JP2001164713A - Mounting structure of solar-cell panel - Google Patents

Mounting structure of solar-cell panel

Info

Publication number
JP2001164713A
JP2001164713A JP35313099A JP35313099A JP2001164713A JP 2001164713 A JP2001164713 A JP 2001164713A JP 35313099 A JP35313099 A JP 35313099A JP 35313099 A JP35313099 A JP 35313099A JP 2001164713 A JP2001164713 A JP 2001164713A
Authority
JP
Japan
Prior art keywords
solar cell
cell panel
mounting structure
roof surface
support rail
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
JP35313099A
Other languages
Japanese (ja)
Inventor
Hiromichi Kuroda
弘道 黒田
Toshihiro Masuda
利弘 増田
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Misawa Homes Co Ltd
Original Assignee
Misawa Homes Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Misawa Homes Co Ltd filed Critical Misawa Homes Co Ltd
Priority to JP35313099A priority Critical patent/JP2001164713A/en
Publication of JP2001164713A publication Critical patent/JP2001164713A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S20/00Supporting structures for PV modules
    • H02S20/20Supporting structures directly fixed to an immovable object
    • H02S20/22Supporting structures directly fixed to an immovable object specially adapted for buildings
    • H02S20/23Supporting structures directly fixed to an immovable object specially adapted for buildings specially adapted for roof structures
    • 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
    • F24S25/20Peripheral frames for modules
    • 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
    • F24S25/00Arrangement of stationary mountings or supports for solar heat collector modules
    • F24S25/60Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules
    • F24S25/65Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules for coupling adjacent supporting elements, e.g. for connecting profiles together
    • 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
    • F24S2025/80Special profiles
    • F24S2025/801Special profiles having hollow parts with closed cross-section
    • 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
    • Y02B10/10Photovoltaic [PV]
    • 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
    • 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
    • Y02E10/50Photovoltaic [PV] energy

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Mechanical Engineering (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Thermal Sciences (AREA)
  • Physics & Mathematics (AREA)
  • Combustion & Propulsion (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • General Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Roof Covering Using Slabs Or Stiff Sheets (AREA)
  • Photovoltaic Devices (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide the mounting structure of a solar-cell panel in which the solar-cell panel can be installed on the whole roof surface even on a large roof surface. SOLUTION: The opposed end sections in the extending direction of supporting rails 14A, 14B are connected mutually by a fitting means 45 composed of cylindrical sections 44 and rod-shaped members 46 fitted to the cylindrical sections 44 in the mutual supporting rails. Since a long-sized supporting rail 14 having large length size larger than maximum size as a transport limit can be formed, the long-sized supporting rail 14 can be installed from the ridge of a roof surface of interest to the edge of eaves. Accordingly, the solar-cell panel can be mounted on the whole roof surface even on the large roof surface.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【発明の属する技術分野】本発明は、屋根面に沿って複
数配設される太陽電池パネルと、前記屋根面上に複数取
り付けられ、この太陽電池パネルの一側縁を支持する支
持レールとを備えた太陽電池パネルの取付構造に関する
ものである。
[0001] The present invention relates to a solar cell panel provided along a roof surface and a support rail mounted on the roof surface and supporting one side edge of the solar cell panel. The present invention relates to a mounting structure for a solar cell panel provided.

【0002】[0002]

【背景技術】従来より、環境や生態系に悪影響を与えな
いクリーンなエネルギーとして太陽エネルギーが知られ
ている。太陽エネルギーを利用するに当たり、太陽の光
を電気に変換する太陽電池が利用されている。このよう
な太陽電池を家庭でも利用できるようにするために、屋
根面に太陽電池が設置された太陽電池付屋根が知られて
いる。太陽電池付屋根に設置される太陽電池は、水によ
る漏電や短絡等の事故を未然に防止する必要があり、太
陽電池であるソーラーセルを平板状の完全防水ケースの
内部に収めて太陽電池パネルとして設置されている。こ
の太陽電池パネルは、一枚で所定の電圧および電力が得
られるように、所定枚数のソーラーセルを有するものと
なっている。
BACKGROUND ART Conventionally, solar energy has been known as clean energy which does not adversely affect the environment and ecosystem. In using solar energy, a solar cell that converts sunlight into electricity is used. In order to make such a solar cell usable at home, a roof with a solar cell in which a solar cell is installed on a roof surface is known. Solar cells installed on roofs with solar cells need to prevent accidents such as short circuit and short circuit due to water.Solar cells, which are solar cells, are housed inside a flat, completely waterproof case, and solar panels It is installed as. This solar cell panel has a predetermined number of solar cells so that a predetermined voltage and power can be obtained by one sheet.

【0003】このような太陽電池パネルを屋根面に取り
付けるにあたり、棟から軒先まで向かって延びる細長い
レール状の支持レールが屋根面に複数配列され、これら
の支持レールの間に太陽電池パネルが配置されるととも
に、各太陽電池パネルの両側縁部が当該支持レールに固
定されるようになっている(特願平10−331083
号等参照)。なお、支持レールは、工場等から建築現場
に輸送する際の輸送制限となる寸法が最大寸法となって
いる。
In mounting such a solar cell panel on a roof surface, a plurality of elongated rail-shaped support rails extending from the ridge to the eaves are arranged on the roof surface, and the solar cell panel is arranged between these support rails. In addition, both side edges of each solar cell panel are fixed to the support rail (Japanese Patent Application No. 10-331083).
No.). Note that the maximum size of the support rail is a dimension that is a transport restriction when transported from a factory or the like to a construction site.

【0004】[0004]

【発明が解決しようとする課題】このような支持レール
は、棟から軒先までの長さ寸法が一定な切妻屋根の屋根
面や、棟から軒先までの長さ寸法が異なる寄棟屋根の屋
根面等に応じて、様々な長さ寸法のものが形成され、利
用されている。しかしながら、棟から軒先までの長さ寸
法が、当該支持レールの最大寸法よりも大きい屋根面の
場合、当該屋根面の棟から軒先まで当該支持レールを設
けることができないので、屋根面全体に太陽電池パネル
を設けることができないという問題がある。
Such a support rail is a roof surface of a gable roof having a fixed length from the ridge to the eaves, or a roof surface of a ridge roof having a different length from the ridge to the eaves. Various lengths are formed and used depending on the conditions. However, if the length of the roof from the ridge to the eaves is larger than the maximum dimension of the support rail, the support rail cannot be provided from the ridge to the eaves of the roof. There is a problem that a panel cannot be provided.

【0005】本発明の目的は、大きい屋根面にも、当該
屋根面全体に太陽電池パネルを設けることが可能な太陽
電池パネルの取付構造を提供することにある。
[0005] It is an object of the present invention to provide a solar cell panel mounting structure capable of providing a solar cell panel on the entire roof surface even on a large roof surface.

【0006】[0006]

【課題を解決するための手段】本発明は、図面を参照し
て説明すると、屋根面121に沿って複数配設される太
陽電池パネル13と、屋根面121上に複数取り付けら
れ、この太陽電池パネル13の一側縁を支持する支持レ
ール14A、14Bとを備えた太陽電池パネル13の取
付構造であって、支持レール14Aは、その延出方向端
部が他の支持レール14Bの延出方向端部と嵌合手段4
5を介して接続されることを特徴とする。このような本
発明によれば、複数の支持レールを相互に接続すること
で、輸送制限となる最大寸法以上の長さ寸法の大きい支
持レールを形成することが可能となるので、大きい屋根
面にも、当該屋根面の棟から軒先まで支持レールを設け
ることが可能となる。これにより、大きい屋根面にも、
当該屋根面全体に太陽電池パネルを設けることが可能と
なる。また、支持レールの延出方向端部同士を接続する
際、当該延出方向端部同士を嵌合手段により接続するの
で、支持レール同士をずれることなく配置することが可
能となり、これにより、支持レールの接続作業や設置作
業が容易となる。
The present invention will be described with reference to the drawings. Referring to the drawings, a plurality of solar cell panels 13 are provided along a roof surface 121, and a plurality of solar cell panels 13 are mounted on the roof surface 121. It is a mounting structure of a solar cell panel 13 including support rails 14A and 14B for supporting one side edge of the panel 13, wherein the support rail 14A has an end in the extending direction at which the other supporting rail 14B extends. End and fitting means 4
5 is connected. According to the present invention, by connecting a plurality of support rails to each other, it is possible to form a large support rail having a length dimension equal to or larger than the maximum dimension which is a transport restriction, so that a large roof surface can be formed. Also, it is possible to provide a support rail from the ridge on the roof surface to the eaves. As a result, even on large roof surfaces,
It becomes possible to provide a solar cell panel on the entire roof surface. Further, when connecting the extending direction ends of the support rails, the extending direction ends are connected to each other by the fitting means, so that the support rails can be arranged without being shifted from each other. Rail connection and installation work is facilitated.

【0007】以上において、前述の嵌合手段45は、支
持レール14A、14Bの延出方向端部に形成される凹
部(例えば、筒状部44)と、この凹部と嵌合する棒状
部材46とを備えていることが好ましい。このようにす
れば、支持レールの延出方向端部同士を接続する際、対
応する凹部に棒状部材を嵌合することで簡単に接続する
ことが可能となるとともに、位置決め精度が向上し、支
持レール同士の直線性が良好となり、ずれることなく簡
単に配置することが可能となり、これにより、支持レー
ルの接続作業や設置作業がより容易となる。
In the above description, the fitting means 45 includes a concave portion (for example, a cylindrical portion 44) formed at the end of the support rails 14A and 14B in the extending direction, and a rod-shaped member 46 fitted with the concave portion. It is preferable to have. With this configuration, when connecting the end portions of the support rails in the extending direction, the connection can be easily performed by fitting the rod-shaped members into the corresponding concave portions, and the positioning accuracy is improved, and The linearity between the rails is improved, and the rails can be easily arranged without being shifted. This makes it easier to connect and install the support rails.

【0008】さらに、前述の凹部(例えば、筒状部4
4)は、支持レール14Aの端面を塞ぐカバー部材47
を固定するねじ81が螺合可能に形成されていることが
好ましい。ここで、カバー部材は、一番棟側に配置され
た支持レールの棟に面する端面を塞ぐためのものであ
る。このようにすれば、カバー部材を支持レールの端面
に設ける際に、当該カバー部材をねじで固定することが
可能となるので、この点からも、支持レールの接続作業
や設置作業がより容易となる。また、支持レールの端面
に、別途カバー部材を固定するための構造を形成する必
要がないので、当該支持レールの構造が複雑にならず、
製造を容易に行うことが可能となる。
Further, the above-mentioned concave portion (for example, the cylindrical portion 4)
4) is a cover member 47 for closing the end surface of the support rail 14A.
It is preferable that a screw 81 for fixing is formed to be screwable. Here, the cover member is for closing an end face of the support rail disposed closest to the ridge, which faces the ridge. According to this configuration, when the cover member is provided on the end face of the support rail, the cover member can be fixed with screws, and from this point, the connection work and the installation work of the support rail can be more easily performed. Become. In addition, since it is not necessary to form a structure for separately fixing the cover member on the end surface of the support rail, the structure of the support rail does not become complicated,
Manufacturing can be easily performed.

【0009】また、前述の支持レール14A、14B間
の継ぎ目には、当該継ぎ目から屋根面121への雨水等
の浸入を防ぐための防水部材(例えば、防水テープ4
1)が設けられていることが望ましい。このようにすれ
ば、継ぎ目から屋根面への雨水等の浸入を簡単に防ぐこ
とが可能となるので、継ぎ目の防水性能を容易に確保す
ることが可能となる。
Further, a waterproof member (for example, waterproof tape 4) for preventing rainwater or the like from entering the roof surface 121 from the joint between the support rails 14A and 14B.
It is desirable that 1) be provided. This makes it possible to easily prevent infiltration of rainwater or the like from the joint to the roof surface, so that the waterproof performance of the joint can be easily ensured.

【0010】さらに、前述の支持レール14A、14B
は、太陽電池パネル13の一側縁を上面で受ける長尺の
受部(例えば、パネル受部31)と、この受部の長手方
向に沿った両端に設けられた立ち上がり部(例えば、止
水部31A)とを備え、防水部材(例えば、防水テープ
41)は、受部の上面に貼り付けられるとともに、その
両端縁が各立ち上がり部の上端に達していることが好ま
しい。このようにすれば、太陽電池パネルと太陽電池パ
ネル間に設けられるカバーとの間から浸入してきた雨水
等の水を、屋根面に浸入させることなく、受部上を流し
て建物の外部に排出することが可能となる。つまり、支
持レールを樋としても利用することが可能となる。この
ように支持レールを樋として利用しても、屋根面への雨
水等の浸入を防ぐことが可能となるので、防水性能を確
保することが可能となる。
Further, the aforementioned support rails 14A, 14B
Is a long receiving portion (for example, panel receiving portion 31) that receives one side edge of the solar cell panel 13 on the upper surface, and rising portions (for example, water stoppage) provided at both ends along the longitudinal direction of this receiving portion. It is preferable that the waterproof member (for example, waterproof tape 41) is attached to the upper surface of the receiving portion, and both end edges reach the upper end of each rising portion. In this manner, water such as rainwater that has entered from between the solar cell panel and the cover provided between the solar cell panels flows over the receiving portion and is discharged to the outside of the building without entering the roof surface. It is possible to do. That is, the support rail can be used as a gutter. Thus, even if the support rail is used as a gutter, it is possible to prevent rainwater or the like from entering the roof surface, so that waterproof performance can be ensured.

【0011】[0011]

【発明の実施の形態】以下に本発明の実施の形態を図面
に基づいて説明する。図1には、本発明の第1実施形態
に係る箱状の複数の建物ユニットで形成されたユニット
式建物10が示されている。この建物10の屋根11
は、棟11Aの両側に、この棟11Aから軒先11Bに
向かって下り勾配を有する通常よりも大きい屋根面12
1が形成された切妻式の屋根である。屋根11には、棟
11Aに沿って配列された複数の屋根パネル12と、屋
根葺材となる複数の太陽電池パネル13とが備えられて
いる。これにより、屋根11は、太陽電池付屋根とされ
ている。
Embodiments of the present invention will be described below with reference to the drawings. FIG. 1 shows a unit-type building 10 formed by a plurality of box-like building units according to the first embodiment of the present invention. Roof 11 of this building 10
Are located on both sides of the ridge 11A and have a larger than normal roof surface 12 having a downward slope from the ridge 11A toward the eaves 11B.
1 is a gable roof. The roof 11 includes a plurality of roof panels 12 arranged along a ridge 11A and a plurality of solar cell panels 13 serving as roofing materials. Thus, the roof 11 is a roof with solar cells.

【0012】各屋根パネル12には、図2に示されるよ
うに、屋根面121の傾斜方向に沿って、かつ、通常よ
りも大きい屋根面121に対応した棟11Aから軒先1
1Bまでの長さ寸法を有する複数の長尺支持レール14
が設けられている。これらの長尺支持レール14の各々
は、水平方向に所定の間隔をあけて設けられている。ま
た、これらの長尺支持レール14の間には、当該長尺支
持レール14の長手方向に沿って太陽電池パネル13が
縦横に配列されている。これにより、太陽電池パネル1
3の両側縁が長尺支持レール14に支持されるようにな
っている。ここで、各長尺支持レール14は、それぞれ
上下に配置される2つの支持レール14A、14Bを接
続することで形成されている。このように、2つの支持
レール14A、14Bで当該長尺支持レール14を形成
することで、通常よりも大きい屋根面121の棟11A
から軒先11Bまで太陽電池パネル13を設けることが
可能となっている。なお、支持レール14Aは、屋根面
121の傾斜方向に沿った棟11A側に配置されるとと
もに、支持レール14Bは、屋根面121の傾斜方向に
沿った軒先11B側に配置されている。
As shown in FIG. 2, each of the roof panels 12 has a roof eaves 1 extending from the ridge 11A corresponding to the roof surface 121 which is larger than usual along the inclination direction of the roof surface 121.
A plurality of long support rails 14 having a length up to 1B
Is provided. Each of these long support rails 14 is provided at predetermined intervals in the horizontal direction. Further, solar cell panels 13 are vertically and horizontally arranged between the long support rails 14 along the longitudinal direction of the long support rails 14. Thereby, the solar cell panel 1
3 are supported by the long support rails 14. Here, each long support rail 14 is formed by connecting two support rails 14A and 14B which are respectively arranged vertically. As described above, by forming the long support rail 14 by the two support rails 14A and 14B, the ridge 11A of the roof surface 121 which is larger than usual.
The solar cell panel 13 can be provided from to the eaves 11B. The support rail 14A is arranged on the ridge 11A side along the inclination direction of the roof surface 121, and the support rail 14B is arranged on the eaves 11B side along the inclination direction of the roof surface 121.

【0013】各太陽電池パネル13は、図3に示すよう
に、太陽光で発電を行う所定枚数のソーラーセルを収め
た平板状の完全防水ケース21と、このケース21の周
りを囲む四角枠状のフレーム22とを備えている。フレ
ーム22は、屋根面121の傾斜方向に沿って左右に配
置される2本の縦枠部23と、これら縦枠部23の上下
端を接続し、かつ、屋根面121の桁方向に沿って配置
されている上枠部24および下枠部25とを備えて形成
されている。これらのケース21およびフレーム22に
より、太陽電池パネル13全体の防水および補強がなさ
れ、太陽電池パネル13内のソーラーセルは、雨水によ
る漏電および短絡等の事故ならびに太陽電池パネル13
の表面に加わる荷重等から保護されるようになってい
る。
As shown in FIG. 3, each solar cell panel 13 has a flat, completely waterproof case 21 containing a predetermined number of solar cells for generating electricity with sunlight, and a rectangular frame surrounding the case 21. Frame 22. The frame 22 connects two vertical frame portions 23 arranged on the left and right along the inclination direction of the roof surface 121, and connects upper and lower ends of these vertical frame portions 23, and extends along the girder direction of the roof surface 121. It is provided with the upper frame part 24 and the lower frame part 25 which are arrange | positioned. The case 21 and the frame 22 provide waterproofing and reinforcement of the entire solar cell panel 13, and the solar cells in the solar cell panel 13 are protected from accidents such as electric leakage and short circuit due to rainwater and the solar cell panel 13.
Is protected from the load applied to the surface of the device.

【0014】各長尺支持レール14(支持レール14
A、14B)は、図4に示すように、前述した太陽電池
パネル13の縦枠部23を受ける断面凸形状の受部であ
るパネル受部31と、このパネル受部31を支持し、屋
根面121の野地板122上にビス80で固定されるパ
ネル支持部32とを備え、押出成形で形成されている。
また、各太陽電池パネル13間には、太陽電池パネル1
3同士の隙間を覆う細長いカバー材33が設けられてい
る。
Each long support rail 14 (support rail 14
A, 14B), as shown in FIG. 4, a panel receiving portion 31 which is a receiving portion having a convex cross section for receiving the vertical frame portion 23 of the above-described solar cell panel 13, and supports the panel receiving portion 31 to form a roof. The panel support portion 32 is fixed on the base plate 122 on the surface 121 with screws 80, and is formed by extrusion molding.
In addition, between each solar cell panel 13, the solar cell panel 1
An elongated cover material 33 that covers the gap between the three is provided.

【0015】パネル受部31の長手方向に沿った両端に
は、立ち上がり部である止水部31Aが形成されてい
る。この止水部31Aは、太陽電池パネル13とカバー
材33との間から浸入してきた雨水等の水が野地板12
2上に落ちないようにする樋となっている。これらパネ
ル受部31および止水部31Aの表面(上面)には、防
水部材である防水テープ41が貼り付けられている。こ
の防水テープ41は、棟11Aから軒先11Bまでの長
さ寸法を有するとともに、その両端縁が各止水部31A
の上端縁に達する程度の幅寸法を有している。また、パ
ネル受部31の長手方向に沿った両端には、止水部31
Aによって凹状の嵌合部42が形成されている。この嵌
合部42には、前記太陽電池パネル13の縦枠部23が
嵌合されて固定されている。さらに、パネル支持部32
は、その内部に中空の3つの樋部43A〜43Cが形成
されているとともに、真ん中の樋部43Bの内面には、
支持レール14A、14Bの長手方向に沿って断面略輪
状の筒状部44が形成されている。この筒状部44に
は、その内部に図示しない雌ねじが形成されており、ね
じが螺合可能となっている。
At both ends of the panel receiving portion 31 along the longitudinal direction, a water stopping portion 31A as a rising portion is formed. The water stopping portion 31 </ b> A is filled with water such as rainwater that has entered from between the solar cell panel 13 and the cover member 33.
2 is a gutter to prevent falling. A waterproof tape 41, which is a waterproof member, is attached to the surface (upper surface) of the panel receiving portion 31 and the water stopping portion 31A. The waterproof tape 41 has a length dimension from the ridge 11A to the eaves 11B, and both ends of the waterproof tape 41 have respective waterproof portions 31A.
Has a width dimension that reaches the upper end edge of the sheet. Further, at both ends of the panel receiving portion 31 along the longitudinal direction, the water stopping portions 31 are provided.
A forms a concave fitting portion 42. The vertical frame portion 23 of the solar cell panel 13 is fitted and fixed to the fitting portion 42. Further, the panel support 32
Has three hollow gutter portions 43A to 43C formed therein, and the inner surface of the middle gutter portion 43B has
A tubular section 44 having a substantially annular cross section is formed along the longitudinal direction of the support rails 14A and 14B. A female screw (not shown) is formed in the cylindrical portion 44 so that the screw can be screwed.

【0016】カバー材33と縦枠部23との間から浸入
する雨水等の水は、パネル受部31の上面を伝って軒先
11Bから排出されるようになっている。カバー材33
をパネル受部31に固定するビス80の孔を伝ってパネ
ル支持部32の内部に浸入した雨水等の水は、パネル支
持部32の樋部43Bを通して軒先11Bから排出され
るようになっている。ここで、野地板122は、合板等
の面材であり、表面にアスファルトルーフィング等の防
水シート材123が貼り付けられている。
Water, such as rainwater, that enters from between the cover member 33 and the vertical frame portion 23 is discharged from the eaves 11B along the upper surface of the panel receiving portion 31. Cover material 33
Water, such as rainwater, which has entered the inside of the panel support 32 through the holes of the screws 80 for fixing the water to the panel receiving portion 31 is discharged from the eaves 11B through the gutter 43B of the panel support 32. . Here, the base plate 122 is a face material such as plywood, and a waterproof sheet material 123 such as asphalt roofing is attached to the surface.

【0017】上下に配置される支持レール14A、14
B同士は、図5に示されるように、その対向する延出方
向端部同士が嵌合手段45を介して接続されている。詳
しくは、各支持レール14A、14Bの対向する延出方
向端部に露出形成されている筒状部44に、長尺円柱状
の棒状部材46の両端部をそれぞれ挿入・嵌合すること
で、当該支持レール14A、14B同士が接続されてい
る。つまり、筒状部44は、棒状部材46を嵌合する凹
部であり、この筒状部44と、当該筒状部44に嵌合す
る棒状部材46とで嵌合手段45が構成されている。な
お、この支持レール14A、14B間の接続部分の継ぎ
目にも、前述の防水テープ41が貼り付けられている。
これにより、継ぎ目から屋根面121への雨水等の浸入
を防いでいる。
Support rails 14A, 14 arranged vertically
As shown in FIG. 5, the opposite end portions of B are connected to each other in the extending direction via a fitting means 45. Specifically, by inserting and fitting both ends of the long cylindrical rod-shaped member 46 into the tubular portion 44 exposed at the end of the support rails 14A and 14B facing the extending direction, The support rails 14A and 14B are connected to each other. That is, the tubular portion 44 is a concave portion into which the rod-shaped member 46 is fitted, and the fitting means 45 is constituted by the tubular portion 44 and the rod-shaped member 46 fitted into the tubular portion 44. Note that the waterproof tape 41 described above is also attached to the joint between the connecting portions between the support rails 14A and 14B.
This prevents rainwater or the like from entering the roof surface 121 from the joint.

【0018】支持レール14Aの棟11Aに面する端部
には、図6にも示されるように、当該支持レール14A
における、パネル受部31および止水部31Aの端面お
よび樋部43B端面を塞ぐ正面T字形状のカバー部材4
7が設けられている。詳しくは、このカバー部材47に
は、筒状部44に応じた位置に孔47Aが開けられてお
り、この孔47Aを介して筒状部44にねじ81を螺合
することにより、当該カバー部材47が支持レール14
Aに固定されている。
At the end of the support rail 14A facing the ridge 11A, as shown in FIG.
, A front T-shaped cover member 4 for closing the end surfaces of the panel receiving portion 31 and the water stopping portion 31A and the gutter portion 43B.
7 are provided. More specifically, a hole 47A is formed in the cover member 47 at a position corresponding to the cylindrical portion 44, and a screw 81 is screwed into the cylindrical portion 44 through the hole 47A to thereby form the cover member 47. 47 is the support rail 14
A.

【0019】次に、このような太陽電池付屋根11の組
立手順を説明する。まず、工場で屋根パネル12、建物
ユニット、支持レール14A、14B、太陽電池パネル
13等を製造する。ここで、支持レール14A、14B
は、押出成形で長尺状のものを形成した後、所定寸法で
切断していくことで形成する。そして、建築現場で、屋
根パネル12、建物ユニット等を組み合わせてユニット
式建物10を建築する。その後、屋根面121上に長尺
支持レール14を配置する。この際、支持レール14
A、14Bの対向する延出方向端部の筒状部44にそれ
ぞれ棒状部材46の両端を嵌合し、当該支持レール14
A、14B同士を接続し、長尺支持レール14を形成す
る。そして、屋根葺材となる太陽電池パネル13を、長
尺支持レール14を介して屋根パネル12に取り付け
る。このようにして、太陽電池付屋根11を組み立て
る。
Next, the procedure for assembling the roof 11 with solar cells will be described. First, a roof panel 12, a building unit, support rails 14A and 14B, a solar panel 13 and the like are manufactured in a factory. Here, the support rails 14A, 14B
Is formed by extruding a long product and then cutting it to a predetermined size. Then, at the construction site, the unit-type building 10 is constructed by combining the roof panel 12, the building unit, and the like. After that, the long support rails 14 are arranged on the roof surface 121. At this time, the support rail 14
The ends of the rod-shaped member 46 are fitted into the cylindrical portions 44 at the ends in the extending direction of the support rails 14A and 14B, respectively.
A and 14B are connected to each other to form a long support rail 14. Then, the solar cell panel 13 serving as a roofing material is attached to the roof panel 12 via the long support rail 14. In this way, the roof 11 with solar cells is assembled.

【0020】このような本実施形態によれば、次のよう
な効果が得られる。すなわち、2つの支持レール14
A、14Bを相互に接続することで、輸送制限となる最
大寸法以上の長さ寸法の大きい長尺支持レール14を形
成することができるので、大きい屋根面121にも、当
該屋根面121の棟11Aから軒先11Bまで長尺支持
レール14を設けることができる。これにより、大きい
屋根面121にも、当該屋根面121全体に太陽電池パ
ネル13を設けることができる。
According to the present embodiment, the following effects can be obtained. That is, the two support rails 14
By connecting A and 14B to each other, it is possible to form the long support rails 14 having a length longer than the maximum dimension which is a transportation restriction. A long support rail 14 can be provided from 11A to the eaves 11B. Thus, the solar cell panel 13 can be provided on the entire roof surface 121 even on the large roof surface 121.

【0021】また、支持レール14A、14Bの延出方
向端部同士を接続する際、当該延出方向端部同士を嵌合
手段45により接続したので、支持レール14A、14
B同士をずれることなく配置することができ、これによ
り、支持レール14A、14Bの接続作業や設置作業を
容易に行うことができる。
When the ends of the support rails 14A and 14B in the extending direction are connected to each other, the ends of the support rails 14A and 14B are connected by the fitting means 45.
B can be arranged without being shifted from each other, so that the connection work and the installation work of the support rails 14A and 14B can be easily performed.

【0022】さらに、支持レール14A、14Bの延出
方向端部同士を接続する際、対応する筒状部44に棒状
部材46の両端を嵌合することで簡単に接続することが
できるとともに、位置決め精度が向上し、支持レール1
4A、14B同士の直線性が良好となり、ずれることな
く簡単に配置することができる。これにより、支持レー
ル14A、14Bの接続作業や設置作業をより容易にで
きる。
Further, when the ends of the support rails 14A and 14B in the extending direction are connected to each other, both ends of the rod-shaped member 46 can be easily connected by fitting both ends of the rod-shaped member 46 to the corresponding cylindrical portion 44, and the positioning can be performed. Accuracy is improved, support rail 1
4A and 14B have good linearity, and can be easily arranged without displacement. This makes it easier to connect and install the support rails 14A and 14B.

【0023】また、筒状部44に雌ねじを形成したの
で、カバー部材47を支持レール14Aの端面に設ける
際に、当該カバー部材47をねじで固定することができ
る。この点からも、支持レール14A、14Bの接続作
業や設置作業をより容易にできる。さらに、支持レール
14Aの端面に、別途カバー部材47を固定するための
構造を形成する必要がないので、当該支持レール14A
の構造が複雑にならず、製造を容易に行うことができ
る。
Further, since the female screw is formed in the cylindrical portion 44, when the cover member 47 is provided on the end surface of the support rail 14A, the cover member 47 can be fixed with the screw. From this point, the connection work and the installation work of the support rails 14A and 14B can be more easily performed. Further, since it is not necessary to separately form a structure for fixing the cover member 47 on the end surface of the support rail 14A, the support rail 14A
Does not have a complicated structure, and can be easily manufactured.

【0024】また、支持レール14A、14B間の継ぎ
目に防水テープ41を貼り付けたので、継ぎ目から屋根
面121への雨水等の浸入を簡単に防ぐことができ、継
ぎ目の防水性能を容易に確保することができる。
Further, since the waterproof tape 41 is applied to the joint between the support rails 14A and 14B, it is possible to easily prevent infiltration of rainwater or the like from the joint into the roof surface 121 and easily secure the waterproof performance of the joint. can do.

【0025】さらに、防水テープ41は、その両端縁が
各止水部31Aの上端縁に達する程度の幅寸法を有して
いるので、太陽電池パネル13間に設けられるカバー材
33との間から浸入してきた雨水等の水を、屋根面12
1に浸入させることなく、パネル受部31上を流して建
物10の外部に排出することができる。つまり、支持レ
ール14A、14Bを樋としても利用することができ
る。このように、支持レール14A、14Bを樋として
利用しても、屋根面121への雨水等の浸入を防ぐこと
ができ、防水性能を確保することができる。
Further, since the waterproof tape 41 has such a width that both end edges thereof reach the upper end edge of each of the water blocking portions 31A, the waterproof tape 41 is provided between the waterproof tape 41 and the cover member 33 provided between the solar battery panels 13. Water such as rainwater that has entered the roof 12
1 and can be discharged to the outside of the building 10 by flowing over the panel receiving portion 31 without invading the building 10. That is, the support rails 14A and 14B can also be used as gutters. As described above, even if the support rails 14A and 14B are used as gutters, it is possible to prevent rainwater or the like from entering the roof surface 121 and secure waterproof performance.

【0026】なお、本発明は前記実施の形態に限定され
るものではなく、本発明の目的を達成できる他の構成等
を含み、以下に示すような変形等も本発明に含まれる。
例えば、前記実施形態では、防水テープ41は、その両
端縁が各止水部31Aの上端縁に達する程度の幅寸法を
有していたが、これに限らず、例えば、パネル受部31
の表面を覆う程度の大きさに形成してもよい。
It should be noted that the present invention is not limited to the above-described embodiment, but includes other configurations that can achieve the object of the present invention, and also includes the following modifications and the like.
For example, in the above-described embodiment, the waterproof tape 41 has a width dimension such that both end edges thereof reach the upper end edge of each of the water stopping portions 31A, but is not limited thereto.
May be formed in such a size as to cover the surface.

【0027】また、前記実施形態では、支持レール14
A、14B間の継ぎ目に防水テープ41を貼り付けてい
たが、これに限らず、例えば、継ぎ目から屋根面121
への雨水等の浸入を簡単に防ぐことができるような構造
であれば、なくてもよい。さらに、前記実施形態では、
防水テープ41を、長尺支持レール14の全面に貼り付
けていたが、これに限らず、例えば、支持レール14
A、14B間の継ぎ目だけに貼り付けてもよい。また、
防水部材としては、防水テープ41に限らず、例えば、
継ぎ目の隙間を塞ぐシーリング剤等が採用できる。
In the above embodiment, the support rail 14
Although the waterproof tape 41 is stuck to the joint between A and 14B, the present invention is not limited to this.
The structure may be omitted as long as it can easily prevent rainwater or the like from entering the water. Further, in the above embodiment,
Although the waterproof tape 41 is stuck on the entire surface of the long support rail 14, the present invention is not limited to this.
It may be attached only to the joint between A and 14B. Also,
The waterproof member is not limited to the waterproof tape 41.
A sealing agent or the like that closes the gap between the joints can be used.

【0028】さらに、前記実施形態では、筒状部44に
雌ねじを形成していたが、これに限らず、例えば、カバ
ー部材47に支持レール14Aの端面に固定するための
係止構造等を形成しておけば、形成しなくてもよい。
Further, in the above embodiment, the female screw is formed in the cylindrical portion 44. However, the present invention is not limited to this. For example, a locking structure for fixing the cover member 47 to the end surface of the support rail 14A is formed. If they are formed, they do not have to be formed.

【0029】また、前記実施形態では、嵌合手段45
は、凹部と棒状部材とから構成されていたが、これに限
らず、要するに、支持レール14A、14B同士の対向
する延出方向端部同士を接続するような構成であればよ
く、その構成等は実施に当たって適宜決めればよい。
In the above embodiment, the fitting means 45
Is composed of a concave portion and a rod-shaped member, but the invention is not limited thereto. In short, any configuration may be used as long as it connects end portions in the extending direction of the support rails 14A and 14B to each other. May be appropriately determined upon implementation.

【0030】さらに、前記実施形態では、長尺支持レー
ルは、2つの支持レールを接続して形成していたが、こ
れに限らず、例えば、3つの支持レールで形成してもよ
いし、5つの支持レールで形成してもよく、屋根面の棟
から軒先までの長さ寸法に応じて適宜選択すればよい。
Further, in the above embodiment, the long support rail is formed by connecting two support rails. However, the present invention is not limited to this. For example, the long support rail may be formed by three support rails. It may be formed of two support rails, and may be appropriately selected according to the length dimension from the roof ridge to the eaves.

【0031】また、建物としては、箱状に形成された建
物ユニットを複数組み合わせたユニット式建物10に限
らず、板状に形成された壁パネルおよび床パネルを複数
組み合わせたパネル方式のプレハブ住宅や、柱および梁
を建築現場で接合する在来工法からなる一般的な建物で
もよい。
The building is not limited to the unit-type building 10 in which a plurality of box-shaped building units are combined, and a panel-type prefabricated house in which a plurality of plate-shaped wall panels and floor panels are combined. It may be a general building made of a conventional method of joining columns, beams and beams at a construction site.

【0032】[0032]

【発明の効果】以上に述べたように、本発明の太陽電池
パネルの取付構造によれば、次のような効果がある。す
なわち、請求項1に記載の太陽電池パネルの取付構造に
よれば、複数の支持レールを相互に接続することで、輸
送制限となる最大寸法以上の長さ寸法の大きい支持レー
ルを形成することができるので、大きい屋根面にも、当
該屋根面の棟から軒先まで支持レールを設けることがで
きる。これにより、大きい屋根面にも、当該屋根面全体
に太陽電池パネルを設けることができる。また、支持レ
ールの延出方向端部同士を接続する際、当該延出方向端
部同士を嵌合手段により接続するので、支持レール同士
をずれることなく配置することができ、これにより、支
持レールの接続作業や設置作業を容易にできる。
As described above, the solar cell panel mounting structure of the present invention has the following effects. That is, according to the solar cell panel mounting structure of the first aspect, by connecting a plurality of support rails to each other, it is possible to form a large support rail having a length equal to or larger than the maximum dimension which is a transport restriction. Therefore, a support rail can be provided on a large roof surface from the ridge of the roof surface to the eaves. Thereby, the solar cell panel can be provided on the entire roof surface even on the large roof surface. In addition, when connecting the ends in the extending direction of the support rails, the ends in the extending direction are connected to each other by the fitting means, so that the support rails can be arranged without being shifted from each other. Can be easily connected and installed.

【0033】また、請求項2に記載の太陽電池パネルの
取付構造によれば、支持レールの延出方向端部同士を接
続する際、対応する凹部に棒状部材を嵌合することで簡
単に接続することができるとともに、位置決め精度が向
上し、支持レール同士の直線性が良好となり、ずれるこ
となく簡単に配置することができ、これにより、支持レ
ールの接続作業や設置作業をより容易にできる。
According to the solar cell panel mounting structure of the second aspect, when connecting the ends of the support rails in the extending direction, the connection is easily performed by fitting the rod-shaped member into the corresponding recess. In addition to this, the positioning accuracy is improved, the linearity between the support rails is improved, and the support rails can be easily arranged without being shifted, thereby making it easier to connect and install the support rails.

【0034】さらに、請求項3に記載の太陽電池パネル
の取付構造によれば、カバー部材を支持レールの端面に
設ける際に、当該カバー部材をねじで固定することがで
きるので、この点からも、支持レールの接続作業や設置
作業をより容易にできる。また、支持レールの端面に、
別途カバー部材を固定するための構造を形成する必要が
ないので、当該支持レールの構造が複雑にならず、製造
を容易に行うことができる。
Further, according to the solar cell panel mounting structure of the third aspect, when the cover member is provided on the end face of the support rail, the cover member can be fixed with screws, and this point is also considered. In addition, the connection work and the installation work of the support rail can be more easily performed. Also, on the end face of the support rail,
Since it is not necessary to separately form a structure for fixing the cover member, the structure of the support rail is not complicated, and the manufacturing can be easily performed.

【0035】また、請求項4に記載の太陽電池パネルの
取付構造によれば、継ぎ目から屋根面への雨水等の浸入
を簡単に防ぐことができるので、継ぎ目の防水性能を容
易に確保することができる。
According to the solar cell panel mounting structure of the fourth aspect, it is possible to easily prevent infiltration of rainwater or the like from the seam to the roof surface, so that the waterproof performance of the seam can be easily ensured. Can be.

【0036】さらに、請求項5に記載の太陽電池パネル
の取付構造によれば、太陽電池パネルと太陽電池パネル
間に設けられるカバーとの間から浸入してきた雨水等の
水を、屋根面に浸入させることなく、受部上を流して建
物の外部に排出することができる。つまり、支持レール
を樋としても利用することができる。このように支持レ
ールを樋として利用しても、屋根面への雨水等の浸入を
防ぐことができるので、防水性能を確保することができ
る。
Further, according to the solar cell panel mounting structure of the fifth aspect, water such as rainwater that has entered from between the solar cell panel and a cover provided between the solar cell panels is allowed to enter the roof surface. Without flowing, it can be discharged over the receiving part to the outside of the building. That is, the support rail can be used as a gutter. Even if the support rails are used as gutters, it is possible to prevent rainwater or the like from entering the roof surface, so that waterproof performance can be ensured.

【図面の簡単な説明】[Brief description of the drawings]

【図1】本発明の一実施形態におけるユニット式建物を
示す斜視図である。
FIG. 1 is a perspective view showing a unit-type building according to an embodiment of the present invention.

【図2】前記実施形態における太陽電池パネルの取付構
造を示す分解斜視図である。
FIG. 2 is an exploded perspective view showing a mounting structure of the solar cell panel in the embodiment.

【図3】前記実施形態における太陽電池パネルを示す斜
視図である。
FIG. 3 is a perspective view showing a solar cell panel in the embodiment.

【図4】前記実施形態における太陽電池パネルの取付構
造を示す断面図である。
FIG. 4 is a sectional view showing a mounting structure of the solar cell panel in the embodiment.

【図5】前記実施形態における支持レールの接続構造を
示す分解斜視図である。
FIG. 5 is an exploded perspective view showing a support rail connection structure in the embodiment.

【図6】前記実施形態における支持レールの棟側端面の
構造を示す分解斜視図である。
FIG. 6 is an exploded perspective view showing a structure of a ridge side end surface of the support rail in the embodiment.

【符号の説明】 13 太陽電池パネル 14A、14B 支持レール 31 受部であるパネル受部 31A 立ち上がり部である止水部 41 防水部材である防水テープ 44 凹部である筒状部 45 嵌合手段 46 棒状部材 47 カバー部材 81 ねじ 121 屋根面DESCRIPTION OF SYMBOLS 13 Solar panel 14A, 14B Support rail 31 Panel receiving part 31A as receiving part Water stopping part as rising part 41 Waterproof tape as waterproofing member 44 Cylindrical part as concave part 45 Fitting means 46 Rod shape Member 47 Cover member 81 Screw 121 Roof surface

Claims (5)

【特許請求の範囲】[Claims] 【請求項1】屋根面に沿って複数配設される太陽電池パ
ネルと、前記屋根面上に複数取り付けられ、この太陽電
池パネルの一側縁を支持する支持レールとを備えた太陽
電池パネルの取付構造であって、 前記支持レールは、その延出方向端部が他の支持レール
の延出方向端部と嵌合手段を介して接続されることを特
徴とする太陽電池パネルの取付構造。
1. A solar cell panel comprising: a plurality of solar cell panels disposed along a roof surface; and a plurality of support rails mounted on the roof surface and supporting one side edge of the solar cell panel. A mounting structure for a solar cell panel, wherein an end of the support rail in an extending direction is connected to an end of another support rail in an extending direction via a fitting means.
【請求項2】請求項1に記載の太陽電池パネルの取付構
造において、 前記嵌合手段は、前記支持レールの延出方向端部に形成
される凹部と、この凹部と嵌合する棒状部材とを備えて
いることを特徴とする太陽電池パネルの取付構造。
2. The mounting structure for a solar cell panel according to claim 1, wherein said fitting means includes a recess formed at an end of said support rail in an extending direction, and a rod-shaped member fitted into said recess. A mounting structure for a solar panel, comprising:
【請求項3】請求項2に記載の太陽電池パネルの取付構
造において、 前記凹部は、前記支持レールの端面を塞ぐカバー部材を
固定するねじが螺合可能に形成されていることを特徴と
する太陽電池パネルの取付構造。
3. The mounting structure for a solar cell panel according to claim 2, wherein the recess is formed such that a screw for fixing a cover member closing an end face of the support rail can be screwed. Mounting structure for solar panel.
【請求項4】請求項1〜請求項3のいずれかに記載の太
陽電池パネルの取付構造において、 前記支持レール間の継ぎ目には、当該継ぎ目から屋根面
への雨水等の浸入を防ぐための防水部材が設けられてい
ることを特徴とする太陽電池パネルの取付構造。
4. The mounting structure for a solar cell panel according to claim 1, wherein a seam between the support rails is provided to prevent rainwater or the like from entering the roof surface from the seam. A mounting structure for a solar cell panel, comprising a waterproof member.
【請求項5】請求項4に記載の太陽電池パネルの取付構
造において、 前記支持レールは、前記太陽電池パネルの一側縁を上面
で受ける長尺の受部と、この受部の長手方向に沿った両
端に設けられた立ち上がり部とを備え、 前記防水部材は、前記受部の上面に貼り付けられるとと
もに、その両端縁が前記各立ち上がり部の上端に達して
いることを特徴とする太陽電池パネルの取付構造。
5. The mounting structure for a solar cell panel according to claim 4, wherein the support rail has a long receiving portion for receiving one side edge of the solar cell panel on an upper surface, and a longitudinal direction of the receiving portion. And a rising portion provided at both ends along the solar cell, wherein the waterproofing member is attached to an upper surface of the receiving portion, and both end edges reach upper ends of the rising portions. Panel mounting structure.
JP35313099A 1999-12-13 1999-12-13 Mounting structure of solar-cell panel Withdrawn JP2001164713A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP35313099A JP2001164713A (en) 1999-12-13 1999-12-13 Mounting structure of solar-cell panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP35313099A JP2001164713A (en) 1999-12-13 1999-12-13 Mounting structure of solar-cell panel

Publications (1)

Publication Number Publication Date
JP2001164713A true JP2001164713A (en) 2001-06-19

Family

ID=18428773

Family Applications (1)

Application Number Title Priority Date Filing Date
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Country Link
JP (1) JP2001164713A (en)

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WO2008041466A1 (en) * 2006-10-02 2008-04-10 Showa Shell Sekiyu K. K. Fixing cover of solar cell module
WO2010024154A1 (en) * 2008-08-29 2010-03-04 シャープ株式会社 Solar cell module attaching structure, and solar cell device
WO2010055235A1 (en) * 2008-11-17 2010-05-20 Alain Poivet Device for supporting photovoltaic cell panels, support system and installed assembly
JP2010163815A (en) * 2009-01-16 2010-07-29 Think Energy:Kk Installation structure of solar cell module
EP2390597A1 (en) * 2010-05-26 2011-11-30 Mounting Systems GmbH Profile rail, support for framed solar modules integrated to a roof and solar module assembly
FR2966854A1 (en) * 2010-10-29 2012-05-04 3I Plus Supporting section for photovoltaic panel in roof of building, has top wall with thickness portion that extends between side walls such that screws are fixed either in middle axis or are laterally offset with respect to middle axis
EP2587185A1 (en) * 2011-10-24 2013-05-01 Hafenbahn GmbH & Co. KG Connection means for connecting the hollow profile with at least one nut for solar assemblies with one another, and hollow profile system for a solar assembly
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WO2014133431A1 (en) * 2013-02-28 2014-09-04 Soltech Energy Sweden Ab Light absorbing unit integrated in a roof construction
US8962972B2 (en) 2009-08-07 2015-02-24 Sharp Kabushiki Kaisha Structure installation rack, method for installing the same, structure connecting structure, connection member and method for installing this structure connecting structure, and solar cell system
EP2896909A3 (en) * 2013-11-29 2015-12-02 Christoph Schmidt Mounting system for photovoltaic modules
JP5948519B1 (en) * 2016-02-29 2016-07-06 株式会社吉岡 Drainage structure of gantry in installation structure of thin plate-like roof member
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US10277159B2 (en) 2008-11-17 2019-04-30 Kbfx Llc Finished multi-sensor units
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WO2008041466A1 (en) * 2006-10-02 2008-04-10 Showa Shell Sekiyu K. K. Fixing cover of solar cell module
JPWO2010024154A1 (en) * 2008-08-29 2012-01-26 シャープ株式会社 Solar cell module mounting structure and solar cell device
WO2010024154A1 (en) * 2008-08-29 2010-03-04 シャープ株式会社 Solar cell module attaching structure, and solar cell device
US8511008B2 (en) 2008-08-29 2013-08-20 Sharp Kabushiki Kaisha Solar cell module attachment structure and solar cell apparatus
JP5171956B2 (en) * 2008-08-29 2013-03-27 シャープ株式会社 Solar cell module mounting structure
JP2013047455A (en) * 2008-08-29 2013-03-07 Sharp Corp Solar battery module fitting structure and solar battery device
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US10277159B2 (en) 2008-11-17 2019-04-30 Kbfx Llc Finished multi-sensor units
WO2010055235A1 (en) * 2008-11-17 2010-05-20 Alain Poivet Device for supporting photovoltaic cell panels, support system and installed assembly
US8794583B2 (en) 2008-11-17 2014-08-05 Kbfx Llc Device for supporting photovoltaic cell panels, support system and installed assembly
US11283393B2 (en) 2008-11-17 2022-03-22 Kbfx Llc Movable building crown
US11063553B2 (en) 2008-11-17 2021-07-13 Kbfx Llc Solar carports, solar-tracking carports, and methods
JP2010163815A (en) * 2009-01-16 2010-07-29 Think Energy:Kk Installation structure of solar cell module
US8962972B2 (en) 2009-08-07 2015-02-24 Sharp Kabushiki Kaisha Structure installation rack, method for installing the same, structure connecting structure, connection member and method for installing this structure connecting structure, and solar cell system
EP2390597A1 (en) * 2010-05-26 2011-11-30 Mounting Systems GmbH Profile rail, support for framed solar modules integrated to a roof and solar module assembly
FR2966854A1 (en) * 2010-10-29 2012-05-04 3I Plus Supporting section for photovoltaic panel in roof of building, has top wall with thickness portion that extends between side walls such that screws are fixed either in middle axis or are laterally offset with respect to middle axis
EP2587185A1 (en) * 2011-10-24 2013-05-01 Hafenbahn GmbH & Co. KG Connection means for connecting the hollow profile with at least one nut for solar assemblies with one another, and hollow profile system for a solar assembly
JP3184187U (en) * 2012-12-10 2013-06-20 株式会社日本エコラボ Retaining stopper for solar panel
WO2014133431A1 (en) * 2013-02-28 2014-09-04 Soltech Energy Sweden Ab Light absorbing unit integrated in a roof construction
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EP3168177A1 (en) * 2015-11-13 2017-05-17 ROL Aktiebolag Diverter arm for a checkout device
JP5948519B1 (en) * 2016-02-29 2016-07-06 株式会社吉岡 Drainage structure of gantry in installation structure of thin plate-like roof member
JP2021002993A (en) * 2019-06-21 2021-01-07 王貞禄 Solar panel waterproof joint structure
JP7006723B2 (en) 2019-06-21 2022-01-24 王貞禄 Solar panel waterproof joint structure

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