代えて土などを用いて実施してもよい。 Furthermore, in Example 3 mentioned above, although implemented using EPS material as the weight reduction member 10, it is not limited to this, For example, you may implement using soil etc. instead of EPS material.
1 建物
1A 建物本体
1B 建物基礎
2 蓄電池設置用基礎(建物用設備設置用基礎)
3 壁内換気用の隙間
4 水切り材
5 架台
6 蓄電池(建物用設備)
7 アンカーボルト
8 支持杭
9 中空部
10 軽量化部材
11 外壁
1 Building 1A Building body 1B Building foundation 2 Storage battery foundation (building equipment foundation)
3 Gap for wall ventilation 4 Drainage material 5 Base 6 Storage battery (building equipment)
7 Anchor bolt 8 Support pile 9 Hollow part 10 Lightening member 11 Outer wall
Claims (6)
前記建物の建物本体下部の建物基礎に隣接して、該建物基礎の設けられた地盤面より高く該建物基礎よりも低い建物用設備設置用基礎が設けられており、該建物用設備設置用基礎の上に、前記建物用設備としての蓄電池からの配線に利用可能な内部空間を有する架台を介して、前記建物用設備としての蓄電池が設置されており、
前記蓄電池は、前記内部空間を利用して前記架台の上面に固定されており、
前記架台は、前記建物用設備設置用基礎に固定されていることを特徴とする建物用設備設置構造。 A building installation structure for installing storage batteries as building equipment on the outdoor side of the building,
Adjacent to the building foundation in the lower part of the building body of the building, a building installation foundation that is higher than the ground surface on which the building foundation is provided and lower than the building foundation is provided. On top of the storage battery as the building equipment is installed via a mount having an internal space that can be used for wiring from the storage battery as the building equipment,
The storage battery is fixed to the upper surface of the gantry using the internal space,
The building installation structure according to claim 1, wherein the gantry is fixed to the building installation foundation.
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JP2013112707A JP5466780B2 (en) | 2013-05-29 | 2013-05-29 | Building equipment installation structure |
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JP2018203347A (en) * | 2017-06-07 | 2018-12-27 | 住友電気工業株式会社 | Packaging box, and production method of power-supply unit |
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JPH0415997A (en) * | 1990-05-09 | 1992-01-21 | Fujitsu Ltd | Installing structure for device rack |
JP2000073489A (en) * | 1998-08-27 | 2000-03-07 | Hirata:Kk | Entrance-approach structure of building and unit member used for the same |
JP2001220852A (en) * | 2000-02-09 | 2001-08-17 | Nanbu Plastics Co Ltd | Bearing block for store-room, temporary house or the like |
JP2010133173A (en) * | 2008-12-05 | 2010-06-17 | Sekisui House Ltd | Underfloor ventilation structure |
JP2011150976A (en) * | 2010-01-25 | 2011-08-04 | Toyota Motor Corp | Power storage device and power storage system |
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JPH0415997A (en) * | 1990-05-09 | 1992-01-21 | Fujitsu Ltd | Installing structure for device rack |
JP2000073489A (en) * | 1998-08-27 | 2000-03-07 | Hirata:Kk | Entrance-approach structure of building and unit member used for the same |
JP2001220852A (en) * | 2000-02-09 | 2001-08-17 | Nanbu Plastics Co Ltd | Bearing block for store-room, temporary house or the like |
JP2010133173A (en) * | 2008-12-05 | 2010-06-17 | Sekisui House Ltd | Underfloor ventilation structure |
JP2011150976A (en) * | 2010-01-25 | 2011-08-04 | Toyota Motor Corp | Power storage device and power storage system |
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Publication number | Priority date | Publication date | Assignee | Title |
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JP2018203347A (en) * | 2017-06-07 | 2018-12-27 | 住友電気工業株式会社 | Packaging box, and production method of power-supply unit |
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