JP5322103B2 - Drainage structure of solar energy conversion module integrated exterior structure - Google Patents

Drainage structure of solar energy conversion module integrated exterior structure Download PDF

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JP5322103B2
JP5322103B2 JP2009085415A JP2009085415A JP5322103B2 JP 5322103 B2 JP5322103 B2 JP 5322103B2 JP 2009085415 A JP2009085415 A JP 2009085415A JP 2009085415 A JP2009085415 A JP 2009085415A JP 5322103 B2 JP5322103 B2 JP 5322103B2
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drainage
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JP2010236270A (en
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元旦 舩木
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元旦ビューティ工業株式会社
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S40/00Safety or protection arrangements of solar heat collectors; Preventing malfunction of solar heat collectors
    • F24S40/40Preventing corrosion; Protecting against dirt or contamination
    • F24S40/44Draining rainwater or condensation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S25/00Arrangement of stationary mountings or supports for solar heat collector modules
    • F24S25/30Arrangement of stationary mountings or supports for solar heat collector modules using elongate rigid mounting elements extending substantially along the supporting surface, e.g. for covering buildings with solar heat collectors
    • F24S25/33Arrangement of stationary mountings or supports for solar heat collector modules using elongate rigid mounting elements extending substantially along the supporting surface, e.g. for covering buildings with solar heat collectors forming substantially planar assemblies, e.g. of coplanar or stacked profiles
    • F24S25/35Arrangement of stationary mountings or supports for solar heat collector modules using elongate rigid mounting elements extending substantially along the supporting surface, e.g. for covering buildings with solar heat collectors forming substantially planar assemblies, e.g. of coplanar or stacked profiles by means of profiles with a cross-section defining separate supporting portions for adjacent modules
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S20/00Solar heat collectors specially adapted for particular uses or environments
    • F24S2020/10Solar modules layout; Modular arrangements
    • F24S2020/13Overlaying arrangements similar to roof tiles
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/20Solar thermal
    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking

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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)
  • Photovoltaic Devices (AREA)

Description

本発明は、新設屋根にも既設屋根にも適用でき、施工する屋根の形式を限定することもなく、屋根面の一部に太陽エネルギー変換モジュールを導入した太陽エネルギー変換モジュール一体型外装構造の排水構造に関する。   The present invention can be applied to a new roof or an existing roof, and does not limit the type of roof to be constructed. The drainage of the solar energy conversion module integrated exterior structure in which the solar energy conversion module is introduced into a part of the roof surface. Concerning structure.

光エネルギーを電気エネルギーに変換する太陽光発電は、クリーンエネルギーを得る手段として幅広い利用が期待され、近年、建築物の屋根、壁等に適用されるようになり、生活に必要な電力を補うシステムとして実用化されている。   Solar power generation, which converts light energy into electrical energy, is expected to be widely used as a means of obtaining clean energy. In recent years, it has been applied to the roofs and walls of buildings, and it is a system that supplements the power required for daily life. Has been put to practical use.

太陽電池等の太陽エネルギー変換モジュールを屋根に設置する方法としては、横葺き式の外装パネルに太陽電池を組み付け、この外装パネルを用いた屋根構造が多く提案されているが、特許文献1に記載されるような縦葺き式の外装パネルに太陽電池を組み付け、この外装パネルを用いた屋根構造も提案されている。
この特許文献1は、太陽電池の裏面にて様々な理由で発生した水を水抜き孔から排出して水流れ方向に沿う排水部材から流下させるものである。
As a method of installing a solar energy conversion module such as a solar cell on a roof, a solar cell is assembled on a side-mounted exterior panel, and many roof structures using this exterior panel have been proposed. There has also been proposed a roof structure in which a solar cell is assembled to a vertical-type exterior panel and the exterior panel is used.
In Patent Document 1, water generated for various reasons on the back surface of a solar cell is discharged from a drain hole and allowed to flow down from a drainage member along the water flow direction.

特開2007−332774号公報JP 2007-332774 A

しかしながら、前記特許文献1は、外装パネル自体の排水を目的としたものであって、屋根面全体の排水については、専ら排水部材にたよるものであった。
そのため、例えば排水部材に雨水が導かれるような形式(寸法)の屋根に限定され、全面改修を余儀なくされることがあった。
However, Patent Document 1 is intended for drainage of the exterior panel itself, and drainage of the entire roof surface is exclusively due to drainage members.
For this reason, for example, the roof is limited to a roof (type) in which rainwater is guided to the drainage member, and the entire surface may be repaired.

また、近年では、屋根面の一部のみに太陽エネルギー変換モジュールを導入するケースが増加しており、結果的に一つの屋根面を、太陽エネルギー変換モジュールを備える外装面と備えない外装面とで構成されることが多くなってきている。   In recent years, the number of cases in which a solar energy conversion module is introduced to only a part of the roof surface has increased. As a result, one roof surface can be divided into an exterior surface with a solar energy conversion module and an exterior surface without a solar energy conversion module. It is becoming more and more composed.

そこで、本発明は、新設屋根にも既設屋根にも適用でき、施工する屋根の形式を限定することもなく、各種の屋根面の一部に太陽エネルギー変換モジュールを導入することができる太陽エネルギー変換モジュール一体型外装構造の排水構造を提供することを目的とする。   Therefore, the present invention can be applied to a new roof or an existing roof, and does not limit the type of roof to be constructed, and a solar energy conversion module capable of introducing a solar energy conversion module to a part of various roof surfaces. It aims at providing the drainage structure of a module integrated exterior structure.

本発明は、上記に鑑み提案されたもので、排水部は、太陽エネルギー変換モジュールの側縁に流れ方向に設けた排水部材又は縦支持部材に設けられ、排水部上に太陽電池変換モジュールの側縁、もしくは横支持材の端縁が位置する太陽エネルギー変換モジュール一体型外装構造の排水構造であって、太陽エネルギー変換モジュール一体型外装構造内に形成した排水部の水下端部又は該排水部と接続した排水用接続部材の水下端部を、水下側に隣接する外装構造の最水上側に位置する外装材上に配設することを特徴とする太陽エネルギー変換モジュール一体型外装構造の排水構造に関するものである。 The present invention has been proposed in view of the above, and the drainage portion is provided on a drainage member or a vertical support member provided in the flow direction on the side edge of the solar energy conversion module, and the solar cell conversion module side is provided on the drainage portion. The drainage structure of the solar energy conversion module integrated exterior structure where the edge or the edge of the lateral support member is located, and the lower end of the drainage part formed in the solar energy conversion module integrated exterior structure or the drainage part A drainage structure for a solar energy conversion module-integrated exterior structure, characterized in that the lower end of the connected drainage connection member is disposed on the exterior material located on the uppermost water surface of the exterior structure adjacent to the waterside. It is about.

また、本発明は、前記排水構造において、排水部を下地面より高く位置させていること特徴とする太陽エネルギー変換モジュール一体型外装構造の排水構造をも提案するものである。   The present invention also proposes a drainage structure of a solar energy conversion module-integrated exterior structure characterized in that in the drainage structure, the drainage portion is positioned higher than the base surface.

本発明の太陽エネルギー変換モジュール一体型外装構造の排水構造は、排水部の水下端部又は該排水部と接続した排水用接続部材の水下端部を、水下側に隣接する外装構造の最水上側に位置する外装材上に配設するので、排水部を流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。   The drainage structure of the solar energy conversion module-integrated exterior structure of the present invention is the water surface of the exterior structure adjacent to the lower side of the water lower end portion of the drainage portion or the water lower end portion of the drainage connecting member connected to the drainage portion. Since it arrange | positions on the exterior material located in the side, the rain water etc. which flow down a drainage part can be reliably guide | induced to the exterior structure adjacent to the underwater side.

また、排水部を下地面より高く位置させている場合には、下地面と排水部との間(空間)に外装材を容易に配設することができ、雨水を縦支持材の排水部から、外装材の表面に導いて流下させることができる。   In addition, when the drainage portion is positioned higher than the ground surface, an exterior material can be easily disposed between the ground surface and the drainage portion (space), and rainwater can be disposed from the drainage portion of the vertical support material. It can be led down to the surface of the exterior material.

(a)本発明の排水構造の一実施例を示す側断面図、(b)その正断面図である。(A) The side sectional view showing one example of the drainage structure of the present invention, (b) The front sectional view. (a)本発明の排水構造の他の一実施例を示す側断面図、(b)その正断面図である。(A) The side sectional view showing other examples of the drainage structure of the present invention, (b) The front sectional view. (a)本発明の排水構造の他の一実施例を示す側断面図、(b)その正断面図、(c)左右方向の接続部分を拡大して示す正断面図である。(A) Side sectional view showing another embodiment of the drainage structure of the present invention, (b) a front sectional view thereof, (c) a front sectional view showing an enlarged connecting portion in the left-right direction. (a)本発明の排水構造の他の一実施例を示す側断面図、(b)その正断面図である。(A) The side sectional view showing other examples of the drainage structure of the present invention, (b) The front sectional view. (a)本発明の排水構造の他の一実施例を示す側断面図、(b)その正断面図、(c)左右方向の接続部分を拡大して示す正断面図である。(A) Side sectional view showing another embodiment of the drainage structure of the present invention, (b) a front sectional view thereof, (c) a front sectional view showing an enlarged connecting portion in the left-right direction. (a)本発明の排水構造の他の一実施例を示す側断面図、(b)その正断面図である。(A) The side sectional view showing other examples of the drainage structure of the present invention, (b) The front sectional view.

本発明の太陽エネルギー変換モジュール一体型外装構造の排水構造は、太陽エネルギー変換モジュール一体型外装構造内に形成した排水部の水下端部又は該排水部と接続した排水用接続部材の水下端部を、水下側に隣接する外装構造の最水上側に位置する外装材上に配設するものである。   The drainage structure of the solar energy conversion module-integrated exterior structure of the present invention includes the lower end of the drainage formed in the solar energy conversion module-integrated exterior structure or the lower end of the drainage connection member connected to the drainage. In this case, it is disposed on the exterior material located on the uppermost water side of the exterior structure adjacent to the underwater side.

前記太陽エネルギー変換モジュール一体型外装構造内に形成した排水部は、一つに限るものではなく、二つ以上設けていてもよく、例えば流れ方向に連続する樋状の排水部材、又は縦支持材やフレームなどに設けてもよい。
特に前者の場合は、排水部を下地面より高く位置させることにより、下地面と排水部との間(空間)に最水上側に位置する外装材を容易に配設することができる。
なお、流れ方向に連続して配される排水部(材)に対し、左右方向に配する部材を「流水部材」として区別する。
The drainage part formed in the solar energy conversion module integrated exterior structure is not limited to one, and two or more drainage parts may be provided, for example, a bowl-shaped drainage member continuous in the flow direction, or a vertical support material It may be provided on a frame or the like.
In particular, in the former case, by placing the drainage portion higher than the base surface, the exterior material positioned on the uppermost water side can be easily disposed between the base surface and the drainage portion (space).
In addition, with respect to the drainage part (material) continuously arranged in the flow direction, a member arranged in the left-right direction is distinguished as a “flowing member”.

前記排水部を下地面より高く位置させて下地面と排水部との間に空間を形成する場合には、太陽エネルギー変換モジュールの配線ケーブルを通す空間としても利用することができ、左右方向に隣接するパネル材の太陽エネルギー変換モジュールのケーブルを容易に接続することができる。
この態様における排水部材の裏面側には、空間を確保するために、受座部材を介在させる。この受座部材は、ピース材でもよく、下地への固定部と、その上側に配する排水部材を支持する支持部とを有するものであれば、特にその構成及び形状を限定するものではない。
また、この態様における(排水部を備える)縦支持材やフレームなどは、排水部の裏面側に空間を確保するために、前記受座部材を介在させてもよいし、脚部を備えるようにしてもよい。この脚部は、その下端が下地への固定部である。
そして、これらの受座部材や脚部により確保される裏面側の空間は、対象となる屋根面(外装面)に隣接して太陽電池を備えない屋根材や屋根パネルが配設される際に、最も水上側に位置する屋根材又は屋根パネルを水下側から配設可能な高さであればよく、さらに太陽エネルギー変換モジュールのケーブルが通る高さを備えるものがより好ましい。
When the drainage part is positioned higher than the ground surface to form a space between the ground surface and the drainage part, it can also be used as a space through which the wiring cable of the solar energy conversion module passes and is adjacent in the left-right direction. It is possible to easily connect the solar energy conversion module cable of the panel material.
A seat member is interposed on the back surface side of the drainage member in this aspect in order to secure a space. The seat member may be a piece material, and the configuration and shape thereof are not particularly limited as long as the seat member has a fixed portion to the base and a support portion that supports the drainage member disposed on the upper side.
In addition, in this aspect, the vertical support member (including the drainage part), the frame, and the like may include the seat member or the leg part in order to secure a space on the back side of the drainage part. May be. The lower end of the leg portion is a fixing portion to the base.
And the space of the back side ensured by these seat members and legs is provided when a roof material or a roof panel not provided with a solar cell is disposed adjacent to a target roof surface (exterior surface). It is sufficient that the roof material or the roof panel located on the uppermost water side can be disposed from the lower side, and more preferably has a height through which the cable of the solar energy conversion module passes.

なお、排水部の水下端部を、水下側に隣接する外装材上に配設することができない場合には、後述する図示実施例(図5)に示すように、前記排水部と接続した排水用接続部材の水下端部を、水下側に隣接する外装材上に配設すればよい。   In addition, when the water lower end part of the drainage part cannot be disposed on the exterior material adjacent to the underwater side, the drainage part was connected to the drainage part as shown in the illustrated example (FIG. 5) described later. What is necessary is just to arrange | position the water lower end part of the connection member for drainage on the exterior material adjacent to the underwater side.

前記太陽エネルギー変換モジュール(以下、太陽電池という)一体型外装構造については、何等限定されるものではなく、例えば公知の金属製の縦葺き外装材の面板部に太陽電池を積層状に一体化させたものでも、後述する図示実施例のように流れ方向に長尺な太陽電池の周縁に樹脂成形材等からなる側縁キャップを一体化し、その周縁を支持材などのフレーム材を用いて取り囲むようにしたものでもよい。
前記太陽電池としては、多結晶,単結晶,アモルファス等、どのようなものを用いてもよい。一般的に太陽電池は、導電性基体、裏面反射層、光電変換部材としての半導体層、透明導電層から構成され、上記導電性基体としては、例えば鋼板、銅、チタン、アルミニウム、ステンレス、カーボンシートを用いることができ、その他にも導電層が設けられたポリエステル、ポリイミド、ポリエチレンナフタライド、エポキシ等の樹脂フィルムやセラミックス等を用いることもできる。前記半導体層は特に限定するものではなく、アモルファスシリコン半導体、多結晶シリコン半導体、結晶シリコン半導体、銅インジウムセレナイド等の化合物半導体を用いることができる。例えば近年提案された可撓性を有するアモルファスシリコン太陽電池は極めて薄肉で軽量であるため好ましい。
The solar energy conversion module (hereinafter referred to as a solar cell) integrated exterior structure is not limited in any way. For example, solar cells are integrated in a laminated manner on a face plate portion of a known metal vertical casing. As shown in the illustrated embodiment to be described later, a side edge cap made of a resin molding material or the like is integrated with the periphery of the solar cell that is long in the flow direction, and the periphery is surrounded by a frame material such as a support material. It may be the one.
As the solar cell, any one such as polycrystalline, single crystal, amorphous, etc. may be used. Generally, a solar cell is composed of a conductive substrate, a back surface reflection layer, a semiconductor layer as a photoelectric conversion member, and a transparent conductive layer. Examples of the conductive substrate include steel plates, copper, titanium, aluminum, stainless steel, and carbon sheets. In addition, a resin film such as polyester, polyimide, polyethylene naphthalide, and epoxy provided with a conductive layer, ceramics, and the like can also be used. The semiconductor layer is not particularly limited, and a compound semiconductor such as an amorphous silicon semiconductor, a polycrystalline silicon semiconductor, a crystalline silicon semiconductor, or copper indium selenide can be used. For example, recently proposed amorphous silicon solar cells having flexibility are preferable because they are extremely thin and lightweight.

このように本発明の排水構造は、排水部の水下端部又は該排水部と接続した排水用接続部材の水下端部を、水下側に隣接する外装構造の最水上側に位置する外装材上に沿わせるので、排水部を流下する雨水等を確実に水下側に隣接する外装構造に導くことができ、その取り合い部分が特殊な構造になることなく納めることができる。   As described above, the drainage structure of the present invention is an exterior material that is located on the uppermost water side of the exterior structure adjacent to the lower water side, or the lower water end of the drainage connecting member connected to the drainage part. Since it is along the top, it is possible to reliably guide rainwater or the like flowing down the drainage portion to the exterior structure adjacent to the underwater side, and the fitting portion can be stored without a special structure.

図1に示す排水構造は、流れ方向に連続する排水部材7Aの裏面側に受座部材5Aを配して空間Oを確保し、該空間Oに、水下側に隣接する外装構造の最水上側に位置する外装材(パネル9)を容易に位置させることができ、雨水を排水部材7Aの排水部71Aから、パネル9の表面に導いて流下させることができる。   In the drainage structure shown in FIG. 1, a receiving member 5A is arranged on the back surface side of the drainage member 7A continuous in the flow direction to secure a space O, and the outermost structure of the exterior structure adjacent to the underwater side is placed in the space O. The exterior material (panel 9) located on the side can be easily positioned, and rainwater can be led from the drainage part 71A of the drainage member 7A to the surface of the panel 9 to flow down.

まず、この外装構造を形成する太陽エネルギー変換モジュール(以下、太陽電池という)を備えるパネル材は、太陽電池10の端縁に、略コ字状のキャップが取り付けられている。   First, a panel material provided with a solar energy conversion module (hereinafter referred to as a solar cell) that forms this exterior structure has a substantially U-shaped cap attached to the edge of the solar cell 10.

前記パネル材1A,1Aの流れ方向の端縁間に配される横支持材3Aは、左右方向に沿う浅樋状の流水部31A,31Aを備え、該流水部31Aの底面から隆起する隆起部の上方にパネル材1A,1Aの流れ方向の側縁が嵌合する嵌合溝が設けられ、水上側の流水部31Aには固定具311が打ち込まれて固定部を兼ねており、水下側の流水部31Aにはパネル材1Aの底面を支持する弾性材33が配設されている。
この横支持材3Aは、パネル材1Aの左右方向の寸法と略等しい定尺材であり、略左右対称のフレーム材であって、例えばアルミ押出型材などからなる。
A lateral support member 3A disposed between edges in the flow direction of the panel members 1A, 1A includes shallow water-flowing portions 31A, 31A extending in the left-right direction, and a raised portion that protrudes from the bottom surface of the flowing water portion 31A. A fitting groove for fitting the side edges in the flow direction of the panel materials 1A, 1A is provided above the upper side of the water, and a fixing tool 311 is driven into the flowing water portion 31A on the water side to serve as a fixing portion. An elastic material 33 that supports the bottom surface of the panel material 1A is disposed in the flowing water portion 31A.
This lateral support material 3A is a fixed-length material that is substantially equal to the dimension in the left-right direction of the panel material 1A, is a substantially left-right symmetric frame material, and is made of, for example, an aluminum extrusion mold material.

前記パネル材1A,1Aの左右方向の端縁間に配される縦支持材8Aは、通し材でもピース材でもよく、略中央に略U字状の連結部81を備え、該連結部81の底面から立ち上がる起立部の上方にパネル材1A,1Aの左右の側縁を支持するパネル支持部82,82が設けられ、該パネル支持部82,82の外側下方に前記横支持材3A,3Aを支持する連結支持部83,83(図中831は固定具)がフランジ状に設けられ、さらに前記起立部に左右一対の楔状の連結部が設けられ、後述するカバー材6Aが弾性嵌合により取り付けられる構成である。   The vertical support member 8A disposed between the left and right edges of the panel members 1A, 1A may be a threading member or a piece member, and includes a substantially U-shaped connecting portion 81 at a substantially center. Panel support portions 82 and 82 for supporting the left and right side edges of the panel materials 1A and 1A are provided above the standing portions that rise from the bottom surface, and the lateral support materials 3A and 3A are disposed below the panel support portions 82 and 82, respectively. Connection support portions 83 and 83 (831 in the figure are fixtures) to be supported are provided in a flange shape, and a pair of left and right wedge-shaped connection portions are provided on the standing portion, and a cover member 6A described later is attached by elastic fitting. It is the structure which is made.

この実施例に用いられる排水部材7Aは、流れ方向に連続する通し材であり、排水部Aの底面の略中央に上方に隆起する隆起部72が設けられ、該隆起部72の頂部の上面側に縦支持部材8Aを、下面側に受座部材5Aを配して固定具85にて一連に固定している。   The drainage member 7 </ b> A used in this embodiment is a threading material that is continuous in the flow direction, and is provided with a raised portion 72 that rises upward substantially at the center of the bottom surface of the drainage portion A, and the upper surface side of the top of the raised portion 72. The vertical support member 8A and the receiving member 5A on the lower surface side are fixed in series with a fixture 85.

前記排水部材7Aの裏面側に配される受座部材5Aは、断面略角山形のピース材であり、排水部材7Aを支持する座台状の支持部の左右に下地4への固定部(図中51は固定具)が設けられ、前記支持部の略中央に前記排水部材7Aの隆起部72の裏面側に嵌る隆状支持部が設けられている。   The receiving member 5A arranged on the back surface side of the drainage member 7A is a piece material having a substantially square mountain cross section, and fixed portions to the base 4 on the left and right sides of the pedestal-shaped support portion that supports the drainage member 7A (see FIG. The middle 51 is provided with a fixture), and a ridge-shaped support portion that fits on the back surface side of the bulge portion 72 of the drainage member 7A is provided in the approximate center of the support portion.

前記カバー材6Aは、流れ方向に連続する通し材であって、略左右対称のフレーム材であり、略中央に設けた垂下片を前記縦支持材8Aに設けた連結部と弾性嵌合して固定している。また、このカバー材6Aと太陽電池10の端縁の略コ字状のキャップ11との間には、シール材を充填して雨水の浸入を阻止するようにしている。   The cover member 6A is a through member that is continuous in the flow direction and is a substantially symmetric frame member. The cover member 6A is elastically fitted to a connecting portion provided in the vertical support member 8A. It is fixed. Further, a sealing material is filled between the cover material 6A and the substantially U-shaped cap 11 at the edge of the solar cell 10 to prevent rainwater from entering.

これらの各部材から構成される外装構造の水下側には、太陽エネルギー変換モジュールを備えない外装構造(以下、一般構造という)が隣接している。なお、図1(b)の右方側に位置する一般構造では、縦支持材8Aの右側の構成をその取付けに利用しているため、左側では連結支持部83として作用した部位が桁端金具9bの固定箇所として利用されているので、図面に符号86(固定具861)を付して区別した。   An exterior structure (hereinafter referred to as a general structure) that does not include a solar energy conversion module is adjacent to the water side of the exterior structure constituted by these members. In the general structure located on the right side of FIG. 1 (b), the structure on the right side of the vertical support member 8A is used for the attachment, so that the portion that acts as the connection support portion 83 on the left side is the girder metal fitting. Since it is used as a fixing portion of 9b, the drawing is identified by reference numeral 86 (fixing tool 861).

前記一般構造は、図1(b)の右方側に示すように、下地4上に捨板9aが敷かれた上にパネル9が載置され、縦支持材8Aの連結支持部86に桁端金具9bを取付け、該桁端金具9b及びパネル9の端部表面を覆うように覆い材9cを取り付けてビス等の固定具にて止め付けて雨水の浸入を防止する構造である。
このように左右方向に隣接する本発明における外装構造と前記一般構造とは、縦支持材8Aを介して容易に接続することができる。
In the general structure, as shown on the right side of FIG. 1B, a panel 9 is placed on a base plate 4 on which a discard plate 9a is laid, and a girder is placed on a connecting support portion 86 of a vertical support member 8A. An end fitting 9b is attached, and a cover member 9c is attached so as to cover the end face of the girder end fitting 9b and the panel 9 and is fastened with a fixing tool such as a screw to prevent intrusion of rainwater.
Thus, the exterior structure in the present invention adjacent to the left and right direction and the general structure can be easily connected via the vertical support member 8A.

また、前記流れ方向に隣接する本発明における外装構造と前記一般構造とは、図1(a)に示すように横支持材3Aを介して容易に接続できる。
すなわち、前述のように排水部材7Aの裏面側には、最上段のパネル9を配設するための空間が形成されているので、なお、パネル9同士の配設は、敷設手順を限定するものではないが、下段のパネル9の表面に、上端のパネル9の水下側の端部が載置されるように配設すればよい。
そして、横支持材3Aの水下側の流水部31Aに軒先金具9dをビス等の固定具で取付け、該軒先金具9d及びパネル9の端部表面に沿うように覆い材9eを取り付けて雨水の浸入を防止する。
また、図示実施例では、野地材からなる屋根下地4上にその表面を覆うように防水シート41が隙間なく敷設されている。
Moreover, the exterior structure in the present invention adjacent to the flow direction and the general structure can be easily connected via a lateral support member 3A as shown in FIG.
That is, as described above, since the space for disposing the uppermost panel 9 is formed on the back side of the drainage member 7A, the disposition of the panels 9 limits the laying procedure. However, what is necessary is just to arrange | position so that the edge part of the lower side of the panel 9 of an upper end may be mounted in the surface of the panel 9 of the lower stage.
Then, the eaves fitting 9d is attached to the flowing water portion 31A on the underwater side of the horizontal support member 3A with a fixing tool such as a screw, and the covering member 9e is attached so as to extend along the surface of the end of the eaves fitting 9d and the panel 9. Prevent intrusion.
In the illustrated embodiment, a waterproof sheet 41 is laid on the roof base 4 made of a field material so as to cover the surface thereof without any gaps.

そして、これらの各部材からなる図1の排水構造は、排水部材7Aの排水部71Aが受座部材5Aにより下地面4より高く位置させているので、この下地面4と排水部71Aとの間の空間Oに最水上側に位置するパネル9を容易に位置させることができる。すなわち排水部71Aの水下端部を、水下側に隣接する水上側に位置するパネル9上に沿わせるので、排水部71Aを流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。   In the drainage structure of FIG. 1 made up of these members, the drainage part 71A of the drainage member 7A is positioned higher than the foundation surface 4 by the receiving member 5A, so that the gap between the foundation surface 4 and the drainage part 71A is as follows. The panel 9 positioned on the uppermost water side can be easily positioned in the space O. That is, since the lower end portion of the water drainage portion 71A is placed on the panel 9 located on the water upper side adjacent to the underwater side, rainwater flowing down the water drainage portion 71A is reliably guided to the exterior structure adjacent to the underwater side. be able to.

また、前記空間Oは、図示しないケーブルを通すための空間としても利用でき、左右方向に隣接するパネル材1A,1Aの太陽電池10のケーブルを容易に接続することができる。   The space O can also be used as a space for passing a cable (not shown), and the cables of the solar cells 10 of the panel materials 1A and 1A adjacent in the left-right direction can be easily connected.

図2に示す排水構造では、排水部材を用いずに、流れ方向に連続する排水部87Bを、前記パネル材1B,1Bの左右方向の端縁を嵌め付けられるフレーム材を兼ねる縦支持材8Bに設けた例である。そのため、前記図1の実施例と同様に、排水部87Bは下地面4より高く位置しており、下地面4と排水部87Bとの間の空間Oには、最水上側に位置するパネル9を容易に位置させることができる。   In the drainage structure shown in FIG. 2, the drainage member 87B continuous in the flow direction without using the drainage member is used as a vertical support member 8B that also serves as a frame member to which the left and right edges of the panel members 1B and 1B are fitted. This is an example. Therefore, as in the embodiment of FIG. 1, the drainage portion 87B is positioned higher than the base surface 4, and the panel 9 located on the uppermost water side is located in the space O between the base surface 4 and the drainage portion 87B. Can be easily positioned.

そして、パネル材1B,1Bの左右方向の接続は、流れ方向に連続する縦支持材8Bに対して左右から突き合わせるように接続するため、一面状にパネル材1B,1Bが接続されている。
また、パネル材1B,1Bの流れ方向の接続は、水上方向が開放する上方溝部32と水下方向が開放する下方溝部34とを備える横支持材3Bを用いて接続され、その水上側にのみ設けられる流水部31Bは、前記縦支持材8Bの排水部87Bに連絡されている。
そして、逆ハット状の垂木である受座部材5Bにより、前記横支持材3Bを下地面4より高い位置に保持し、間接的に前記縦支持材8Bに設けられる排水部87Bを下地面4より高い位置に保持している。なお、52は、前記受座部材5Bを下地4上に固定する固定具、53は、前記横支持材3Bを固定する固定具である。
And since the connection of the panel materials 1B and 1B in the left-right direction is connected so as to abut against the vertical support material 8B continuous in the flow direction from the left and right, the panel materials 1B and 1B are connected to one surface.
Moreover, the connection of the flow direction of panel material 1B, 1B is connected using the horizontal support material 3B provided with the upper groove part 32 which the water direction opens, and the lower groove part 34 which the water direction opens, and it is only on the water upper side. The flowing water part 31B provided is connected to the drainage part 87B of the vertical support member 8B.
And by the receiving member 5B which is a reverse hat-shaped rafter, the horizontal support member 3B is held at a position higher than the base surface 4, and the drainage part 87B provided on the vertical support member 8B indirectly is provided from the base surface 4. Hold in a high position. In addition, 52 is a fixture for fixing the seat member 5B on the base 4, and 53 is a fixture for fixing the lateral support member 3B.

なお、図示実施例では、パネル材1Bの端縁を前記上方溝部32や前記下方溝部34に嵌め付ける際にパッキン材を介して取り付けた。
また、図2(b)の右方側に位置する一般構造では、下地4上に捨板9hが敷かれた上にパネル9が載置され、縦支持材8Bに桁端金具9iを取付け、該桁端金具9i及びパネル9の端部表面を覆うように覆い材9jを取り付けてビス等の固定具にて止め付けて雨水の浸入を防止する構造である。
また、図示実施例では、野地材からなる屋根下地4上に流れ方向に沿う縦桟材(垂木)5Aが所定間隔にて固定され、この縦桟材5Aを含めて屋根下地4の表面を覆うように防水シート41が隙間なく敷設されている。
In the illustrated embodiment, the edge of the panel material 1B is attached via a packing material when the edge of the panel material 1B is fitted into the upper groove 32 or the lower groove 34.
Moreover, in the general structure located in the right side of FIG.2 (b), the panel 9 is mounted on the base plate 4 on which the discard board 9h was spread, the girder metal fitting 9i is attached to the vertical support material 8B, A cover member 9j is attached so as to cover the end portions of the girder end fitting 9i and the panel 9, and is fastened with a fixing tool such as a screw to prevent intrusion of rainwater.
Further, in the illustrated embodiment, vertical beam members (rafters) 5A along the flow direction are fixed on the roof substrate 4 made of field material at predetermined intervals, and the surface of the roof substrate 4 is covered including the vertical beam members 5A. Thus, the waterproof sheet 41 is laid without a gap.

また、図2(a)の左方側(水下側)に隣接する一般構造とは、前述のように下地面4と排水部87Bとの間の空間Oに、最水上側のパネル9が配設されて位置し、防水シート41を流れる雨水をパネル9上に導くことができ、この一般構造の屋根面に沿って水下側へ流下させることができる。
なお、図示実施例では、横支持材3Bの水下側に軒先金具9fをビス等の固定具で取付け、該軒先金具9f及びパネル9の端部表面に沿うように覆い材9gを取り付けて雨水の浸入を防止している。
Also, the general structure adjacent to the left side (under water) in FIG. 2A is that the uppermost panel 9 is in the space O between the base surface 4 and the drainage part 87B as described above. The rainwater flowing through the waterproof sheet 41 can be guided onto the panel 9 and can flow down along the roof surface of this general structure.
In the illustrated embodiment, the eaves fitting 9f is attached to the underwater side of the horizontal support member 3B with a fixing tool such as a screw, and the covering material 9g is attached along the eaves fitting 9f and the end surface of the panel 9 so that rainwater Preventing the intrusion of

そして、これらの各部材からなる図2の排水構造は、縦支持材8Bの排水部87Bが垂木である受座部材5Bにより下地面4より高く位置させているので、この下地面4と排水部87Bとの間の空間Oに最水上側に位置するパネル9を容易に配設して位置させることができる。すなわち排水部87Bの水下端部を、水下側に隣接する水上側に位置するパネル9上に沿わせるので、排水部87Bを流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。
また、前記空間Oは、図示しないケーブルを通すための空間としても利用でき、左右方向に隣接するパネル材1B,1Bの太陽電池10のケーブルを容易に接続することができる。
In the drainage structure of FIG. 2 composed of these members, the drainage portion 87B of the vertical support member 8B is positioned higher than the base surface 4 by the receiving member 5B which is a rafter. The panel 9 located on the uppermost water side can be easily disposed and positioned in the space O between the two and 87B. That is, since the lower end portion of the drainage portion 87B is placed on the panel 9 located on the water side adjacent to the underwater side, the rain water flowing down the drainage portion 87B is reliably guided to the exterior structure adjacent to the underwater side. be able to.
The space O can also be used as a space for passing a cable (not shown), and the cables of the solar cells 10 of the panel materials 1B and 1B adjacent in the left-right direction can be easily connected.

図3に示す排水構造では、排水部42が下地4表面に敷設された防水シート41により形成される例であって、防水シート41の水下側の端縁を持ち上げて最水上側に位置するパネル9上に沿わせることにより、雨水を防水シート41からパネル9の表面に導いて流下させることができる。
この図示実施例では、野地材からなる屋根下地4上に流れ方向に沿う縦桟材(垂木)5Cが所定間隔にて固定され、この縦桟材2を含めて屋根下地4の表面を覆うように防水シート41が隙間なく敷設されているので、排水部42は、縦桟材5C,5C間の防水シート41上に形成される。
In the drainage structure shown in FIG. 3, the drainage portion 42 is an example formed by the waterproof sheet 41 laid on the surface of the base 4, and the edge of the waterproof sheet 41 on the lower side is lifted and positioned on the uppermost water side. By being along the panel 9, rainwater can be led from the waterproof sheet 41 to the surface of the panel 9 to flow down.
In the illustrated embodiment, vertical beam members (rafters) 5C along the flow direction are fixed at predetermined intervals on a roof substrate 4 made of a field material, and the surface of the roof substrate 4 including the vertical beam members 2 is covered. Since the waterproof sheet 41 is laid without any gaps, the drainage part 42 is formed on the waterproof sheet 41 between the vertical bars 5C and 5C.

また、図示実施例における太陽電池10を一体的に備えるパネル材1Cは、太陽電池10の端縁に略コ字状のシール材が取り付けられる構成である。
このパネル材1Cの左右方向の接続は、図3(c)に示すように略H型のジョイント材13に対して左右から突き合わせるように接続するため、一面状にパネル材1C,1Cが接続されている。
また、前記図2の実施例において用いた横支持材3Bとほぼ同様の構成を有する横支持材3Cにて接続し、前記上方溝部32に水上側のパネル材1Cの水下側の端部を嵌め込み、前記下方溝部34に水下側のパネル材1C水上側の端部を嵌め込むため、段状にパネル材1C,1Cが接続されている。
前記ジョイント材13や横支持材3Cは、例えばアルミの押出成形品でもよいし、FRP等の合成樹脂の成形品でもよく、特にその材質等を限定するものではない。
Further, the panel material 1 </ b> C integrally including the solar cell 10 in the illustrated embodiment has a configuration in which a substantially U-shaped sealing material is attached to the edge of the solar cell 10.
As shown in FIG. 3 (c), the panel material 1C is connected so as to abut on the substantially H-shaped joint material 13 from the left and right, so that the panel materials 1C and 1C are connected in a single plane. Has been.
2 is connected by a lateral support member 3C having substantially the same configuration as that of the lateral support member 3B used in the embodiment of FIG. 2, and the lower end portion of the upper panel member 1C is connected to the upper groove portion 32. The panel members 1C and 1C are connected in a stepped manner in order to fit the end portion of the water-side panel member 1C water side into the lower groove 34.
The joint material 13 and the lateral support material 3C may be, for example, an aluminum extrusion-molded product or a synthetic resin molded product such as FRP, and the material thereof is not particularly limited.

さらに、図示実施例では、前記縦桟材5C上に、前記構成のパネル材1Cを支持させるが、厳密にはパネル材1Cの流れ方向の端縁に取り付けられた前記横支持材3Cを縦桟材5Cの上面に載置して固定具35を打ち付けて固定しており、太陽電池10自体が縦桟材5Cと接触して摩擦等により損傷を受けるようなことはない。   Furthermore, in the illustrated embodiment, the panel material 1C having the above-described configuration is supported on the vertical beam member 5C. Strictly speaking, the horizontal support member 3C attached to the edge of the panel material 1C in the flow direction is used as the vertical beam. It is placed on the upper surface of the material 5C and fixed by hitting the fixture 35, so that the solar cell 10 itself does not come into contact with the vertical beam material 5C and is not damaged by friction or the like.

また、図3(b)の右方側に位置する一般構造は、下地4上に捨板9kが敷かれた上に平板状のパネル9が載置され、前記横支持材3Cの底面及び側面に沿う桁端金具9lを取付け、該桁端金具9l及びパネル9の端部表面を覆うように覆い材9mを取り付けて雨水の浸入を防止する構造である。なお、図中、9nは覆い材9mを桁端金具9lに固定するための面戸である。   Further, in the general structure located on the right side of FIG. 3B, a flat panel 9 is placed on a base plate 4 on which a discard plate 9k is laid, and the bottom and side surfaces of the lateral support member 3C. Is attached, and a covering member 9m is attached so as to cover the end surfaces of the end piece of the end piece 9l and the panel 9, thereby preventing rainwater from entering. In the figure, 9n is a face door for fixing the covering material 9m to the girder metal fitting 9l.

また、図3(a)の左方側(水下側)に隣接する一般構造とは、前記屋根下地4の表面を覆う防水シート41の水下側の端縁を持ち上げて、一般構造部分では最も水上側に位置するパネル9上に沿わせることにより、防水シート41を流れる雨水を一般構造におけるパネル9上に導くことができ、この一般構造の屋根面に沿って水下側へ流下させることができる。
なお、図示実施例では、横支持材3Cの裏面側に覆い材9oを取付け、該覆い材9oが一般構造部分では最も水上側に位置するパネル9上に沿うように取り付けて雨水の浸入を防止している。
Further, the general structure adjacent to the left side (underwater side) of FIG. 3A is that the edge of the underwater side of the waterproof sheet 41 covering the surface of the roof base 4 is lifted up, The rain water flowing through the waterproof sheet 41 can be guided onto the panel 9 in the general structure by being along the panel 9 positioned on the uppermost water side, and flow down to the lower side along the roof surface of the general structure. Can do.
In the illustrated embodiment, a covering member 9o is attached to the back side of the lateral support member 3C, and the covering member 9o is attached along the panel 9 positioned on the uppermost water side in the general structure portion to prevent intrusion of rainwater. doing.

そして、これらの各部材からなる図3の排水構造は、防水シート41にて形成される排水部42が形成され、この防水シート41の水下側の端縁を持ち上げて最水上側に位置するパネル9を容易に位置させることができる。すなわち排水部42の水下端部を、水下側に隣接する水上側に位置するパネル9上に沿わせるので、排水部42を流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。   And the drainage structure of FIG. 3 which consists of each of these members is formed with a drainage part 42 formed by the waterproof sheet 41, and the edge of the waterproof sheet 41 on the lower side is lifted and positioned on the uppermost water side. The panel 9 can be easily positioned. That is, since the lower end portion of the drainage portion 42 is placed on the panel 9 located on the water side adjacent to the underwater side, rainwater flowing down the drainage portion 42 is reliably guided to the exterior structure adjacent to the underwater side. be able to.

図4に示す排水構造では、前記図2の実施例と、前記図3の実施例との排水特性を併せ備えるものであり、前記図2の実施例と同様に、流れ方向に連続する排水部87Dを、パネル材1D,1Dの左右方向の端縁を嵌め付けるフレーム材を兼ねる縦支持材8Dに設けた例であり、しかも前記図3の実施例と同様に、下地4表面に敷設された防水シート41により排水部が形成される例でもあり、二重の排水(防水)特性を備えるものである。
なお、この図4の排水構造は、前記のように図2と図3の排水特性を併せ持つので、使用される各部材についてもほぼ同様の構成であるから、図面に同一符号を付して説明を省略する。
The drainage structure shown in FIG. 4 has the drainage characteristics of the embodiment of FIG. 2 and the embodiment of FIG. 3 together, and, like the embodiment of FIG. 87D is an example provided on the vertical support member 8D which also serves as a frame member for fitting the edge of the panel member 1D, 1D in the left-right direction, and is laid on the surface of the base 4 as in the embodiment of FIG. It is also an example in which a drainage portion is formed by the waterproof sheet 41, and has a double drainage (waterproof) characteristic.
Since the drainage structure of FIG. 4 has the drainage characteristics of FIG. 2 and FIG. 3 as described above, each member used has almost the same configuration. Is omitted.

図示実施例におけるパネル材1D,1Dの左右方向の接続は、前記図1の実施例と同様に縦支持材8Dを用いて接続され、パネル材1D,1D間に跨るように逆ハット字状のカバー材6Dを固着具61で縦支持材8Dに固定している。
また、パネル材1D,1Dの流れ方向の接続は、前記図2の実施例と同様に水上方向が開放する上方溝部32と水下方向が開放する下方溝部34とを備える横支持材3Dを用いて接続されている。
In the illustrated embodiment, the panel members 1D and 1D are connected in the left-right direction using the vertical support member 8D in the same manner as in the embodiment of FIG. 1, and are formed in an inverted hat shape so as to straddle between the panel members 1D and 1D. The cover material 6D is fixed to the vertical support material 8D by the fixing tool 61.
Further, the connection in the flow direction of the panel materials 1D and 1D uses a lateral support member 3D having an upper groove portion 32 that opens in the water direction and a lower groove portion 34 that opens in the water direction as in the embodiment of FIG. Connected.

そして、図4(a)の左方側(水下側)に位置する一般構造は、前述のように下地面4と排水部87Dとの間の空間Oに、最水上側のパネル9が配設されて位置し、防水シート41を流れる雨水をパネル9上に導くことができ、この一般構造の屋根面に沿って水下側へ流下させることができる。また、横支持材3Dの裏面側にパネル9の端部表面に沿うように覆い材9rを取り付けて雨水の浸入を防止している。
また、図4(b)の右方側に位置する一般構造では、下地4上に捨板9pが敷かれた上にパネル9が載置され、縦支持材8Dのパネル支持部82及びパネル9の端部表面を覆うように覆い材9qを取り付けてビス等の固定具にて止め付けて雨水の浸入を防止する構造である。
In the general structure located on the left side (under water) in FIG. 4A, the uppermost panel 9 is arranged in the space O between the base surface 4 and the drainage part 87D as described above. The rainwater flowing through the waterproof sheet 41 can be guided onto the panel 9 and can flow down along the roof surface of this general structure. Further, a covering material 9r is attached to the back surface side of the lateral support material 3D so as to be along the surface of the end portion of the panel 9, thereby preventing rainwater from entering.
Moreover, in the general structure located in the right side of FIG.4 (b), the panel 9 is mounted on the base plate 4 on the discard board 9p, and the panel support part 82 of the vertical support material 8D and the panel 9 are mounted. A covering material 9q is attached so as to cover the surface of the end of the steel plate and is fastened with a fixing tool such as a screw to prevent rainwater from entering.

この図4の排水構造は、前記図2の実施例と同様に縦支持材8Dの排水部87Dが垂木である受座部材5Dにより下地面4より高く位置させているので、この下地面4と排水部87Dとの間の空間Oに最水上側に位置するパネル9を容易に位置させることができる。すなわち排水部87Dの水下端部を、水下側に隣接する水上側に位置するパネル9上に沿わせるので、排水部87Dを流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。
また、前記空間Oは、図示しないケーブルを通すための空間としても利用でき、左右方向に隣接するパネル材1D,1Dの太陽電池10のケーブルを容易に接続することができる。
In the drainage structure of FIG. 4, the drainage portion 87D of the vertical support member 8D is positioned higher than the base surface 4 by the receiving member 5D which is a rafter, as in the embodiment of FIG. The panel 9 located on the uppermost water side can be easily positioned in the space O between the drainage part 87D. That is, since the lower end portion of the drainage portion 87D is placed on the panel 9 located on the upper water side adjacent to the underwater side, rainwater flowing down the drainage portion 87D is reliably guided to the exterior structure adjacent to the underwater side. be able to.
The space O can also be used as a space for passing a cable (not shown), and the cables of the solar cells 10 of the panel materials 1D and 1D adjacent in the left-right direction can be easily connected.

さらに、図4の排水構造は、前記図3の実施例と同様に、防水シート41にて形成される排水部が形成され、この防水シート41の水下側の端縁を持ち上げて最水上側に位置するパネル9を容易に位置させることができる。すなわち防水シート41上を流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。   Further, the drainage structure of FIG. 4 is formed with a drainage portion formed by the waterproof sheet 41 as in the embodiment of FIG. 3, and the lower edge of the waterproof sheet 41 is lifted to the uppermost water side. The panel 9 positioned at can be easily positioned. That is, rainwater or the like flowing down on the waterproof sheet 41 can be surely guided to the exterior structure adjacent to the underwater side.

図5に示す排水構造では、排水部材(7E)を用いる点では前記図1の実施例と共通するが、前記図1の実施例のように下地面4より高く位置させたものではないので、下地面4と排水部71Eとの間の空間Oも形成されていない(空間Oを形成していない点では、前記図3の実施例と共通する)。   The drainage structure shown in FIG. 5 is common to the embodiment of FIG. 1 in that the drainage member (7E) is used, but it is not positioned higher than the base surface 4 as in the embodiment of FIG. The space O between the lower ground 4 and the drainage part 71E is not formed (the point that the space O is not formed is common to the embodiment of FIG. 3).

図示実施例におけるパネル材1E,1Eの流れ方向の接続は、前記図2〜4の実施例において用いた横支持材3B〜3Dとほぼ同様の構成を有する横支持材3Eを用いて接続されるが、この横支持材3Eは、複数部材を組み合わせてなる構成であり、脚部36,36を有するため、流水部31Eが下地4から高く位置し、その端縁は前記排水部材7Eの排水部71Eに連絡されている。図中37は、脚部36の下端に設けた固定部を下地4上に固定する固定具である。   The panel members 1E and 1E in the illustrated embodiment are connected in the flow direction using a lateral support member 3E having substantially the same configuration as the lateral support members 3B to 3D used in the embodiments of FIGS. However, since the lateral support member 3E is configured by combining a plurality of members and has the leg portions 36, 36, the flowing water portion 31E is positioned higher than the base 4, and its edge is the drainage portion of the drainage member 7E. 71E is contacted. In the figure, reference numeral 37 denotes a fixing tool for fixing a fixing portion provided at the lower end of the leg portion 36 on the base 4.

また、図示実施例におけるパネル材1E,1Eの左右方向の接続は、図5(c)に示すように裏面側に継手捨て板14を、表面側に継手カバー15を配して接続する構成であって、前記横支持材3E,3E間には、排水部材7Eが配設される構成である。   Moreover, the connection of the panel materials 1E and 1E in the illustrated embodiment in the left-right direction is configured by connecting the joint discard plate 14 on the back surface side and the joint cover 15 on the front surface side as shown in FIG. 5C. In addition, a drainage member 7E is disposed between the lateral support members 3E and 3E.

そして、図5(a)の左方側(水下側)に位置する一般構造は、前記排水部材7Eの裏面側に配設された排水用接続部材(捨て板)9vが、最水上側のパネル9上に沿うように配設され、排水部71Eを流れる雨水をパネル9上に導くことができ、この一般構造の屋根面に沿って水下側へ流下させることができる。なお、横支持材3Eの水下側から延在してパネル9の端部表面に沿うように覆い材9wを取り付けて雨水の浸入を防止している。なお、図中、9xは、排水用接続部材9v上に取り付けられて、覆い材9wを裏面から支持する支持材である。
また、図5(b)の右方側に位置する一般構造では、桁端用排水部材7E'の側面、下段の支持材9u表面、及び下地4を覆うように捨板9sが配設された上にパネル9が載置され、パネル1Eの側端、上段の支持材9uの表面、及びパネル9の端部表面を覆うように覆い材9tを取り付けてビス等の固定具にて止め付けて雨水の浸入を防止する構造である。
And the general structure located in the left side (underwater) of Fig.5 (a) is the drainage connecting member (discard board) 9v arrange | positioned in the back surface side of the said drainage member 7E, and the most water upper side. Rainwater that is arranged along the panel 9 and flows through the drainage portion 71E can be guided onto the panel 9, and can flow down to the water side along the roof surface of this general structure. In addition, the covering material 9w is attached so as to extend from the underwater side of the lateral support material 3E and extend along the end surface of the panel 9, thereby preventing rainwater from entering. In the figure, reference numeral 9x denotes a support member that is attached on the drainage connection member 9v and supports the covering member 9w from the back surface.
Further, in the general structure located on the right side in FIG. 5B, a discard plate 9s is disposed so as to cover the side surface of the girder drainage member 7E ′, the lower support material 9u surface, and the base 4. The panel 9 is placed on the top, and a covering material 9t is attached so as to cover the side edge of the panel 1E, the surface of the upper support member 9u, and the end surface of the panel 9, and fixed with a fixing tool such as a screw This structure prevents rainwater from entering.

これらの構成を有する図5の排水構造は、排水部材7Eの排水部71Eから排水用接続部材9vが雨水を最水上側に位置するパネル9上に導く役割を果たすため、排水部71Eを流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。   In the drainage structure of FIG. 5 having these configurations, the drainage connection member 9v plays a role of guiding rainwater onto the panel 9 located on the uppermost water side from the drainage portion 71E of the drainage member 7E, and thus flows down the drainage portion 71E. Rainwater or the like can be reliably guided to the exterior structure adjacent to the underwater side.

図6に示す排水構造では、前記図4の実施例と同様に、下地面4より高く位置させた排水部87Fを縦支持材87Fに設け、しかも下地4表面に敷設された防水シート41により排水部が形成される例でもあり、二重の排水(防水)特性を備える。
前記図4の実施例では受座部材5Dを用いていたが、この図6の実施例では、縦支持材87Fに脚部88を設けることにより、排水部87Fを下地面4より高く位置させた。なお、脚部88の左右の下端から外方へ延在する固定部89が下地面4上に沿い、固定具891にて固定されている。そして、空間Oを形成するために、この脚部88の水下側を切り欠いている。
In the drainage structure shown in FIG. 6, the drainage portion 87F positioned higher than the base surface 4 is provided on the vertical support member 87F and drained by the waterproof sheet 41 laid on the surface of the base 4 as in the embodiment of FIG. It is also an example in which the part is formed, and has a double drainage (waterproof) characteristic.
In the embodiment of FIG. 4, the seat member 5D is used. However, in the embodiment of FIG. 6, the drainage portion 87F is positioned higher than the base surface 4 by providing the legs 88 on the vertical support member 87F. . A fixing portion 89 extending outward from the left and right lower ends of the leg portion 88 extends along the base surface 4 and is fixed by a fixing tool 891. And in order to form the space O, the underwater side of this leg part 88 is notched.

図示実施例におけるパネル材1F,1Fの左右方向の接続は、前記図4の実施例と同様に縦支持材8Fを用いて接続され、パネル材1F,1F間に跨るように平板状のカバー材6Fを固着具61で縦支持材8Fに固定している。
また、パネル材1F,1Fの流れ方向の接続は、流水部31Fから立ち上がる縦片381及びその高さの途中に流れ方向を向く横片382,382を備える横支持材3Fを用いて接続される。そして、パネル1F,1Fの水下端及び水上端を、前記横片382,382に支持させ、前記縦片381に突き合わせるように配すると共に、シリコーンゴムなどの弾性止水材39を配して接続している。
The panel members 1F and 1F in the illustrated embodiment are connected in the horizontal direction using the vertical support member 8F in the same manner as in the embodiment of FIG. 4, and a flat cover material straddling between the panel members 1F and 1F. 6F is fixed to the vertical support member 8F by the fixing tool 61.
Moreover, the connection of the flow direction of panel material 1F and 1F is connected using the horizontal support material 3F provided with the vertical piece 381 which stands | starts up from the flowing water part 31F, and the horizontal piece 382 and 382 which face the flow direction in the middle of the height. . And the water lower end and water upper end of the panels 1F and 1F are supported by the horizontal pieces 382 and 382 and arranged to abut against the vertical piece 381, and an elastic water stop material 39 such as silicone rubber is arranged. Connected.

そして、図6(a)の左方側(水下側)に位置する一般構造は、前述のように下地面4と排水部87Fとの間の空間Oに、最水上側のパネル9が配設されて位置し、防水シート41を流れる雨水をパネル9上に導くことができ、この一般構造の屋根面に沿って水下側へ流下させることができる。また、縦支持材8Fの水下端に略L字状の軒先金具9yを取り付け、更にこの軒先金具9yに係止状に、水下端縁がパネル9の端部表面に沿うように覆い材9zを取り付けて雨水の浸入を防止している。なお、この覆い材9zには、下方が開放する換気口91が形成され、この換気口91から吹き上げ風が、破線の大矢印で示すようにパネル材1Fの裏面側空間に侵入する。
また、図6(b)の右方側に位置する一般構造では、縦支持材8Fの側面及び下地4上に略L字状の捨板9Aが固定され、該捨板9Aの上に支持材9B及びパネル9が載置され、それらの支持材9B及びパネル9を覆うように覆い材9Cを取り付け、カバー材6Fと共に固着具61にて止め付けて雨水の浸入を防止する構造である。
In the general structure located on the left side (under water) in FIG. 6A, the uppermost panel 9 is arranged in the space O between the base surface 4 and the drainage part 87F as described above. The rainwater flowing through the waterproof sheet 41 can be guided onto the panel 9 and can flow down along the roof surface of this general structure. Further, a substantially L-shaped eaves metal fitting 9y is attached to the water lower end of the vertical support material 8F, and the covering material 9z is attached to the eave metal fitting 9y so that the water lower edge is along the end surface of the panel 9. Installed to prevent rainwater from entering. The covering material 9z is formed with a ventilation port 91 that opens downward, and the air blown from the ventilation port 91 enters the space on the back surface side of the panel material 1F as indicated by the broken large arrow.
In the general structure located on the right side of FIG. 6B, a substantially L-shaped discard plate 9A is fixed on the side surface of the vertical support member 8F and the base 4, and the support member is placed on the discard plate 9A. 9B and the panel 9 are mounted, and a cover member 9C is attached so as to cover the support member 9B and the panel 9, and the fixing member 61 is fixed together with the cover member 6F to prevent intrusion of rainwater.

また、図示実施例には、屋根下地4に設けた裏面側に貫通する通孔40に、その開孔縁を覆うキャップ材2を嵌め付け、太陽エネルギー変換モジュール10の配線16を前記キャップ材2の開口部から通孔40を通って下地4の裏面側へ引き込む配線引き込み構造を採用した。
前記キャップ材2は、前記通孔40に嵌め付けられる筒部21と、前記筒部21の上縁から外側上方へ凸状に湾曲する湾曲部22と、前記湾曲部22の下端から延在して下地面4に沿う取付部23とからなる構成である。
In the illustrated embodiment, the cap material 2 covering the opening edge is fitted into the through hole 40 penetrating the back surface provided in the roof base 4, and the wiring 16 of the solar energy conversion module 10 is connected to the cap material 2. A wiring lead-in structure is adopted in which the lead-in is led from the opening to the back side of the base 4 through the through hole 40.
The cap member 2 extends from a cylindrical portion 21 fitted into the through hole 40, a curved portion 22 that curves outwardly from the upper edge of the cylindrical portion 21, and a lower end of the curved portion 22. The mounting portion 23 extends along the base surface 4.

前記筒部21は、屋根下地4に設けられた平面視円孔状の通孔40に応じて略円筒状に成形されたものであり、その下縁は、僅かに拡開している。
なお、この筒部21の上縁は、外側上方へ拡開しているが、この構成は、湾曲部12として後述する。
前記湾曲部22は、前記筒部21の上縁から外側上方へ凸状に湾曲する曲面にて構成される。この凸状の頂部は、略擂り鉢状に形成される開口部の上端であるから開口縁221という。
前記取付部23は、前記湾曲部22の下端から延在して下地面4(防水シート41)に沿っている。また、その際、シール材を介して取付部23を防水シート材41と接着するようにした。
The cylindrical portion 21 is formed in a substantially cylindrical shape according to a circular hole 40 in a plan view provided in the roof base 4, and its lower edge is slightly expanded.
In addition, although the upper edge of this cylinder part 21 is expanded outside outward, this structure is mentioned later as the curved part 12. FIG.
The bending portion 22 is configured by a curved surface that curves in a convex shape outward from the upper edge of the cylindrical portion 21. This convex top is called the opening edge 221 because it is the upper end of the opening formed in a substantially bowl shape.
The attachment portion 23 extends from the lower end of the curved portion 22 and extends along the base surface 4 (waterproof sheet 41). At that time, the attachment portion 23 is bonded to the waterproof sheet material 41 through a sealing material.

この図6の排水構造は、前記図4の実施例と同様に縦支持材8Fの排水部87Fが脚部88により下地面4より高く位置させているので、この下地面4と排水部87Fとの間の空間Oに最水上側に位置するパネル9を容易に配設することができる。すなわち排水部87Fの水下端部を、水下側に隣接する水上側に位置するパネル9上に配設するので、排水部87Fを流下する雨水等を確実に水下側に隣接する外装構造に導くことができる。
また、前記空間Oは、前述のように脚部88の水下側を切り欠くことにより、図示しないケーブルを通すための空間としても利用でき、左右方向に隣接するパネル材1F,1Fの太陽電池10のケーブルを容易に接続することができる。
In the drainage structure of FIG. 6, since the drainage portion 87F of the vertical support member 8F is positioned higher than the base surface 4 by the legs 88 as in the embodiment of FIG. 4, the base surface 4 and the drainage portion 87F The panel 9 located on the uppermost water side can be easily disposed in the space O between the two. That is, since the lower end portion of the drainage portion 87F is disposed on the panel 9 located on the upper side of the water adjacent to the underwater side, the rain water flowing down the drainage portion 87F is surely provided in the exterior structure adjacent to the underwater side. Can lead.
The space O can also be used as a space for passing a cable (not shown) by notching the underwater side of the leg portion 88 as described above, and the solar cells of the panel materials 1F and 1F adjacent in the left-right direction. Ten cables can be easily connected.

また、この実施例では、前記キャップ材2を用いて配線16を引き込むため、下地4に設けた通孔40に対し、水下側に限らず四方(周囲)から配線16を臨ませることができ、キャップ材2の湾曲部22の凸状の頂部である開口縁221が取付部23より上方に位置するため、下地面4に敷設された防水シート材41上に雨水が浸入しても開口縁121から流入するのを防止することができる。
さらに、配線16と接触する湾曲部22は、曲面にて構成されているため、配線16の摩擦による破断や損傷を生ずることがない。
そして、前述のように水下側に限らず四方(周囲)から配線22を臨ませることができるため、少なくとも配線16を水下側からのみに限定した場合に比べて使い勝手がよく、また通孔40を穿設する数も少なくてよい。
また、図示実施例では、配線16が、キャップ材2の湾曲部22により上方へ凸状に屈曲されて配設されているので、配線16に付着した結露水を通孔40の外側へつたい落とすことができ、通孔40の中への浸水を防止することができる。
Further, in this embodiment, since the wiring 16 is drawn using the cap material 2, the wiring 16 can be exposed not only from the underwater side but also from four sides (surroundings) to the through hole 40 provided in the base 4. Since the opening edge 221 that is the convex top of the curved portion 22 of the cap material 2 is located above the mounting portion 23, the opening edge even if rainwater enters the waterproof sheet material 41 laid on the base surface 4. Inflow from 121 can be prevented.
Furthermore, since the curved portion 22 that comes into contact with the wiring 16 is formed of a curved surface, the wiring 16 does not break or be damaged due to friction.
Further, as described above, the wiring 22 can be exposed not only from the underwater side but also from four sides (surroundings), so that it is easier to use than the case where at least the wiring 16 is limited from the underwater side, and the through hole The number of holes 40 may be small.
In the illustrated embodiment, the wiring 16 is disposed so as to be bent upward by the curved portion 22 of the cap material 2, so that the condensed water adhering to the wiring 16 is connected to the outside of the hole 40. It is possible to prevent the water from entering the through hole 40.

1A〜1F パネル材
10 太陽エネルギー変換モジュール(太陽電池)
13 ジョイント材
2 キャップ材
21 筒部
22 湾曲部
23 取付部
3A〜3F 横支持材
31A〜31F 流水部
32 上方溝部
33 弾性材
34 下方溝部
35 固定具
4 下地
41 防水シート
5A,5B,5C,5D 受座部材(縦桟材)
51 固定具
6A〜6D,6F 継手カバー材
7A〜7E 排水部材
71A〜71E 排水部
72 隆起部
8A〜8F 縦支持材
81 連結部
82 パネル支持部
83 連結支持部
831 固定具
84 連結部
85 被支持片
87B,87D,87F 排水部
9 (一般外装構造の)パネル
O 空間
1A-1F Panel material 10 Solar energy conversion module (solar cell)
DESCRIPTION OF SYMBOLS 13 Joint material 2 Cap material 21 Cylinder part 22 Curved part 23 Mounting part 3A-3F Horizontal support material 31A-31F Flowing part 32 Upper groove part 33 Elastic material 34 Lower groove part 35 Fixing tool 4 Base 41 Waterproof sheet 5A, 5B, 5C, 5D Seat member (vertical beam)
51 Fixtures 6A to 6D, 6F Joint cover materials 7A to 7E Drainage members 71A to 71E Drainage portions 72 Raised portions 8A to 8F Vertical support materials 81 Connection portions 82 Panel support portions 83 Connection support portions 831 Fixtures 84 Connection portions 85 Supported Fragment 87B, 87D, 87F Drainage section 9 Panel O space (of general exterior structure)

Claims (2)

排水部は、太陽エネルギー変換モジュールの側縁に流れ方向に設けた排水部材又は縦支持部材に設けられ、排水部上に太陽電池変換モジュールの側縁、もしくは横支持材の端縁が位置する太陽エネルギー変換モジュール一体型外装構造の排水構造であって、
太陽エネルギー変換モジュール一体型外装構造内に形成した排水部の水下端部又は該排水部と接続した排水用接続部材の水下端部を、水下側に隣接する外装構造の最水上側に位置する外装材上に配設することを特徴とする太陽エネルギー変換モジュール一体型外装構造の排水構造。
The drainage part is provided in a drainage member or a vertical support member provided in the flow direction on the side edge of the solar energy conversion module, and the side edge of the solar cell conversion module or the edge of the lateral support member is located on the drainage part. A drainage structure with an energy conversion module integrated exterior structure,
The lower end portion of the drainage portion formed in the solar energy conversion module integrated exterior structure or the lower end portion of the drainage connection member connected to the drainage portion is positioned on the uppermost water side of the exterior structure adjacent to the underwater portion. A drainage structure of a solar energy conversion module-integrated exterior structure, wherein the drainage structure is disposed on an exterior material.
排水部を下地面より高く位置させていること特徴とする請求項1に記載の太陽エネルギー変換モジュール一体型外装構造の排水構造。 The drainage structure of the solar energy conversion module-integrated exterior structure according to claim 1, wherein the drainage portion is positioned higher than the base surface.
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JP5938539B2 (en) * 2011-06-15 2016-06-22 株式会社竹中工務店 Electronic member fixing structure
US20230299712A1 (en) * 2022-03-15 2023-09-21 Chiao Kuo Energy Technology Co., Ltd. Lap joint plate with solar panel

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