JP6034212B2 - Solar cell module mounting structure and mounting auxiliary jig - Google Patents
Solar cell module mounting structure and mounting auxiliary jig Download PDFInfo
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- JP6034212B2 JP6034212B2 JP2013022828A JP2013022828A JP6034212B2 JP 6034212 B2 JP6034212 B2 JP 6034212B2 JP 2013022828 A JP2013022828 A JP 2013022828A JP 2013022828 A JP2013022828 A JP 2013022828A JP 6034212 B2 JP6034212 B2 JP 6034212B2
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S25/00—Arrangement of stationary mountings or supports for solar heat collector modules
- F24S25/10—Arrangement of stationary mountings or supports for solar heat collector modules extending in directions away from a supporting surface
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24S—SOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
- F24S25/00—Arrangement of stationary mountings or supports for solar heat collector modules
- F24S25/60—Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules
- F24S25/61—Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules for fixing to the ground or to building structures
- F24S25/615—Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules for fixing to the ground or to building structures for fixing to protruding parts of buildings, e.g. to corrugations or to standing seams
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/10—Photovoltaic [PV]
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02B—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
- Y02B10/00—Integration of renewable energy sources in buildings
- Y02B10/20—Solar thermal
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/40—Solar thermal energy, e.g. solar towers
- Y02E10/47—Mountings or tracking
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/50—Photovoltaic [PV] energy
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Life Sciences & Earth Sciences (AREA)
- Sustainable Development (AREA)
- Sustainable Energy (AREA)
- Thermal Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Roof Covering Using Slabs Or Stiff Sheets (AREA)
Description
本発明は、複数の凸部を有する折板屋根などの平板状屋根に太陽電池モジュールを取り付けるための取付構造、及びこの取付構造に用いられる取付補助治具に関するものである。 The present invention relates to an attachment structure for attaching a solar cell module to a flat roof such as a folded roof having a plurality of convex portions, and an attachment auxiliary jig used in the attachment structure.
従来から、複数の凸部を有する折板屋根などの平板状屋根に太陽電池モジュールを取り付けるための取付構造について複数提案されており、実施に供されている。 Conventionally, a plurality of attachment structures for attaching a solar cell module to a flat roof such as a folded roof having a plurality of convex portions have been proposed and put into practice.
例えば、特許文献1に開示された太陽電池モジュールの取付構造は、取り付けが容易なうえに、太陽電池モジュールの設置角度に応じて角度及び高さを容易に調整して支持させることができるものである。 For example, the mounting structure of the solar cell module disclosed in Patent Document 1 is easy to mount and can be supported by easily adjusting the angle and height according to the installation angle of the solar cell module. is there.
しかしながら、上記した特許文献1に開示された太陽電池モジュールの取付構造は、上記した優れた効果を有するものの、積雪地における積雪荷重に耐え得る構造強度の確保まで考慮したものではなかった。 However, although the above-described solar cell module mounting structure disclosed in Patent Document 1 has the above-described excellent effects, it has not taken into account the securing of structural strength that can withstand a snow load in a snowy area.
そこで、本発明は、積雪地における積雪荷重に耐え得る構造強度の確保まで考慮した太陽電池モジュールの取付構造、及びこの取付構造に用いられる取付補助治具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 solar cell module mounting structure that takes into account the securing of structural strength that can withstand a snow load in a snowy area, and a mounting auxiliary jig used in this mounting structure.
前記目的を達成するために、本発明の太陽電池モジュールの取付構造は、複数の凸部を有する平板状屋根に太陽電池モジュールを取り付けるための太陽電池モジュールの取付構造であって、前記平板状屋根の凸部を挟持する挟持部と、該挟持部から立ち上がるように設けられた支持体とから成る取付治具と、形鋼から成る柱状の取付補助治具により前記太陽電池モジュールが支持され、前記平板状屋根に取り付けられていることを特徴とする。 In order to achieve the above object, the solar cell module mounting structure of the present invention is a solar cell module mounting structure for mounting a solar cell module on a flat roof having a plurality of convex portions, and the flat roof The solar cell module is supported by a mounting jig that includes a clamping part that sandwiches the convex part of the above, a support provided so as to rise from the clamping part, and a columnar mounting auxiliary jig that is made of a section steel, It is attached to a flat roof.
ここで、前記取付補助治具が複数用いられているとよい。 Here, it is preferable that a plurality of the mounting auxiliary jigs are used.
また、複数の前記取付補助治具間が繋材で連結されているとよい。 Moreover, it is good for the said some attachment auxiliary jigs to be connected with the connection material.
さらに、前記平板状屋根に接する前記取付補助治具の下端部の位置が、前記平板状屋根の支持材の略直上であるとよい。 Furthermore, the position of the lower end part of the said mounting auxiliary jig which touches the said flat roof is good in it being substantially right above the support material of the said flat roof.
また、前記取付治具の前記挟持部が挟持する前記平板状屋根の凸部は、該平板状屋根を構成する屋根部材同士の端部間を防水するために設けた目地カバーの部分であってもよい。 Further, the convex part of the flat roof sandwiched by the sandwiching part of the mounting jig is a portion of a joint cover provided for waterproofing between ends of roof members constituting the flat roof. Also good.
本発明の太陽電池モジュールの取付補助治具は、取付治具とともに用いられ、複数の凸部を有する平板状屋根に太陽電池モジュールを取り付けるための太陽電池モジュールの取付補助治具であって、上端部で前記太陽電池モジュールを支持し、下端部で前記平板状屋根に前記太陽電池モジュールの荷重を伝達する、形鋼から成る柱状とされていることを特徴とすることを特徴とする。 The solar cell module mounting auxiliary jig of the present invention is a solar cell module mounting auxiliary jig that is used together with the mounting jig and for mounting the solar cell module on a flat roof having a plurality of convex portions. The solar cell module is supported by a portion, and a columnar shape made of a shape steel is used to transmit the load of the solar cell module to the flat roof at a lower end portion.
ここで、前記取付補助治具の上端部は、支持する前記太陽電池モジュールの傾斜と略同一な傾斜角度に加工されているとよい。 Here, the upper end portion of the attachment auxiliary jig may be processed at an inclination angle substantially the same as the inclination of the solar cell module to be supported.
また、前記取付補助治具の下端部には、弾性体が設けられているとよい。 In addition, an elastic body may be provided at the lower end of the attachment auxiliary jig.
このような本発明の太陽電池モジュールの取付構造は、複数の凸部を有する平板状屋根に太陽電池モジュールを取り付けるための太陽電池モジュールの取付構造である。 Such a solar cell module mounting structure of the present invention is a solar cell module mounting structure for mounting a solar cell module on a flat roof having a plurality of convex portions.
そして、平板状屋根の凸部を挟持する挟持部と、挟持部から立ち上がるように設けられた支持体とから成る取付治具と、形鋼から成る柱状の取付補助治具により太陽電池モジュールが支持され、平板状屋根に取り付けられた構成とされている。 The solar cell module is supported by a mounting jig composed of a sandwiching section that sandwiches the convex part of the flat roof, a support provided so as to stand up from the sandwiching section, and a columnar mounting auxiliary jig made of section steel. It is set as the structure attached to the flat roof.
上記した構成なので、取付補助治具により、上方からの圧縮力に対して強くなるため、積雪地における積雪荷重に耐え得る構造強度を確保して太陽電池モジュールを取り付けることができる。 Since it becomes the above-mentioned structure, it becomes strong with respect to the compressive force from the upper part by an attachment auxiliary jig, Therefore The structural strength which can endure the snow load in a snowy place can be ensured, and a solar cell module can be attached.
なお、取付治具によっては、太陽電池モジュールの通常時の荷重に耐え得るのは勿論、風荷重による引張力に対しても強くなる。 Note that, depending on the mounting jig, the solar cell module can withstand the normal load, and is also strong against the tensile force caused by the wind load.
ここで、取付補助治具が複数用いられている場合は、想定される最大積雪量を考慮して、複数の取付補助治具を配置すれば、より確実に積雪荷重に耐え得る構造強度を確保することができる。 Here, when multiple mounting aids are used, it is possible to secure a structural strength that can withstand snow load more reliably by arranging multiple mounting aids in consideration of the maximum snow cover. can do.
また、複数の取付補助治具間が繋材で連結されている場合は、繋材により、太陽電池モジュールが横揺れし難くなる。 Moreover, when the some attachment auxiliary | assistant jig | tool is connected with the connection material, it becomes difficult to roll a solar cell module by a connection material.
さらに、平板状屋根に接する取付補助治具の下端部の位置が、平板状屋根の支持材の略直上である場合は、平板状屋根の支持材の略直上の位置は強度が高いので、平板状屋根を傷め難くすることができる。 Furthermore, when the position of the lower end portion of the auxiliary mounting jig in contact with the flat roof is substantially directly above the flat roof support, the position directly above the flat roof support is high in strength. The roof can be made difficult to damage.
また、取付治具の挟持部が挟持する平板状屋根の凸部は、平板状屋根を構成する屋根部材同士の端部間を防水するために設けた目地カバーの部分である場合は、屋根部材同士の端部間を防水するために設けた目地カバーの部分を、取付治具の挟持部により挟持する凸部として有効利用することができる。 In addition, when the convex portion of the flat roof sandwiched by the sandwiching portion of the mounting jig is a portion of a joint cover provided for waterproofing between the ends of the roof members constituting the flat roof, the roof member The joint cover portion provided for waterproofing between the end portions can be effectively used as a convex portion that is clamped by the clamping portion of the mounting jig.
このような本発明の太陽電池モジュールの取付補助治具は、取付治具とともに用いられ、複数の凸部を有する平板状屋根に太陽電池モジュールを取り付けるための太陽電池モジュールの取付補助治具である。 Such a solar cell module mounting auxiliary jig of the present invention is a solar cell module mounting auxiliary jig used together with the mounting jig for mounting the solar cell module on a flat roof having a plurality of convex portions. .
そして、上端部で太陽電池モジュールを支持し、下端部で平板状屋根に太陽電池モジュールの荷重を伝達する、形鋼から成る柱状とされた構成とされている。 And it is set as the column-shaped structure which consists of a shape steel which supports a solar cell module in an upper end part, and transmits the load of a solar cell module to a flat roof at a lower end part.
上記した構成なので、上方からの圧縮力に対して強くなるため、積雪地における積雪荷重に耐え得る構造強度を確保して太陽電池モジュールを取り付けることができる。 Since it becomes the above-mentioned composition, since it becomes strong to compressive force from the upper part, the structural strength which can endure the snow load in a snowy place can be secured, and a solar cell module can be attached.
ここで、取付補助治具の上端部は、支持する太陽電池モジュールの傾斜と略同一な傾斜角度に加工されている場合は、特別な別部材などを介さずに、取付補助治具の上端部に太陽電池モジュールを容易に固定することができる。 Here, when the upper end portion of the mounting auxiliary jig is processed at an inclination angle substantially the same as the inclination of the solar cell module to be supported, the upper end portion of the mounting auxiliary jig is not interposed without a special separate member. The solar cell module can be easily fixed to.
また、取付補助治具の下端部には、弾性体が設けられている場合は、弾性体により、取付補助治具の下端部が平板状屋根の表面を傷つけずに済むうえに、電食を防止することができる。 In addition, when an elastic body is provided at the lower end portion of the mounting auxiliary jig, the elastic body prevents the lower end portion of the mounting auxiliary jig from damaging the surface of the flat roof. Can be prevented.
以下、本発明を実施するための形態を、図面に示す実施例に基づいて説明する。 DESCRIPTION OF EMBODIMENTS Hereinafter, modes for carrying out the present invention will be described based on examples shown in the drawings.
先ず、実施例の構成について説明する。 First, the configuration of the embodiment will be described.
図1は、実施例の太陽電池モジュールの取付構造の概略構成を示している。 FIG. 1 shows a schematic configuration of a solar cell module mounting structure according to an embodiment.
この実施例の太陽電池モジュールの取付構造は、上面に複数の凸部2a,・・・が間隔をあけて設けられた平板状屋根2に太陽電池モジュール1を取り付けるためのものである。 The solar cell module mounting structure of this embodiment is for mounting the solar cell module 1 on a flat roof 2 having a plurality of convex portions 2a,...
これら凸部2a,・・・は、詳細な図示は省略するが、平板状屋根2の野地板22の上に葺かれる屋根板21,・・・の端部間にできる目地を防水するために設けた目地カバーの部分で形成されている。 These convex portions 2a,... Are not shown in detail, but in order to waterproof joints formed between the end portions of the roof plates 21,. It is formed of the joint cover provided.
そして、太陽電池モジュール1は、取付治具3A,3A,3B,3Bと、取付補助治具4A,・・・,4B・・・とによって支持されて平板状屋根2に取り付けられている。 The solar cell module 1 is supported by the mounting jigs 3A, 3A, 3B, 3B and the mounting auxiliary jigs 4A,.
具体的には、図2に示したように、取付治具3A,3A,3B,3Bは、太陽電池モジュール1の四隅近傍に設けられ、取付補助治具4A,・・・,4B・・・は、それより内側に設けられている。 Specifically, as shown in FIG. 2, the mounting jigs 3A, 3A, 3B, 3B are provided in the vicinity of the four corners of the solar cell module 1, and the mounting auxiliary jigs 4A,. Is provided on the inner side.
ここで、傾斜して取り付けられた太陽電池モジュール1の短尺側の取付治具3A,3Aの近傍に設けられた短尺側の取付補助治具4A,・・・は、太陽電池モジュール1の長手方向の枠材間に設けた長尺の補強基板5上に取り付けられている。 Here, the short side mounting auxiliary jigs 4A provided in the vicinity of the short side mounting jigs 3A, 3A of the solar cell module 1 mounted at an angle are the longitudinal direction of the solar cell module 1. It is attached on a long reinforcing substrate 5 provided between the frame members.
なお、外側の2つの取付補助治具4A,4Aは、取付治具3Aの支持体としての取付片32の先端部を介して取り付けられており、残りの取付補助治具4A,4A,4Aは、同じものを用いることができるように、取付片32と略同じ厚さのスペーサーを介して取り付けられている。 The two outer mounting auxiliary jigs 4A and 4A are attached via the tip of the mounting piece 32 as a support for the mounting jig 3A, and the remaining mounting auxiliary jigs 4A, 4A and 4A are In order to be able to use the same thing, it is attached via a spacer having substantially the same thickness as the attachment piece 32.
また、傾斜して取り付けられた太陽電池モジュール1の長尺側の取付治具3B,3Bの近傍に設けられた長尺側の取付補助治具4B,・・・も、太陽電池モジュール1の長手方向の枠材間に設けた長尺の補強基板5上に取り付けられている。 Further, the long side mounting auxiliary jigs 4B provided in the vicinity of the long side mounting jigs 3B, 3B of the solar cell module 1 mounted in an inclined manner are also the length of the solar cell module 1. It is attached on a long reinforcing substrate 5 provided between the frame members in the direction.
なお、外側の2つの取付補助治具4B,4Bは、取付治具3Bの支持体としての取付片32の先端部を介して取り付けられており、残りの取付補助治具4B,4B,4Bは、同じものを用いることができるように、取付片32と略同じ厚さのスペーサーを介して取り付けられている。 The outer two auxiliary mounting jigs 4B and 4B are mounted via the tip of the mounting piece 32 as a support for the mounting jig 3B, and the remaining mounting auxiliary jigs 4B, 4B and 4B are In order to be able to use the same thing, it is attached via a spacer having substantially the same thickness as the attachment piece 32.
さらに、長尺側の取付補助治具4B,・・・の中間部の側面は、横揺れ防止用に断面略L字状の長尺の繋材6で連結されている。 Further, the side surfaces of the middle part of the long side mounting auxiliary jigs 4B,... Are connected by a long connecting member 6 having a substantially L-shaped cross section for preventing rolling.
また、図3に示したように、取付治具3A,3A,3B,3Bと、取付補助治具4A,・・・,4B・・・とは、平板状屋根2の支持材としての垂木23,・・・の略直上となるようになっている。 As shown in FIG. 3, the mounting jigs 3A, 3A, 3B, 3B and the mounting auxiliary jigs 4A,. , ... is just above.
次に、取付治具3A,3Bと、取付補助治具4A,4Bの詳細について説明する。 Next, details of the mounting jigs 3A and 3B and the mounting auxiliary jigs 4A and 4B will be described.
先ず、短尺側の取付治具3Aは、図4に示したように、平板状屋根2の目地カバー21aの部分で形成される凸部2aに取り付けられる挟持金具31と、この挟持金具31に下部を押し込む太陽電池モジュール1の支持体としての取付片32と、挟持金具31と取付片32の貫通孔314,322に装着されるボルト部33とを備えている。 First, as shown in FIG. 4, the short-side mounting jig 3 </ b> A includes a holding metal fitting 31 attached to the convex portion 2 a formed by the joint cover 21 a portion of the flat roof 2, and a lower portion on the holding metal fitting 31. The mounting piece 32 as a support body of the solar cell module 1 that pushes in, and the clamp part 31 and the bolt part 33 attached to the through holes 314 and 322 of the mounting piece 32 are provided.
この挟持金具31には、図5(a)及び図5(b)に示したように、平板状屋根2の凸部2aを挟んで配置される一対の挟持部311,311と、一方の挟持部311の上縁から上方に延出されるとともに折り返されて他方の挟持部311の上縁に繋がる連結部312と、この連結部312の折返部312aの一部を開口したスリット状の挿込口313と、連結部312の対向する2面を貫通する貫通孔314とが設けられている。 As shown in FIGS. 5 (a) and 5 (b), the sandwiching metal 31 includes a pair of sandwiching portions 311 and 311 disposed with the convex portion 2a of the flat roof 2 sandwiched therebetween, and one sandwiching portion. A connecting portion 312 extending upward from the upper edge of the portion 311 and being folded back and connected to the upper edge of the other sandwiching portion 311, and a slit-like insertion opening that opens a part of the folded portion 312 a of the connecting portion 312 313 and a through hole 314 penetrating through two opposing surfaces of the connecting portion 312 are provided.
また、取付片32は、側面視略L字形に成形された金具で、垂直方向に延設される平板部が挿入部321となり、この挿入部321の上縁から斜め上方に向かって延設される平板部が太陽電池モジュール1を載置する台座部323となっている。 Further, the attachment piece 32 is a metal fitting formed in an approximately L shape in a side view, and a flat plate portion extending in the vertical direction becomes an insertion portion 321, and is extended obliquely upward from the upper edge of the insertion portion 321. The flat plate portion is a pedestal portion 323 on which the solar cell module 1 is placed.
この挿入部321には、挿込口313から挟持金具31内へ挿入した際、連結部312の貫通孔314と連通する位置に、貫通孔322が形成されている。 The insertion portion 321 is formed with a through hole 322 at a position where the insertion portion 321 communicates with the through hole 314 of the connecting portion 312 when the insertion portion 321 is inserted into the holding metal fitting 31.
すなわち、挟持金具31の連結部312の対向する2面と取付片32の挿入部321とを貫通する貫通孔314,322が形成される。 That is, through-holes 314 and 322 are formed through the two opposing surfaces of the connecting portion 312 of the holding metal fitting 31 and the insertion portion 321 of the attachment piece 32.
また、台座部323には、上下方向に貫通する取付孔324,325,325が設けられており、太陽電池モジュール1の取り付けに利用される。 In addition, the pedestal portion 323 is provided with mounting holes 324, 325, 325 penetrating in the vertical direction, and is used for mounting the solar cell module 1.
すなわち、台座部323は、太陽電池モジュール1の設置角度に応じた角度に成形されており、取付孔324,325,325の下側から図示省略のボルトを螺合することにより、太陽電池モジュール1を下方から面で支持する。 That is, the pedestal portion 323 is formed at an angle corresponding to the installation angle of the solar cell module 1, and the solar cell module 1 is screwed into a bolt (not shown) from below the mounting holes 324, 325, 325. Is supported on the surface from below.
なお、先端側の取付孔324は、外側の短尺側の取付補助治具4Aの取り付けにも利用される。 The attachment hole 324 on the distal end side is also used for attaching the attachment auxiliary jig 4A on the outer short side.
そして、ボルト部33は、連結部312の貫通孔314と取付片32の貫通孔322とに挿通されるボルト331と、このボルト331に螺着させるナット332とから構成されている。 The bolt portion 33 includes a bolt 331 that is inserted into the through hole 314 of the connecting portion 312 and the through hole 322 of the attachment piece 32, and a nut 332 that is screwed to the bolt 331.
次に、長尺側の取付治具3Bは、図6に示したように、短尺側の取付治具3Aと、支持体としての取付片32の部分が若干異なるのみである。 Next, as shown in FIG. 6, the long side mounting jig 3 </ b> B is only slightly different from the short side mounting jig 3 </ b> A in the portion of the mounting piece 32 as a support.
すなわち、垂直方向に延設される平板部である挿入部321がより長く、この挿入部321の上縁から延設される平板部である太陽電池モジュール1を載置する台座部323が、斜め下方に向かっていることが異なる。 That is, the insertion portion 321 that is a flat plate portion extending in the vertical direction is longer, and the pedestal portion 323 on which the solar cell module 1 that is a flat plate portion extending from the upper edge of the insertion portion 321 is placed is oblique. It is different that it is going downward.
次に、短尺側の取付補助治具4Aは、図7(a)〜図7(d)に示したように、フランジ部41,41とウェブ部42とから成る溝形鋼の柱状の本体部40を有する。 Next, as shown in FIGS. 7 (a) to 7 (d), the short side mounting auxiliary jig 4A is a columnar main body portion of a grooved steel made up of flange portions 41, 41 and a web portion 42. 40.
ここで、本体部40の下端部には、ウェブ部42を延設した部分を略水平に折り曲げて下部エンドプレート43が形成されている。 Here, a lower end plate 43 is formed at a lower end portion of the main body portion 40 by bending a portion where the web portion 42 is extended substantially horizontally.
この下部エンドプレート43は、面で太陽電池モジュール1の荷重を伝達するように、フランジ部41,41に勝つようにされている。 The lower end plate 43 is configured to overcome the flange portions 41 and 41 so as to transmit the load of the solar cell module 1 on the surface.
なお、下部エンドプレート43の折り曲げ部の両端には、折り曲げ易いように切欠が設けられている。 Note that notches are provided at both ends of the bent portion of the lower end plate 43 so as to be easily bent.
さらに、下部エンドプレート43の下面には、ゴムパッキンなどの弾性体44が貼設されている。 Further, an elastic body 44 such as rubber packing is attached to the lower surface of the lower end plate 43.
また、本体部40の上端部には、ウェブ部42を延設した部分を太陽電池モジュール1の設置角度に合わせて斜め上方に折り曲げた上部エンドプレート45が形成されている。 Further, an upper end plate 45 is formed on the upper end portion of the main body portion 40 by bending the portion where the web portion 42 is extended obliquely upward according to the installation angle of the solar cell module 1.
この上部エンドプレート45は、太陽電池モジュール1の設置誤差等を吸収し易いように、あえてフランジ部41,41に勝つようにしていない。 The upper end plate 45 does not dare to overcome the flange portions 41, 41 so as to easily absorb installation errors of the solar cell module 1 and the like.
さらに、この上部エンドプレート45には、上下方向に貫通する取付孔451が設けられており、太陽電池モジュール1の下側から螺合されるボルトによる取り付けに利用される。 Further, the upper end plate 45 is provided with a mounting hole 451 penetrating in the vertical direction, and is used for mounting with a bolt screwed from the lower side of the solar cell module 1.
なお、フランジ部41,41の上端部もこの上部エンドプレート45の傾斜角度に略合わせてカッティングされている。 The upper end portions of the flange portions 41 and 41 are also cut in accordance with the inclination angle of the upper end plate 45.
次に、長尺側の取付補助治具4Bは、図8(a)〜図8(d)に示したように、本体部40の部分が若干異なるのみである。 Next, as shown in FIGS. 8A to 8D, the long side mounting auxiliary jig 4B is only slightly different from the main body 40.
すなわち、本体部40を構成するフランジ部41,41とウェブ部42がより長く、上部エンドプレートが、ウェブ部42を延設した部分を太陽電池モジュール1の設置角度に合わせて斜め下方に折り曲げて形成されていることが異なる。 That is, the flange portions 41 and 41 and the web portion 42 constituting the main body 40 are longer, and the upper end plate bends the portion where the web portion 42 is extended obliquely downward according to the installation angle of the solar cell module 1. It is different that it is formed.
さらに、ウェブ部42には、繋材6をボルトなどで取り付けるための取付孔421が設けられていることも異なる。 Further, the web portion 42 is different in that an attachment hole 421 for attaching the connecting material 6 with a bolt or the like is provided.
次に、実施例の作用効果について説明する。 Next, functions and effects of the embodiment will be described.
このような実施例の太陽電池モジュールの取付構造は、複数の凸部2a,・・・を有する平板状屋根2に太陽電池モジュール1を取り付けるための太陽電池モジュールの取付構造である。 The solar cell module mounting structure of such an embodiment is a solar cell module mounting structure for mounting the solar cell module 1 to the flat roof 2 having a plurality of convex portions 2a,.
そして、平板状屋根2の凸部2aを挟持する挟持部311,311と、挟持部311,311を有する挟持金具31から立ち上がるように設けられた支持体としての取付片32とから成る取付治具3A,3Bと、溝形鋼から成る柱状の取付補助治具4A,4Bにより太陽電池モジュール1が支持され、平板状屋根2に取り付けられた構成とされている。 And the attachment jig | tool which consists of the clamping parts 311 and 311 which clamp the convex part 2a of the flat roof 2, and the attachment piece 32 as a support body provided so that it may stand up from the clamping metal fitting 31 which has the clamping parts 311 and 311 The solar cell module 1 is supported by 3A, 3B and columnar mounting auxiliary jigs 4A, 4B made of channel steel, and is attached to the flat roof 2.
上記した構成なので、取付補助治具4A,4Bにより、上方からの圧縮力に対して強くなるため、積雪地における積雪荷重に耐え得る構造強度を確保して太陽電池モジュール1を取り付けることができる。 Since it becomes the above-mentioned structure, since it becomes strong with respect to the compressive force from upper direction by attachment auxiliary jig | tool 4A, 4B, the structural strength which can endure the snow load in a snowy area can be ensured, and the solar cell module 1 can be attached.
なお、取付治具3A,3Bによっては、太陽電池モジュール1の通常時の荷重に耐え得るのは勿論、風荷重による引張力に対しても強くなる。 Note that, depending on the mounting jigs 3A and 3B, the solar cell module 1 can withstand a normal load, and is strong against a tensile force caused by a wind load.
ここで、取付補助治具4A,4Bが複数用いられている。 Here, a plurality of attachment auxiliary jigs 4A and 4B are used.
このため、想定される最大積雪量を考慮して、複数の取付補助治具4A,4Bを配置すれば、より確実に積雪荷重に耐え得る構造強度を確保することができる。 For this reason, if the plurality of auxiliary mounting jigs 4A and 4B are arranged in consideration of the assumed maximum snow accumulation amount, it is possible to ensure the structural strength that can withstand the snow load more reliably.
また、複数の長尺側の取付補助治具4B,・・・間が繋材6で連結されている。 In addition, the plurality of long-side attachment auxiliary jigs 4 </ b> B,...
このため、繋材6により、太陽電池モジュール1が横揺れし難くなる。 For this reason, the connecting material 6 makes it difficult for the solar cell module 1 to roll.
さらに、平板状屋根2に接する取付補助治具4A,4Bの下端部の位置が、平板状屋根2の支持材としての垂木23のそれぞれ略直上である。 Furthermore, the positions of the lower end portions of the attachment auxiliary jigs 4 </ b> A and 4 </ b> B that are in contact with the flat roof 2 are almost directly above the rafters 23 as the support material of the flat roof 2.
このため、平板状屋根2の支持材としての垂木23の略直上の位置は強度が高いので、平板状屋根2を傷め難くすることができる。 For this reason, the position directly above the rafter 23 as a support material for the flat roof 2 has high strength, so that the flat roof 2 can be hardly damaged.
また、取付治具3A,3Bの挟持部311,311が挟持する平板状屋根2の凸部2a,・・・は、平板状屋根2を構成する屋根板21,21同士の端部間を防水するために設けた目地カバー21aの部分である。 Further, the convex portions 2a of the flat roof 2 sandwiched by the sandwiching portions 311 and 311 of the mounting jigs 3A and 3B are waterproofed between the ends of the roof plates 21 and 21 constituting the flat roof 2. This is a portion of the joint cover 21a provided for the purpose.
このため、屋根板21,21同士の端部間を防水するために設けた目地カバー21aの部分を、取付治具3A,3Bの挟持部311,311により挟持する凸部2aとして有効利用することができる。 For this reason, the portion of the joint cover 21a provided for waterproofing between the end portions of the roof plates 21 and 21 is effectively used as the convex portion 2a sandwiched by the sandwiching portions 311 and 311 of the mounting jigs 3A and 3B. Can do.
このような実施例の太陽電池モジュールの取付補助治具4A,4Bは、取付治具3A,3Bとともに用いられ、複数の凸部2aを有する平板状屋根2に太陽電池モジュール1を取り付けるための太陽電池モジュールの取付補助治具である。 The solar cell module mounting auxiliary jigs 4A and 4B of this embodiment are used together with the mounting jigs 3A and 3B, and the solar cell module 1 is mounted on the flat roof 2 having a plurality of convex portions 2a. It is a battery module mounting aid.
そして、上端部で太陽電池モジュール1を支持し、下端部で平板状屋根2に太陽電池モジュール1の荷重を伝達する、溝形鋼から成る柱状とされた構成とされている。 And it is set as the column-shaped structure which consists of channel steel which supports the solar cell module 1 in an upper end part, and transmits the load of the solar cell module 1 to the flat roof 2 in a lower end part.
上記した構成なので、上方からの圧縮力に対して強くなるため、積雪地における積雪荷重に耐え得る構造強度を確保して太陽電池モジュール1を取り付けることができる。 Since it becomes the above-mentioned composition, since it becomes strong to compressive force from the upper part, the structural strength which can endure the snow load in a snowy place can be secured, and the solar cell module 1 can be attached.
ここで、取付補助治具4A,4Bの上端部は、支持する太陽電池モジュール1の傾斜と略同一な傾斜角度の上部エンドプレート45が設けられるように加工されている。 Here, the upper end portions of the mounting auxiliary jigs 4A and 4B are processed so that an upper end plate 45 having an inclination angle substantially the same as the inclination of the solar cell module 1 to be supported is provided.
このため、特別な別部材などを介さずに、取付補助治具4A,4Bの上端部に太陽電池モジュール1を容易に固定することができる。 For this reason, the solar cell module 1 can be easily fixed to the upper end portions of the mounting auxiliary jigs 4A and 4B without using a special separate member.
また、取付補助治具4A,4Bの下端部には、下部エンドプレート43を介して弾性体が設けられている。 In addition, an elastic body is provided at the lower end of the mounting auxiliary jigs 4 </ b> A and 4 </ b> B via a lower end plate 43.
このため、ゴムパッキンなどの弾性体44により、取付補助治具4A,4Bの下端部が平板状屋根2の表面である屋根板21を傷つけずに済むうえに、電食を防止することができる。 For this reason, the elastic body 44 such as rubber packing can prevent the lower end portions of the attachment auxiliary jigs 4A and 4B from damaging the roof plate 21 which is the surface of the flat roof 2, and can prevent electrolytic corrosion. .
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に基づいて詳述してきたが、具体的な構成は、この実施例に限らず、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 was explained in full detail based on the Example with reference to drawings, the concrete structure is not limited to this Example, and is a grade which does not deviate from the summary of this invention. Design changes are included in the present invention.
例えば、上記した実施例では、平板状屋根2として凸部2a,・・・が目地カバー21a,・・・であるものに適用して実施したが、これに限定されず、複数の凸部を有する折板から成る平板状屋根などに適用して実施してもよい。 For example, in the above-mentioned embodiment, the projection 2a,... Is applied as the flat roof 2 to the joint cover 21a,. You may implement by applying to the flat roof etc. which consist of a folded plate which has.
また、上記した実施例では、取付補助治具4A,4Bの本体部40を溝形鋼として実施したが、これに限定されず、例えば、本体部40をH形鋼などとして実施してもよい。 Moreover, in the above-mentioned Example, although the main-body part 40 of attachment auxiliary jig | tool 4A, 4B was implemented as channel steel, it is not limited to this, For example, you may implement the main-body part 40 as H-section steel etc. .
さらに、上記した実施例では、取付治具3A,3Bを用いて実施したが、これに限定されない。 Furthermore, in the above-described embodiment, the mounting jigs 3A and 3B are used, but the present invention is not limited to this.
すなわち、取付治具は、平板状屋根2の凸部2aを挟持する挟持部とこれを支持する支持体を有するものであればよい。 That is, the attachment jig may be any one having a holding part that holds the convex part 2a of the flat roof 2 and a support body that supports the holding part.
1 太陽電池モジュール
2 平板状屋根
2a 凸部
21 屋根板
21a 目地カバー
22 野地板
23 垂木(支持材)
3A 取付治具
3B 取付治具
31 挟持金具
311 挟持部
312 連結部
312a 折返部
313 挿込口
314 貫通孔
32 取付片(支持体)
321 挿入部
322 貫通孔
323 台座部
324 取付孔
324 取付孔
325 取付孔
33 ボルト部
331 ボルト
332 ナット
4A 取付補助治具
4B 取付補助治具
40 本体部
41 フランジ部
42 ウェブ部
421 取付孔
43 下部エンドプレート
44 弾性体
45 上部エンドプレート
451 取付孔
5 補強基板
6 繋材
DESCRIPTION OF SYMBOLS 1 Solar cell module 2 Flat roof 2a Convex part 21 Roof board 21a Joint cover 22 Field board 23 Rafter (support material)
3A Mounting jig 3B Mounting jig 31 Holding metal fitting 311 Holding part 312 Connection part 312a Folding part 313 Insertion port 314 Through-hole 32 Attachment piece (support)
321 Insertion part 322 Through hole 323 Base part 324 Attachment hole 324 Attachment hole 325 Attachment hole 33 Bolt part 331 Bolt 332 Nut 4A Attachment aid 4B Attachment aid 40 Main part 41 Flange part 42 Web part 421 Attachment hole 43 Lower end Plate 44 Elastic body 45 Upper end plate 451 Mounting hole 5 Reinforcement substrate 6 Connecting material
Claims (8)
前記平板状屋根の凸部を挟持する挟持部と、該挟持部から立ち上がるように設けられた支持体とから成る取付治具と、形鋼から成る柱状の取付補助治具により前記太陽電池モジュールが支持され、前記平板状屋根に取り付けられていることを特徴とする太陽電池モジュールの取付構造。 A solar cell module mounting structure for mounting a solar cell module on a flat roof having a plurality of convex portions,
The solar cell module includes a mounting jig that includes a sandwiching section that sandwiches the convex portion of the flat roof, a support provided so as to rise from the sandwiching section, and a columnar mounting auxiliary jig that is made of steel. A mounting structure for a solar cell module, which is supported and attached to the flat roof.
上端部で前記太陽電池モジュールを支持し、下端部で前記平板状屋根に前記太陽電池モジュールの荷重を伝達する、形鋼から成る柱状とされていることを特徴とする太陽電池モジュールの取付補助治具。 A solar cell module mounting auxiliary jig for mounting the solar cell module on a flat roof having a plurality of convex portions, which is used together with a mounting jig,
Supporting the solar cell module at the upper end, for transmitting the load of the solar cell module on the flat roof at the lower portion, the mounting of the solar cell module that is characterized in that there is a columnar shape constituted by the shaped steel Auxiliary jig.
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US8294022B2 (en) * | 2009-04-01 | 2012-10-23 | Sunpower Corporation | Photovoltaic array with minimally penetrating rooftop support system |
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