JP2010059750A - Roofing material-type solar battery panel device - Google Patents

Roofing material-type solar battery panel device Download PDF

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JP2010059750A
JP2010059750A JP2008229355A JP2008229355A JP2010059750A JP 2010059750 A JP2010059750 A JP 2010059750A JP 2008229355 A JP2008229355 A JP 2008229355A JP 2008229355 A JP2008229355 A JP 2008229355A JP 2010059750 A JP2010059750 A JP 2010059750A
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solar cell
cell panel
ridge
guide plate
eaves
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JP5004909B2 (en
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Masaharu Ohori
正春 大堀
Hiroyoshi Takigawa
浩良 瀧川
Naoki Ito
直樹 伊藤
Yoshiyuki Suganuma
良之 菅沼
Shinsuke Miyamoto
慎介 宮本
Kazuo Suzuki
一生 鈴木
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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    • 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
    • F24S25/40Arrangement of stationary mountings or supports for solar heat collector modules using plate-like mounting elements, e.g. profiled or corrugated plates; Plate-like module frames 
    • 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
    • F24S25/60Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules
    • F24S25/61Fixation means, e.g. fasteners, specially adapted for supporting solar heat collector modules for fixing to the ground or to building structures
    • 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
    • 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
    • Y02B10/10Photovoltaic [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

Abstract

<P>PROBLEM TO BE SOLVED: To obtain a roofing material-type solar battery panel device which enables cooling carried out through ventilation and the discharge of rainwater to be properly applied to each of solar battery panels. <P>SOLUTION: This roofing material-type solar battery panel device includes a guide plate 12, which comprises a bottom portion 12A provided for each solar battery panel 1, extended on the backside of the solar battery panel 1 and forming a first ventilation flue F1 between a photovoltaic function body and a frame body, and a folded portion 12B, provided being bent into a U-shaped cross-section shape so as to surround a ridge-side end side of the solar battery panel 1 and forming a second ventilation flue F2. The guide plates 12 are laid in a plurality of tiers on the top surface of the folded portion 12B, in the direction of the pitch of a roof together with the placed solar battery panel 1, by superimposing the adjacent guide plates 12 on a ridge side. An eaves-side opening is formed from a first inclined portion 12a, provided at the eaves-side end of the bottom portion 12A and a ridge-side opening is formed, on the basis of a second inclined portion 12b which is provided at the eaves-side end of the top surface of the folded portion 12B. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、平盤状の太陽電池パネルが棟側端部に棟側に隣接する太陽電池パネルの軒側端部を重ねるようにして、屋根勾配方向に階段状に複数段敷設されて成る屋根材型太陽電池パネル装置に関するものであり、特に装置への雨水浸入防止機能と太陽電池パネル裏面の通風機能及び屋根面への防火機能に関するものである。   The present invention is a roof in which a flat solar cell panel is laid in a stepwise manner in a roof gradient direction so that an eaves side end of a solar cell panel adjacent to the ridge side overlaps a ridge side end. The present invention relates to a material-type solar cell panel device, and particularly relates to a function of preventing rainwater from entering the device, a ventilation function on the back surface of the solar cell panel, and a fireproof function to the roof surface.

太陽電池パネルが棟側端部に他の太陽電池パネルの一部を重ねるようにして、屋根勾配方向に階段状に複数段敷設される屋根材型太陽電池パネル装置においては、従来、軒先あるいは最下段の太陽電池パネルの軒側に通気口を設ける一方で、棟部あるいは最上段の太陽電池パネルの棟側に排出口を設け、通風路を形成していた。そのため、1段目の太陽電池パネルを冷却することにより空気の温度が上昇し、さらに2段、3段の太陽電池パネルを冷却していくと最上段に至っては空気の温度が大幅に上昇してしまい冷却効果が充分でなかった。また、従来、太陽電池パネルの連結部にレールや樋などを設け雨水が屋根面へ漏水することを防止していた。さらにまた、板金上に太陽電池パネルを設ける等して防火対策を施していた。つまり、防水、通風冷却、防火について個々に対応していた。   Conventionally, in a roof material type solar cell panel apparatus in which a plurality of solar cell panels are laid in a staircase pattern in the roof gradient direction so that a part of another solar cell panel overlaps the edge of the ridge side, While providing a vent on the eaves side of the lower solar cell panel, an exhaust port was provided on the ridge or the ridge side of the uppermost solar cell panel to form a ventilation path. Therefore, the temperature of the air rises by cooling the first-stage solar cell panel, and when the second-stage and third-stage solar cell panels are further cooled, the temperature of the air greatly rises up to the uppermost stage. The cooling effect was not sufficient. Further, conventionally, rails or fences have been provided at the connecting portions of the solar cell panels to prevent rainwater from leaking to the roof surface. Furthermore, fire prevention measures have been taken by providing a solar cell panel on the sheet metal. In other words, waterproofing, ventilation cooling, and fire prevention were individually handled.

例えば、下記特許文献1に提案された太陽電池付き屋根板は、表面に太陽電池モジュールを被着し、裏面に断熱性裏打材を接着した金属屋根板であって、断熱性裏打材の接着面に屋根勾配方向の通気凹溝を列設してなる。このような構成の太陽電池付き屋根板においては、熱伝導性の良い金属屋根板の裏面に軒から棟への通気流路が形成される。この通気流は基本的には、建物屋根の軒から棟への恒常的な大きな自然対流もしくは風に基づいており、太陽電池モジュールを被着した金属屋根板からの熱放散を把え棟部から外部へ排気する。これによって太陽電池モジュールの高温化を防止する。   For example, a roof plate with a solar cell proposed in Patent Document 1 below is a metal roof plate in which a solar cell module is attached to the front surface and a heat insulating backing material is bonded to the back surface, and the bonding surface of the heat insulating backing material A ventilation groove in the direction of the roof slope is arranged in a row. In the roof plate with a solar cell having such a configuration, a ventilation channel from the eaves to the ridge is formed on the back surface of the metal roof plate with good thermal conductivity. This ventilation flow is basically based on constant natural convection or wind from the eaves of the building roof to the wing, and grasps the heat dissipation from the metal roof plate to which the solar cell module is attached. Exhaust outside. This prevents the high temperature of the solar cell module.

また、下記特許文献2に提案された太陽電池付き屋根パネルは、屋根パネルとその上面側に取り付けた太陽電池モジュールとの間や、屋根パネルを介して太陽電池モジュールに近接する位置に、通気空間を形成し、この通気空間を、屋根パネルの軒側の係合部に開口した気流口、および、棟側の係止部近傍に開口した開放口に空気流通可能に連通させている。このような構成の太陽電池付き屋根パネルにおいては、屋根パネル単位で、軒側から棟側への気流を形成して、太陽電池モジュールの太陽電池セルを効率良く冷却することができ、同一の屋根に設けられている他の屋根パネルとの間に冷却用の気流を形成しなくても、太陽電池セルに高い太陽光発電効率を確保できる。   Moreover, the roof panel with a solar cell proposed in the following Patent Document 2 is provided with a ventilation space between the roof panel and the solar cell module attached to the upper surface side, or in a position close to the solar cell module through the roof panel. The ventilation space communicates with an air flow opening opened in the eaves side engagement portion of the roof panel and an open opening opened in the vicinity of the locking portion on the ridge side so as to allow air flow. In the roof panel with a solar cell having such a configuration, an air flow from the eave side to the ridge side can be formed for each roof panel, and the solar cells of the solar cell module can be efficiently cooled. Even if a cooling airflow is not formed between the other roof panels provided in the solar cell, high photovoltaic power generation efficiency can be secured in the solar battery cell.

さらにまた、下記特許文献3に提案された太陽電池パネルの取付構造は、パネルは、ほぼ長方形状の枠体としての外枠と、この外枠に収容される太陽電池モジュールを取付けた内枠とで構成され、外枠の左竪框が、内枠をスライドして取付け、且つ、取外し可能に構成されている。通常は、外枠に内枠を挿入して、ビス等で左竪框の側壁と框本体とが固着されている。太陽電池モジュールの点検、修理及び交換の場合には、ビス等の緊締を解除し、外枠から、その側壁を引き離すようにスライドさせることにより、太陽電池モジュールを取出すことができるので、太陽電池モジュールの点検、修理及び交換を迅速に行うことができる。   Furthermore, in the solar cell panel mounting structure proposed in Patent Document 3 below, the panel includes an outer frame as a substantially rectangular frame, and an inner frame to which a solar cell module accommodated in the outer frame is mounted. The port side of the outer frame is configured to be slidably mounted on the inner frame and to be removable. Usually, the inner frame is inserted into the outer frame, and the side wall of the port and the bag main body are fixed with screws or the like. In the case of inspection, repair, and replacement of the solar cell module, the solar cell module can be taken out by releasing the tightening of screws, etc., and sliding the side wall away from the outer frame. Can be quickly inspected, repaired and replaced.

特許第3322812号公報Japanese Patent No. 3322812 特開2000−17803号公報JP 2000-17803 A 特開2000−27395号公報JP 2000-27395 A

太陽電池パネル装置では、太陽光を太陽電池パネルが受けることにより、発電すると同時に温度上昇して裏面の空気が暖められて温度が上昇する。結晶系の太陽電池パネルは温度が上昇すると発電効率が低下する特性をもっており、裏面の空気を通風することにより温度上昇を抑制している。   In the solar cell panel device, when the solar cell panel receives sunlight, the temperature rises simultaneously with power generation, and the air on the back surface is warmed to increase the temperature. Crystalline solar cell panels have a characteristic that power generation efficiency decreases when the temperature rises, and the temperature rise is suppressed by ventilating the air on the back surface.

従来の温度抑制方法は、最も軒側の太陽電池パネル部の軒側に通風口を設け、太陽電池パネルの裏面を通風し、棟側まで複数段の太陽電池パネルの通風を連通して最上段の太陽電池パネルの棟側から放出可能に通風通路を設けるものであり、熱的には1段目の太陽電池パネルの入口温度は低いが2段目以降の入口温度は高くなり、効果的な太陽電池パネルの冷却効果は得られ難かった。   The conventional temperature control method is to provide a ventilation port on the eave side of the solar cell panel on the most eave side, vent the back surface of the solar cell panel, and communicate the ventilation of multiple levels of solar cell panels to the building side. The ventilation passage is provided so that the solar cell panel can be discharged from the building side, and the entrance temperature of the first-stage solar cell panel is low, but the entrance temperature after the second stage is high, which is effective. The cooling effect of the solar cell panel was difficult to obtain.

また、従来、防水手段として太陽電池パネル間のカバーや内部に樋やレール等を設けて雨水が入り難い構成にしたり、内部に漏れた雨水を樋やレール内に案内して排水する方法が取られていたが、風を伴った雨水については圧力と空気流により雨水が飛び跳ねたり逆流する場合があり、このような雨水に対してはあまり有効なものではなかったので、より効果的な漏水対策が望まれていた。   Conventionally, as a waterproofing method, a cover between solar battery panels or a tub or rail is provided inside to prevent rainwater from entering, or rainwater leaking inside is guided into the tub or rail and drained. However, for rainwater with wind, rainwater may jump or reverse due to pressure and air flow, and it was not very effective against such rainwater, so more effective measures against water leakage Was desired.

さらに、従来、防火機能を持たせるには、上記構造とは別に新たに板金や耐火部材で太陽電池パネル下部を覆う必要があった。そして、上記冷却、防水及び防火の各々課題を解決するには多くの部品が必要であり構造も複雑となり、コストが増大するので改善が望まれていた。   Furthermore, conventionally, in order to provide a fireproof function, it was necessary to cover the lower part of the solar cell panel with a sheet metal or a fireproof member separately from the above structure. In order to solve each of the above-mentioned problems of cooling, waterproofing and fireproofing, many parts are required, the structure is complicated, and the cost is increased.

本発明は、上記に鑑みてなされたものであって、太陽電池パネル各々に対して、通風による冷却と雨水の排出が良好に行われ、暖められた空気が上昇するにともない加熱されて高温となってしまうことがなく、各々太陽電池パネルの部分に侵入した雨水が下段に流れる際に累積して大量となってしまうことがない屋根材型太陽電池パネル装置を得ることを目的とする。さらに、本発明は、上記に加えて部品点数を多くすることなく、効果的な防火機能を有する屋根材型太陽電池パネル装置を得ることを目的とする。   The present invention has been made in view of the above, and for each solar cell panel, cooling by ventilation and discharge of rainwater are performed well, and the heated air is heated and heated as the temperature rises. It is an object of the present invention to provide a roof type solar cell panel device that does not become a large amount when rainwater that has entered each solar cell panel flows downward. Furthermore, an object of the present invention is to obtain a roof material type solar cell panel device having an effective fire prevention function without increasing the number of components in addition to the above.

上述した課題を解決し、目的を達成するために、本発明の屋根材型太陽電池パネル装置は、平盤状の光発電機能体と、棟側枠、軒側枠および一対の左右枠から成り光発電機能体の外周縁部を覆う枠体とを有する太陽電池パネルと、太陽電池パネル毎に設けられ、太陽電池パネルの裏面側に全面にわたって広がり、太陽電池パネルを載置して、光発電機能体及び枠体との間に第一の通風路を形成する底部、及び底部の棟側に太陽電池パネルの棟側端辺を囲むように断面コ字形に折り曲げられて設けられ、太陽電池パネルの棟側端辺の周囲に第二の通風路を形成する折返し部を有する案内板と、案内板を屋根面から支持する案内板固定具とを備え、案内板は、断面コ字形の折返し部の上面に、棟側に隣接する案内板の底部の軒側端部とを重ねて合わせて、載置した太陽電池パネルとともに屋根勾配方向に複数段に敷設され、案内板と棟側に隣接する案内板とが重なり合う重合部において、案内板の軒側端部の軒側枠に対向する所定幅部分が、軒側枠に沿って断続的に下方に折り曲げられて形成された第一の傾斜部と、隣り合う第一の傾斜部間に形成された第一の平面部とが設けられ、第一の傾斜部が軒側枠との間に形成する隙間により、外部と第一の通風路とを連通する軒側開口部が形成され、折返し部の上面の軒側端部の棟側枠に対向する所定幅部分が、棟側枠に沿って断続的に下方に折り曲げられて形成された第二の傾斜部と、隣り合う第二の傾斜部間に形成された第二の平面部とが設けられ、第二の傾斜部が棟側枠と当接して第二の平面部と棟側枠との間に隙間が形成されることにより、外部と第二の通風路とを連通する棟側開口部が形成され、棟側枠の一部に第一の通風路と第二の通風路とを連通する開口部が設けられていることを特徴とする。   In order to solve the above-described problems and achieve the object, the roofing solar cell panel device of the present invention comprises a flat-plate-like photovoltaic power generation unit, a ridge side frame, an eaves side frame, and a pair of left and right frames. Photovoltaic power generation with a solar cell panel having a frame covering the outer peripheral edge of the photovoltaic power generation unit, and provided for each solar cell panel, extending over the entire back surface side of the solar cell panel and mounting the solar cell panel The solar cell panel is formed by being bent in a U-shaped cross section so as to surround the ridge side end of the solar cell panel on the ridge side of the bottom portion forming the first ventilation path between the functional body and the frame, and the ridge side of the bottom portion. A guide plate having a folded portion that forms a second ventilation path around an edge of the ridge side of the ridge, and a guide plate fixture that supports the guide plate from the roof surface, the guide plate having a U-shaped folded portion Overlay the top edge of the eaves side edge at the bottom of the guide plate adjacent to the ridge side. In the overlapping section where the guide plate and the guide plate adjacent to the ridge are overlapped, the guide plate and the guide plate adjacent to the building side are opposed to the eave side frame of the guide plate. A first inclined portion formed by intermittently bending the predetermined width portion along the eaves side frame and a first flat portion formed between adjacent first inclined portions. An eaves-side opening that communicates the outside with the first ventilation path is formed by a gap formed between the first inclined portion and the eaves-side frame. A second flat surface formed between a second inclined portion formed by intermittently bending the predetermined width portion facing the side frame downward along the ridge-side frame and an adjacent second inclined portion. And the second inclined portion is in contact with the ridge-side frame so that a gap is formed between the second plane portion and the ridge-side frame. Thus, a ridge-side opening that communicates the outside and the second ventilation path is formed, and an opening that communicates the first ventilation path and the second ventilation path is provided in a part of the ridge-side frame. It is characterized by that.

この発明の屋根材型太陽電池パネル装置によれば、案内板が、太陽電池パネル毎に設けられ、太陽電池パネルの裏面側に全面にわたって広がり、太陽電池パネルを載置して、光発電機能体及び枠体との間に第一の通風路を形成する底部、及び底部の棟側に太陽電池パネルの棟側端辺を囲むように断面コ字形に折り曲げられて設けられ、太陽電池パネルの棟側端辺の周囲に第二の通風路を形成する折返し部を有しており、案内板の軒側端部の軒側枠に対向する所定幅部分に第一の傾斜部と第一の平面部とが設けられ、第一の傾斜部が軒側枠との間に形成する隙間により、外部と第一の通風路とを連通する軒側開口部が形成され、折返し部の上面の軒側端部の棟側枠に対向する所定幅部分に第二の傾斜部と第二の平面部とが設けられ、第二の傾斜部が棟側枠と当接して第二の平面部と棟側枠との間に隙間が形成されることにより、外部と第二の通風路とを連通する棟側開口部が形成され、棟側枠の一部に第一の通風路と第二の通風路とを連通する開口部が設けられているので、太陽光を太陽電池パネルが受けることにより発電すると、太陽電池パネルの温度が上昇し、裏面の空気が暖められて高温となり、軽くなった空気は棟側開口部から屋外に排出され、これにともない軒側開口部から冷えた空気が引き込まれるので、太陽電池パネル1枚毎に独立した冷却風通路が形成され、暖められた空気が上昇するにともない累積して加熱されて高温となってしまうことがなく、太陽電池パネルの良好な冷却が行われ温度上昇が抑制される。   According to the roof type solar cell panel device of the present invention, the guide plate is provided for each solar cell panel, spreads over the entire back surface side of the solar cell panel, the solar cell panel is placed, and the photovoltaic function body The bottom of the first air passage between the frame and the frame, and the ridge of the solar cell panel, which is provided on the ridge side of the bottom by being folded into a U-shaped cross section so as to surround the ridge side edge of the solar cell panel. The first inclined portion and the first plane are provided in a predetermined width portion facing the eaves side frame of the eaves side end portion of the guide plate, having a folded portion that forms a second ventilation path around the side end side. And an eaves-side opening that communicates the outside with the first ventilation path is formed by a gap formed between the eaves-side frame and the first inclined portion, and the eave side on the upper surface of the folded portion A second inclined portion and a second flat portion are provided in a predetermined width portion facing the ridge-side frame at the end, and the second inclined portion Is in contact with the ridge-side frame and a gap is formed between the second flat portion and the ridge-side frame, so that a ridge-side opening that communicates the outside with the second ventilation path is formed. Since the opening part which connects the 1st ventilation path and the 2nd ventilation path is provided in a part of the frame, if the solar panel receives power, the solar panel temperature rises. The air on the back is warmed and becomes hot, and the lightened air is discharged to the outside from the ridge side opening, and the cold air is drawn from the eaves side opening accordingly, so each solar panel is independent The cooling air passage is formed, and the heated air does not accumulate and heat up as the heated air rises, and the solar cell panel is cooled well and the temperature rise is suppressed.

さらに、案内板は、太陽電池パネルの裏面側に全面にわたって広がり、太陽電池パネルを載置して、光発電機能体及び枠体との間に第一の通風路を形成する底部、及び底部の棟側に太陽電池パネルの棟側端辺を囲むように断面コ字形に折り曲げられて設けられ、太陽電池パネルの棟側端辺の周囲に第二の通風路を形成する折返し部から成るので、枠体を利用して光発電機能体の裏面に容易に第一の通風路を形成することができ、これにより、案内板の形状が簡素化され、案内板が板金等により容易に作製可能となる。さらに、太陽電池パネルの裏面に第一の通風路を形成する際に、太陽電池パネルと案内板との間にスペーサを挟み込んだり凸部を形成したりする必要がないので、装置を薄くすることができる。   Further, the guide plate extends over the entire back surface side of the solar cell panel, and the solar cell panel is placed on the bottom portion that forms the first ventilation path between the photovoltaic power generation function body and the frame body. Since it is provided on the ridge side by being folded into a U-shaped cross-section so as to surround the ridge side edge of the solar cell panel, and is formed of a folded portion that forms a second ventilation path around the ridge side edge of the solar cell panel, The first ventilation path can be easily formed on the back surface of the photovoltaic power generation function body using the frame, thereby simplifying the shape of the guide plate and making the guide plate easily made of sheet metal or the like. Become. Furthermore, when forming the first ventilation path on the back surface of the solar cell panel, there is no need to insert a spacer or form a convex portion between the solar cell panel and the guide plate, so the device is made thin. Can do.

また、雨水が強風を伴うものである場合、雨水は空気圧力に沿って案内板と太陽電池パネルの間に侵入して上記空気流と同様な経路を進もうとする。逆に案内板の棟側の棟側開口部からも雨水が浸入する場合もある。しかしながら、この発明の屋根材型太陽電池パネル装置によれば、第一の傾斜部が軒側枠との間に形成する隙間により、外部と第一の通風路とを連通する軒側開口部が形成され、折返し部の上面の軒側端部の棟側枠に対向する所定幅部分に第二の傾斜部と第二の平面部とが設けられ、第二の傾斜部が棟側枠と当接して第二の平面部と棟側枠との間に隙間が形成されることにより、外部と第二の通風路とを連通する棟側開口部が形成され、棟側枠の一部に第一の通風路と第二の通風路とを連通する開口部が設けられているので、軒側開口部から雨水が入り込んだ場合も、棟側開口部から雨水が入り込んだ場合も、いずれも雨水は装置内に滞ることなく速やかに外部に排出される。これにより、雨水の屋根面への浸水を防止することができる。   In addition, when rainwater is accompanied by strong winds, rainwater penetrates between the guide plate and the solar cell panel along the air pressure and tries to follow the same path as the air flow. Conversely, rainwater may enter from the ridge side opening on the ridge side of the guide plate. However, according to the roof type solar cell panel device of the present invention, the eaves side opening that communicates the outside with the first ventilation path is formed by the gap formed between the first inclined portion and the eaves side frame. The second inclined portion and the second flat portion are provided in a predetermined width portion that is formed and faces the ridge-side frame at the eave-side end on the upper surface of the folded portion, and the second inclined portion is in contact with the ridge-side frame. A gap is formed between the second flat surface portion and the wing-side frame so that a ridge-side opening that communicates the outside with the second ventilation path is formed, and the first ridge-side frame is formed in a part of the wing-side frame. Since there is an opening that connects the first ventilation path and the second ventilation path, both rainwater enters from the eaves-side opening and rainwater enters from the ridge-side opening. Is quickly discharged outside without stagnation in the apparatus. Thereby, inundation to the roof surface of rainwater can be prevented.

さらにまた、案内板が太陽電池パネル裏面全体を覆っているため、案内板を表面処理鋼板やステンレス鋼板あるいは耐火性材料等の不燃材で作製することにより、近隣火災での飛び火により太陽電池パネルが破壊しても、屋根面への延焼が防止することができる。   Furthermore, since the guide plate covers the entire back surface of the solar cell panel, the solar cell panel can be produced by a spark from a nearby fire by making the guide plate with a non-combustible material such as a surface-treated steel plate, a stainless steel plate, or a refractory material. Even if destroyed, the spread of fire on the roof surface can be prevented.

以下に、本発明にかかる屋根材型太陽電池パネル装置の実施の形態を図面に基づいて詳細に説明する。なお、この実施の形態によりこの発明が限定されるものではない。   Hereinafter, embodiments of a roof material type solar cell panel device according to the present invention will be described in detail with reference to the drawings. Note that the present invention is not limited to the embodiments.

実施の形態
図1は本発明に係る屋根材型太陽電池パネル装置の屋根勾配方向に階段状に複数段敷設された太陽電池パネルの様子を示す断面図である。図2は図1のA部分を拡大して太陽電池パネルの屋根勾配方向に重なる重合部の詳細な構造を示す拡大断面図である。
Embodiment FIG. 1 is a cross-sectional view showing a state of a solar cell panel laid in a plurality of steps in a roof gradient direction of a roof material type solar cell panel device according to the present invention. FIG. 2 is an enlarged cross-sectional view showing a detailed structure of a superposed portion that is enlarged from the portion A in FIG. 1 and overlaps the roof gradient direction of the solar cell panel.

はじめに概略の構造と動作を説明し、次いで詳細な構造と動作を説明する。図1および図2に示すように、平盤状の太陽電池パネル1が屋根勾配方向に階段状に複数段敷設されている。なお、太陽電池パネル1は、屋根勾配と直交する方向には、面位置を合わせて複数並べて敷設されている。屋根は、勾配方向に沿って延びる垂木18の上に野地板17が取り付けられ、さらに野地板17の上に防水シート16が葺かれて構成されている。尚、このように構成された屋根は、図1および図2では水平に記載されているが、実際には軒側(図の左側)を低くして、反対に棟側(図の右側)を高くして、例えば約30度傾いている。本実施の形態のような屋根材型太陽電池パネル装置においては、平盤状の太陽電池パネル1は、屋根瓦のように上下端の一部を隣接する他の太陽電池パネル1と一部重ねるようにして屋根勾配方向に階段状に複数段敷設される。すなわち、太陽電池パネル1は、自らの棟側端部に、棟側に隣接する他の太陽電池パネル1の軒側端部を重ねるようにして複数段敷設されている。   First, the general structure and operation will be described, and then the detailed structure and operation will be described. As shown in FIGS. 1 and 2, a flat plate-like solar cell panel 1 is laid in a plurality of steps in a stepwise manner in the roof gradient direction. Note that a plurality of solar cell panels 1 are laid in the direction orthogonal to the roof gradient in line with the surface position. The roof is configured such that a field board 17 is attached on a rafter 18 extending along a gradient direction, and a waterproof sheet 16 is further spread on the field board 17. The roof constructed in this way is shown horizontally in FIGS. 1 and 2, but in reality, the eave side (left side of the figure) is lowered and the ridge side (right side of the figure) is opposed. For example, it is inclined about 30 degrees. In the roof material type solar cell panel device as in the present embodiment, the flat plate-like solar cell panel 1 partially overlaps the other solar cell panels 1 adjacent to each other at the upper and lower ends like a roof tile. In this way, a plurality of steps are laid in a staircase pattern in the roof slope direction. That is, the solar cell panel 1 is laid in a plurality of stages so as to overlap the eaves side end of another solar cell panel 1 adjacent to the ridge side on the own ridge side end.

太陽電池パネル1は、太陽電池パネル1の裏面を覆う案内板12及びこの案内板12を支持する案内板固定具14により屋根面19(防水シート16)から支持されている。案内板固定具14は、押さえ金具15及び固定ネジ15aにより屋根面19に固定されている。固定ネジ15aは、防水シート16及び野地板17を貫通して垂木18に締結されている。   The solar cell panel 1 is supported from the roof surface 19 (waterproof sheet 16) by a guide plate 12 that covers the back surface of the solar cell panel 1 and a guide plate fixture 14 that supports the guide plate 12. The guide plate fixture 14 is fixed to the roof surface 19 by a presser fitting 15 and a fixing screw 15a. The fixing screw 15 a passes through the waterproof sheet 16 and the field plate 17 and is fastened to the rafter 18.

本実施の形態の特徴として、太陽電池パネル1毎に独立した案内板12が設けられている。案内板12は、その上面に太陽電池パネル1を載置するとともに太陽電池パネル1の裏面を全面的に覆い、太陽電池パネル1との間に第一の通風路F1を形成する。さらに案内板12は、太陽電池パネル1の軒側端部を囲むようにして覆い、太陽電池パネル1の軒側端部の周囲に第二の通風路F2を形成する。   As a feature of the present embodiment, an independent guide plate 12 is provided for each solar cell panel 1. The guide plate 12 mounts the solar cell panel 1 on the upper surface thereof, covers the entire back surface of the solar cell panel 1, and forms a first ventilation path F <b> 1 with the solar cell panel 1. Further, the guide plate 12 covers the eaves side end of the solar cell panel 1 so as to surround the eaves side end of the solar cell panel 1, and forms a second ventilation path F <b> 2 around the eaves side end of the solar cell panel 1.

そして、太陽電池パネル1の軒側端部において、太陽電池パネル1と案内板12との間に第一の通風路F1に連通する軒側開口部(案内板12に形成された第一の傾斜部12aと太陽電池パネル1との間に形成される隙間)が設けられており、一方、太陽電池パネル1の棟側端部において、案内板12の太陽電池パネル1の軒側端部を覆う部分の上部にて、太陽電池パネル1と案内板12との間に第二の通風路F2に連通する棟側開口部(案内板12の第二の平面部12dと太陽電池パネル1との間に形成される隙間)が設けられている。つまり、太陽電池パネル1毎に軒側開口部と棟側開口部とが設けられている。   And in the eaves side edge part of the solar cell panel 1, between the solar cell panel 1 and the guide plate 12, the eaves side opening part (1st inclination formed in the guide plate 12) connected to the 1st ventilation path F1. On the other hand, the eaves side end of the solar cell panel 1 of the guide plate 12 is covered at the ridge side end of the solar cell panel 1. In the upper part of the portion, the ridge-side opening (between the second flat surface portion 12d of the guide plate 12 and the solar cell panel 1) communicates with the second ventilation path F2 between the solar cell panel 1 and the guide plate 12. Are formed). That is, the eaves side opening and the ridge side opening are provided for each solar cell panel 1.

概略の動作を説明する。図中、一点鎖線矢印は空気の流れを示す。図2においては、太陽電池パネル1回りの空気の循環を軒側と棟側とに分割して図示している。ここで、空気の循環は各太陽電池パネル1の周囲に同じように発生するものであり、図2中2箇所のBで示す位置を同じ位置として1つの太陽電池パネル1回りの循環動作と考えてもよい。   An outline of the operation will be described. In the figure, a one-dot chain line arrow indicates the flow of air. In FIG. 2, the circulation of air around the solar cell panel 1 is divided into the eaves side and the building side. Here, air circulation occurs in the same way around each solar cell panel 1, and it is considered as a circulation operation around one solar cell panel 1 with the positions indicated by B in FIG. May be.

太陽電池パネル1が太陽光を受光すると太陽電池パネル1の温度が上昇する。これにより、太陽電池パネル1の裏面(図2中B)の空気が暖められて高温となる。高温となり軽くなった空気は棟側開口部から屋外(図2中C)に排出される。このとき、太陽電池パネル1の裏面(図2中B)の空気が気圧を保持しようと動作するため、軒側開口部から屋外(図2中D)の空気が太陽電池パネル1の裏面(図2中B)に吸い込まれる。このようにして太陽電池パネル1の1枚毎に裏面を流通する空気の循環が形成される。この空気の循環により太陽電池パネル1の温度上昇が抑制される。   When the solar cell panel 1 receives sunlight, the temperature of the solar cell panel 1 rises. Thereby, the air of the back surface (B in FIG. 2) of the solar cell panel 1 is warmed and becomes high temperature. The air that has become hot and lighter is discharged to the outside (C in FIG. 2) from the ridge-side opening. At this time, since the air on the back surface (B in FIG. 2) of the solar cell panel 1 operates so as to maintain the atmospheric pressure, the outdoor air (D in FIG. 2) from the eaves-side opening becomes the back surface of the solar cell panel 1 (FIG. 2). 2) B). In this way, a circulation of air flowing through the back surface is formed for each one of the solar cell panels 1. This circulation of air suppresses the temperature rise of the solar cell panel 1.

次に、詳細な構造を説明する。図3は太陽電池パネル1の平面図である。図4は図3のF−F線に沿う矢視断面図である。図5は図4の軒側枠と棟側枠の部分を拡大して示す部分拡大図である。図6は太陽電池パネル1の正面図である。   Next, a detailed structure will be described. FIG. 3 is a plan view of the solar cell panel 1. 4 is a cross-sectional view taken along the line FF in FIG. FIG. 5 is a partial enlarged view showing the eaves side frame and the ridge side frame in FIG. 4 in an enlarged manner. FIG. 6 is a front view of the solar cell panel 1.

太陽電池パネル1は、方形の平盤形態に作製された光発電機能体である基盤2と、基盤2の外周縁部に枠状に装着された枠体3とから構成されている。   The solar cell panel 1 is composed of a base plate 2 that is a photovoltaic power generation unit manufactured in the form of a square flat plate, and a frame body 3 that is attached to the outer peripheral edge of the base plate 2 in a frame shape.

基盤2は、充填材層を形成する透明加熱融着材シートにダブ線により電気的に直列接続された複数の太陽電池セル2aを挟んだものを、表面保護基板と耐候性フィルム等からなる裏面保護材との間に挟持し、その後真空引きしながら加熱して、太陽電池セル2a、表面保護基板および裏面保護材を透明加熱融着材シートにより融着一体化して、方形の平盤形態に構成されている。枠体3は、それぞれアルミ材押し出し成型の後、表面処理されて作製された棒状の軒側枠4、棟側枠5および一対の左右枠6により方形の枠状に構成されている。   The base 2 is a back surface composed of a surface protection substrate and a weather resistant film, with a plurality of solar cells 2a electrically connected in series by a dove wire sandwiched between a transparent heat-fusing material sheet forming a filler layer. It is sandwiched between the protective materials, and then heated while evacuating, and the solar cells 2a, the front surface protective substrate and the back surface protective material are fused and integrated with a transparent heat fusion material sheet to form a rectangular flat plate It is configured. The frame 3 is formed in a rectangular frame shape by a bar-shaped eaves side frame 4, a ridge side frame 5 and a pair of left and right frames 6 which are each prepared by surface treatment after extrusion molding of an aluminum material.

図5において、軒側枠4は、全長にわたって同じ断面形状の棒状に成型されており、断面コの字形を成し太陽電池パネル1の外縁部を挟み込むコ字状部4aと、コ字状部4aからパネル裏面側に延長するようにして形成された延長部4bと、この延長部4bの内側に形成された中空の盗み部4cと、コ字状部4aの背面に開口を下方に向けて断面鍵状に形成された上角鍵部4eとから構成されている。つまり、軒側枠4は、ソリッド型(押出し成形の開放形)とされ、軒側の面(被固定面)に全長にわたって断面の一部を開放形状にした開放部4dが設けられた断面矩形の盗み部4cを有する棒状に形成されている。盗み部4c内に5枚の固定用駒(ネジ取付け部材)8を収納している。固定用駒8は、盗み部4cに沿ってスライド可能とされており(図6参照)、雌ネジが形成されていて、後述する第一の固定爪12eおよび第二の固定爪12h(図7参照)に固定ネジ13によって締結される(図2、図9参照)。   In FIG. 5, the eaves-side frame 4 is formed into a bar shape having the same cross-sectional shape over the entire length, has a U-shaped cross-section and sandwiches the outer edge of the solar cell panel 1, and the U-shaped portion An extension portion 4b formed so as to extend from 4a to the back side of the panel, a hollow stealing portion 4c formed inside the extension portion 4b, and an opening facing downward on the back surface of the U-shaped portion 4a The upper corner key portion 4e is formed in a key shape in cross section. That is, the eaves side frame 4 is a solid type (open shape of extrusion molding), and is a rectangular cross section provided with an open portion 4d in which a part of the cross section is opened over the entire length on the eave side surface (fixed surface). It is formed in a rod shape having a stealing portion 4c. Five fixing pieces (screw mounting members) 8 are housed in the stealing portion 4c. The fixing piece 8 is slidable along the stealing portion 4c (see FIG. 6), has a female screw formed, and a first fixing claw 12e and a second fixing claw 12h (described later) (see FIG. 7). (See FIG. 2 and FIG. 9).

一方、棟側枠5は、断面コ字形を成し太陽電池パネル1の外縁部を挟み込むコ字状部5aと、コ字状部5aからパネル裏面側に延長するようにして形成された延長部5bと、この延長部5bの下端から内方に延びて形成された内フランジ部5cと、内フランジ部5cの下端に形成された棟側枠開口溝5dと、コ字状部5aの背面から外方に断面鍵状に形成された上角鍵部5eとから構成されている。棟側枠開口溝5dは、棟側枠5の下端に設けられた切り欠きであり、棟側枠5の長手方向に複数形成されている。この棟側枠開口溝5dは、第一の通風路F1と第二の通風路F2とを連通する目的で設けられている。尚、本実施の形態においては、加工を容易とするために、また雨水の水はけを良くするために、棟側枠5の下端を切り欠いて、第一の通風路F1と第二の通風路F2とを連通する開口を設けているが、棟側枠5に穴を開ける等して第一の通風路F1と第二の通風路F2とを連通させてもよい。   On the other hand, the ridge-side frame 5 has a U-shaped cross-section and sandwiches the outer edge portion of the solar cell panel 1, and an extension formed so as to extend from the U-shaped portion 5a to the back side of the panel. 5b, an inner flange portion 5c formed inwardly extending from the lower end of the extension portion 5b, a ridge-side frame opening groove 5d formed at the lower end of the inner flange portion 5c, and a rear surface of the U-shaped portion 5a. The upper corner key portion 5e is formed in a key shape in cross section on the outside. The ridge-side frame opening groove 5 d is a notch provided at the lower end of the ridge-side frame 5, and a plurality of ridge-side frame opening grooves 5 d are formed in the longitudinal direction of the ridge-side frame 5. The ridge-side frame opening groove 5d is provided for the purpose of communicating the first ventilation path F1 and the second ventilation path F2. In the present embodiment, in order to facilitate processing and to improve drainage of rainwater, the lower end of the ridge-side frame 5 is cut away, and the first ventilation path F1 and the second ventilation path. Although the opening which connects F2 is provided, you may make the 1st ventilation path F1 and the 2nd ventilation path F2 communicate, for example by making a hole in the ridge side frame 5.

尚、左右枠6は、詳細を図示しないが、棟側枠5と概略同様な断面形状を成し、太陽電池パネル1の外縁部を挟み込むコ字状部と、コ字状部の背面に開口を下方に向けて断面鍵状に形成された上角鍵部6eを有している(図6参照)。   Although the details of the left and right frames 6 are not shown, the left and right frames 6 have substantially the same cross-sectional shape as the ridge-side frame 5, and have a U-shaped portion that sandwiches the outer edge portion of the solar cell panel 1 and an opening at the back of the U-shaped portion. The upper corner key portion 6e is formed in a key shape in cross section with the surface facing downward (see FIG. 6).

そして、枠体部3に関しては、基盤2の上部縁部が棟側枠5のコ字状部5a内にシール部材を挟み込んで圧入され、基盤2の下部縁部が軒側枠4のコ字状部4a内にシール部材を挟み込んで圧入され、さらに、基盤2の左右縁部がそれぞれ左右枠6のコ字状部にシール部材を挟み込んで圧入される。ついで、取付ネジ(図示せず)がそれぞれ左右枠6の両端のネジ穴を介して軒側および棟側枠4、5のネジ穴に締着されて、図3に示される太陽電池パネル1が組み立てられる。   With respect to the frame body portion 3, the upper edge of the base 2 is press-fitted with a seal member sandwiched in the U-shaped portion 5 a of the ridge side frame 5, and the lower edge of the base 2 is the U-shape of the eaves side frame 4. The seal member is sandwiched and press-fitted into the shaped portion 4a, and the left and right edge portions of the base 2 are press-fitted with the seal member sandwiched between the U-shaped portions of the left and right frames 6, respectively. Next, mounting screws (not shown) are fastened to the screw holes of the eaves side and the ridge side frames 4 and 5 through the screw holes on both ends of the left and right frames 6, respectively, so that the solar cell panel 1 shown in FIG. Assembled.

図7は案内板12の斜視図である。案内板12は、表面処理鋼板やステンレス鋼板あるいは耐火性材料等の不燃材でなる金属平板を折り曲げ加工して作製されている。この案内板12は、図示しない太陽電池パネル1の裏面を全面的に覆う底部12Aと、底部12Aの棟側に太陽電池パネル1の棟側端部を囲むように断面コ字形に折り曲げて設けられた折返し部12Bとから構成されている。   FIG. 7 is a perspective view of the guide plate 12. The guide plate 12 is produced by bending a metal flat plate made of a non-combustible material such as a surface-treated steel plate, a stainless steel plate, or a refractory material. The guide plate 12 is provided with a bottom portion 12A that covers the entire back surface of the solar cell panel 1 (not shown) and a fold side of the bottom portion 12A that is bent in a U-shaped cross section so as to surround the ridge side end portion of the solar cell panel 1. And the folded portion 12B.

底部12Aは、太陽電池パネル1の裏面側に全面にわたって広がり、上面に太陽電池パネル1を載置して、太陽電池パネル1の裏面に第一の通風路F1を形成する。詳細には、底部12Aは、上面にて太陽電池パネル1の枠体3を支持し、平盤状の光発電機能体である基盤2、枠体3、及び底部12Aで囲まれた空間を、第一の通風路F1として形成する。一方、折返し部12Bは、太陽電池パネル1の棟側端辺の周囲に、太陽電池パネル1から所定距離離れて囲むように存在して、太陽電池パネル1の棟側端辺を折り返す第二の通風路F2を形成する。第一の通風路F1と第二の通風路F2とは、上記のように棟側枠5の下端に設けられた棟側枠開口溝5dにより連通されている。   The bottom portion 12 </ b> A extends over the entire back surface side of the solar cell panel 1, the solar cell panel 1 is placed on the top surface, and the first ventilation path F <b> 1 is formed on the back surface of the solar cell panel 1. Specifically, the bottom 12A supports the frame 3 of the solar cell panel 1 on the upper surface, and a space surrounded by the base 2, the frame 3, and the bottom 12A, which are flat plate-like photovoltaic power generation units, It forms as the 1st ventilation path F1. On the other hand, the folded portion 12B exists around the ridge side edge of the solar cell panel 1 so as to surround the solar cell panel 1 at a predetermined distance and folds the ridge side edge of the solar cell panel 1. The ventilation path F2 is formed. The first ventilation path F1 and the second ventilation path F2 are communicated by the ridge-side frame opening groove 5d provided at the lower end of the ridge-side frame 5 as described above.

案内板12は、図示しない太陽電池パネル1を載置した状態で、折返し部12Bの断面コ字形の上面に、棟側に隣接する他の案内板12の底部12Aの軒側端部を重ねて屋根勾配方向に複数段に敷設されている(図1及び図2)。このとき相互に重なる部分である折返し部12Bの上面と底部12Aの軒側端部とは重合部を構成している。   The guide plate 12 has the eaves side end portion of the bottom portion 12A of the other guide plate 12 adjacent to the ridge side superimposed on the upper surface of the U-shaped cross section of the folded portion 12B in a state where the solar cell panel 1 (not shown) is placed. It is laid in multiple steps in the roof slope direction (FIGS. 1 and 2). At this time, the upper surface of the folded portion 12B, which is a portion overlapping each other, and the eaves side end portion of the bottom portion 12A constitute an overlapping portion.

底部12Aの軒側端部(重合部)に複数の第一の傾斜部12aが設けられている。複数の第一の傾斜部12aは、案内板12の軒側端から所定幅部分が下方に折り曲げられて形成されている。第一の傾斜部12aは、辺に沿って所定の間隔を空けながら断続的に設けられている。つまり、下方に折り曲げられて形成された第一の傾斜部12aと折り曲げられない平坦部とが辺に沿って交互に形成されている。第一の傾斜部12aは、プレス加工により形成され、軒側に向かって低くなる斜面とされている。この案内板12の軒側端部に断続的に設けられた複数の第一の傾斜部12aは、太陽電池パネル1と案内板12との間に形成された第一の通風路F1と外部とを連通する軒側開口部を形成している。   A plurality of first inclined portions 12a are provided at the eaves side end portion (overlapping portion) of the bottom portion 12A. The plurality of first inclined portions 12 a are formed by bending a predetermined width portion downward from the eaves side end of the guide plate 12. The first inclined portion 12a is provided intermittently with a predetermined interval along the side. That is, the first inclined portion 12a formed by bending downward and the flat portion that cannot be bent are alternately formed along the side. The 1st inclination part 12a is formed by press work, and is made into the slope which becomes low toward the eaves side. A plurality of first inclined portions 12a provided intermittently at the eaves side end of the guide plate 12 are formed between the first ventilation path F1 formed between the solar cell panel 1 and the guide plate 12 and the outside. The eaves side opening part which communicates is formed.

折返し部12Bの断面コ字形の上部支持部の軒側端部(重合部)に、複数の第二の傾斜部12bが設けられている。複数の第二の傾斜部12bは、折返し部12Bの軒側端から所定幅部分が下方に折り曲げられて形成されている。第二の傾斜部12bは、第一の傾斜部12aと同様に辺に沿って所定の間隔を空けながら断続的に設けられている。第二の傾斜部12bもまた、プレス加工により形成され、軒側に向かって低くなる斜面として形成されている。この折返し部12Bの軒側端部に断続的に設けられた複数の第二の傾斜部12bは、太陽電池パネル1の棟側端辺の周囲に形成された第二の通風路F2と外部とを連通する棟側開口部を形成している。   A plurality of second inclined portions 12b are provided at the eave side end portion (overlapping portion) of the upper support portion having a U-shaped cross section of the folded portion 12B. The plurality of second inclined portions 12b are formed by bending a predetermined width portion downward from the eaves side end of the folded portion 12B. Similarly to the first inclined portion 12a, the second inclined portion 12b is provided intermittently with a predetermined interval along the side. The second inclined portion 12b is also formed by pressing and is formed as an inclined surface that decreases toward the eaves side. The plurality of second inclined portions 12b provided intermittently at the eaves side end of the folded portion 12B are formed between the second ventilation path F2 formed around the ridge side end of the solar cell panel 1 and the outside. The ridge side opening part which connects is formed.

第二の傾斜部12bと第一の傾斜部12aとが同様の形状を成しており、第二の傾斜部12bと棟側に隣接する他の太陽電池パネル1の第一の傾斜部12aとは、上記重合部にて周囲の平面部とともに密着して重なっている。この重合部の作用により、重なり合った合わせ面からの浸水を抑制する効果が期待でき、不測の水漏れを抑制することができる。また、第二の傾斜部12bと棟側に隣接する他の太陽電池パネル1の第一の傾斜部12aとが重なることにより、棟側開口部と棟側に隣接する他の案内板12の軒側開口部とが隣り合う位置に設けられる。このように、開口部が集中して1箇所に形成されることにより、構造を簡素化され部品点数を削減することができる。   The second inclined portion 12b and the first inclined portion 12a have the same shape, and the second inclined portion 12b and the first inclined portion 12a of the other solar cell panel 1 adjacent to the building side Are overlapped in close contact with the surrounding flat portion at the overlapping portion. By the action of this overlapping portion, an effect of suppressing water intrusion from the overlapping mating surfaces can be expected, and unexpected water leakage can be suppressed. Further, the second inclined portion 12b and the first inclined portion 12a of the other solar cell panel 1 adjacent to the ridge side overlap with each other, whereby the eaves of the other guide plate 12 adjacent to the ridge side opening and the ridge side are overlapped. The side opening is provided at a position adjacent to the side opening. In this way, the openings are concentrated and formed at one place, so that the structure can be simplified and the number of parts can be reduced.

第一の平面部12cからL字形の第一の固定爪12eが延設されている。第一の固定爪12eは、第一の平面部12cの軒側端辺から所定長さ軒側に延び、そこから上方に折れ曲がって形成され、L字形を成している。第一の固定爪12eにはネジ穴が穿孔されており、このネジ穴に挿入された固定ネジ13を上記固定用駒8に締結することにより、太陽電池パネル1の下端を固定する。   An L-shaped first fixing claw 12e extends from the first flat surface portion 12c. The first fixed claw 12e extends from the eaves side edge of the first flat surface part 12c to the eaves side for a predetermined length, is bent upward from there, and has an L shape. A screw hole is drilled in the first fixing claw 12e, and the lower end of the solar cell panel 1 is fixed by fastening the fixing screw 13 inserted into the screw hole to the fixing piece 8.

折返し部12Bの上面の第二の平面部12dにL字形の第二の固定爪12hが設けられている。第二の固定爪12hは、中央部の第二の平面部12dと両端部の第二の平面部12dの3箇所に設けられている。第二の固定爪12hは、第二の平面部12dの軒側端辺から所定長さ軒側に延び、そこから上方に折れ曲がって形成され、L字形を成している。第二の固定爪12hにも、第一の固定爪12eと同様にネジ穴が穿孔されており、このネジ穴に挿入された固定ネジ13を上記固定用駒8に締結することにより、棟側に隣接する太陽電池パネル1の下端を固定する。   An L-shaped second fixed claw 12h is provided on the second flat surface portion 12d on the upper surface of the folded portion 12B. The second fixed claws 12h are provided at three locations, that is, the second flat portion 12d at the center and the second flat portions 12d at both ends. The second fixing claw 12h extends from the eaves side edge of the second flat surface part 12d to the eaves side for a predetermined length, and is bent upward from there to form an L shape. Similarly to the first fixing claw 12e, the second fixing claw 12h has a screw hole, and the fixing screw 13 inserted into the screw hole is fastened to the fixing piece 8 so that the ridge side The lower end of the solar cell panel 1 adjacent to is fixed.

尚、第一の平面部12cと第二の平面部12dとは上記のように重合部にて重なっており、この重なった第一の平面部12cと第二の平面部12dから延びる第一の固定爪12eと第二の固定爪12hは、ネジ穴が穿孔された固定面を同一平面上に存在させている。これにより、第一の固定爪12eと第二の固定爪12hは、軒側枠4に設けられた同一の盗み部4c内に収納された固定用駒8に締結される。すなわち、軒側枠4に設けられた固定用駒8により、載置される太陽電池パネル1の案内板12の固定と、軒側に隣接して重なる他の案内板12の固定とが行われる。   The first plane portion 12c and the second plane portion 12d overlap at the overlapping portion as described above, and the first plane portion 12c and the first plane portion 12d extending from the second plane portion 12d overlap each other. The fixed claw 12e and the second fixed claw 12h have a fixed surface with a screw hole formed on the same plane. Thereby, the first fixing claw 12e and the second fixing claw 12h are fastened to the fixing piece 8 housed in the same stealing portion 4c provided in the eaves side frame 4. That is, the fixing plate 8 provided on the eaves side frame 4 fixes the guide plate 12 of the solar cell panel 1 to be placed and the other guide plate 12 that is adjacent to and overlaps the eave side. .

太陽電池パネル1の案内板12への固定は、まず太陽電池パネル1の棟側端部が案内板12の折返し部12Bに挿入され、次に軒側端部が上記固定ネジ13により第一の固定爪12eに締結されて行われる。このとき、太陽電池パネル1の棟側端部は、折返し部12B内で第二の傾斜部12bと底部12Aとの間に狭持されることにより支持される。そして、このように結合された太陽電池パネル1と案内板12の組立体が、その軒側端部を第二の固定爪12hに連結されて階段状に複数段敷設される。   The solar cell panel 1 is fixed to the guide plate 12 by first inserting the ridge side end portion of the solar cell panel 1 into the folded portion 12B of the guide plate 12, and then the eave side end portion by the fixing screw 13. This is performed by being fastened to the fixing claw 12e. At this time, the ridge side end portion of the solar cell panel 1 is supported by being sandwiched between the second inclined portion 12b and the bottom portion 12A in the folded portion 12B. And the assembly of the solar cell panel 1 and the guide plate 12 combined in this way is connected to the second fixed claw 12h at the eaves side end portion and laid in a plurality of steps.

また、案内板12の屋根勾配方向と直交する方向の左右両端辺が上方に折り曲げられて立ち上がり部12gが設けられている。立ち上がり部12gは、案内板12上に滴下した雨水の防水堤として働き、屋根面19への浸水を抑制する。   Further, the left and right ends of the guide plate 12 in the direction orthogonal to the roof gradient direction are bent upward to provide a rising portion 12g. The rising portion 12g works as a waterproof embankment of rainwater dripped on the guide plate 12, and suppresses inundation of the roof surface 19.

さらに、折返し部12Bの棟側端に案内板固定具14が設けられている。案内板固定具14は、表面処理鋼板やステンレス鋼板あるいは耐火性材料等の不燃材でなる金属平板を折り曲げ加工して作製されたL字形の固定金具であり、一端を折返し部12Bの棟側端に固着されて、他端を押さえ金具15及び固定ネジ15aにより垂木18に締結されている(図2参照)。案内板固定具14は、太陽電池パネル1が重なり最も荷重のかかる折返し部12Bを屋根面19から支持することにより、効率よく且つ安定して太陽電池パネル1を支持する。   Further, a guide plate fixture 14 is provided at the ridge side end of the folded portion 12B. The guide plate fixture 14 is an L-shaped fixture made by bending a metal flat plate made of a non-combustible material such as a surface-treated steel plate, a stainless steel plate, or a refractory material, and has one end at the ridge side end of the folded portion 12B. The other end is fastened to the rafter 18 by a presser fitting 15 and a fixing screw 15a (see FIG. 2). The guide plate fixture 14 supports the solar cell panel 1 efficiently and stably by supporting the folded portion 12B on which the solar cell panel 1 is overlapped and which is most heavily loaded from the roof surface 19.

図8は案内板12に太陽電池パネル1を載置した状態を示す正面図である。図9は図8のH−H線に沿う矢視断面図である。図8中矢印は、空気の流れを示している。矢印の点線で示す部分は、太陽電池パネル1及び案内板12により隠れた部分を示している。図8及び図9に沿って、詳細な動作を説明する。   FIG. 8 is a front view showing a state in which the solar cell panel 1 is placed on the guide plate 12. 9 is a cross-sectional view taken along line HH in FIG. The arrows in FIG. 8 indicate the air flow. The part shown by the dotted line of the arrow has shown the part hidden with the solar cell panel 1 and the guide plate 12. FIG. Detailed operations will be described with reference to FIGS.

上記のように構成された屋根材型太陽電池パネル装置において、太陽電池パネル1が日中の太陽を浴び発電を始めると太陽電池パネル1の温度が上昇するので、太陽電池パネル1の裏面の第一の通風路F1内の空気の温度も上昇する。軽くなった空気は上昇するので、棟側枠5の下端に形成された棟側枠開口溝5dを通って第二の通風路F2に至り、さらに棟側開口部(第二の平面部12dと太陽電池パネル1との間に形成される隙間)から屋外に放出される。これにともない外部の冷えた空気が、軒側開口部(第一の傾斜部12a)から太陽電池パネル1の裏面の第一の通風路F1に吸い込まれる。この空気の流れは太陽電池パネル1を効果的に冷却する。   In the roof material type solar cell panel device configured as described above, the temperature of the solar cell panel 1 rises when the solar cell panel 1 starts to generate electricity after being exposed to the sun during the daytime. The temperature of the air in one ventilation path F1 also rises. Since the lightened air rises, it passes through the ridge-side frame opening groove 5d formed at the lower end of the ridge-side frame 5 to reach the second ventilation path F2, and further to the ridge-side opening (second flat portion 12d and It is emitted to the outdoors through a gap formed between the solar cell panel 1 and the solar cell panel 1. Along with this, the externally cooled air is sucked into the first ventilation path F1 on the back surface of the solar cell panel 1 from the eaves side opening (first inclined portion 12a). This air flow effectively cools the solar cell panel 1.

また、雨水の浸入やその排水については、一般的に水は高いところから低いところに流れるため棟側から軒側に向けて流れる。風を伴った雨水や強雨の場合は低いところから高いところへ登ることがあり、太陽電池パネル1の下段側から侵入しようとする雨水は、軒側開口部(第一の傾斜部12a)から太陽電池パネル1の裏面の第一の通風路F1に入り、その圧力に相当した位置まで上昇する。雨水が上昇しようとする圧力よりも雨水の重さ(圧力)が大きいとき、雨水は逆流して軒側開口部より屋外に流れ出る。このとき、案内板12の底部12Aから軒側開口部までは平坦で水が滞る場所がないので、雨水はスムーズに流れ出る。一方、雨水の重さ(圧力)よりも、大雨水が上昇しようとする圧力が大きい場合、雨水は折返し部12Bを登り棟側開口部(第二の平面部12dと太陽電池パネル1との間に形成される隙間)から屋外に流れ出る。   As for the intrusion of rainwater and its drainage, the water generally flows from a high place to a low place, so it flows from the building side to the eaves side. In the case of rain water with heavy wind or heavy rain, it may climb from a low place to a high place, and rain water entering from the lower side of the solar cell panel 1 is from the eaves side opening (first inclined portion 12a). It enters the first ventilation path F1 on the back surface of the solar cell panel 1 and rises to a position corresponding to the pressure. When the weight (pressure) of rainwater is greater than the pressure at which rainwater tries to rise, the rainwater flows backward and flows out of the eaves-side opening. At this time, since the bottom 12A of the guide plate 12 and the eaves-side opening are flat and there is no place where water stagnates, rainwater flows out smoothly. On the other hand, when the pressure at which the heavy rainwater is going to rise is larger than the weight (pressure) of the rainwater, the rainwater climbs the turn-up portion 12B and the ridge side opening (between the second flat surface portion 12d and the solar cell panel 1). Flows out of the gap).

また、上記とは逆に、棟側開口部から雨水が入り込んだ場合、雨水は、折返し部12Aの第二の通風路F2に侵入する。この雨水は、棟側枠5の下端に形成された棟側枠開口溝5dを通って太陽電池パネル1の裏面の第一の通風路F1に至り、その後、軒側開口部から屋外に流れ出る。すなわち、軒側開口部から雨水が入り込んだ場合も、棟側開口部から雨水が入り込んだ場合も、いずれも雨水は装置内に滞ることなく速やかに外部に排出される。   Contrary to the above, when rainwater enters from the ridge side opening, the rainwater enters the second ventilation path F2 of the folded portion 12A. This rainwater passes through the ridge-side frame opening groove 5d formed at the lower end of the ridge-side frame 5, reaches the first ventilation path F1 on the back surface of the solar cell panel 1, and then flows out from the eave-side opening. That is, in both cases where rainwater enters from the eaves-side opening and rainwater enters from the ridge-side opening, the rainwater is quickly discharged outside without stagnation in the apparatus.

尚、図9に示すように、第一の傾斜部12aの先端は、屋根面19と平行となるように曲げ返されて傾斜先端曲げ部12jとされている。第二の傾斜部12bの先端部も同様である。これは、案内板12の内外に形成される鋭利な部分を無くし、案内板12内に太陽電池パネル1を着脱する際、抵抗を少なくして、枠体3に傷が付くことを防止するためにされている。なお、先端の曲げ返しは、屋根面19と平行でなく、傾斜部に対して逆勾配とされてもよい。   In addition, as shown in FIG. 9, the front-end | tip of the 1st inclination part 12a is bent back so that it may become parallel to the roof surface 19, and it is set as the inclination front-end | tip bending part 12j. The same applies to the tip of the second inclined portion 12b. This eliminates a sharp portion formed inside and outside the guide plate 12, reduces resistance when the solar cell panel 1 is attached to and detached from the guide plate 12, and prevents the frame 3 from being damaged. Has been. It should be noted that the turning back of the tip may not be parallel to the roof surface 19 but may be a reverse gradient with respect to the inclined portion.

このように、本実施の形態の屋根材型太陽電池パネル装置においては、1枚1枚の太陽電池パネル1に対して、通風による冷却と雨水の排出が効果的に行われることとなり、暖められた空気が上昇して各太陽電池パネル1で順次加算されて高温となってしまうことがなくなるとともに、各太陽電池パネル1の部分に侵入した雨水が下段に流れる際に相互に加算されて大量となってしまうことがなくなる。これにより、高い冷却性能と防水品質を得ることができる。   Thus, in the roof material type solar cell panel device according to the present embodiment, cooling by ventilation and drainage of rainwater are effectively performed on each solar cell panel 1 and the solar cell panel 1 is warmed. As the air rises and is not added to each solar cell panel 1 in sequence and becomes hot, rainwater that has entered the solar cell panel 1 flows into the lower stage and is added to each other. It will not be. Thereby, high cooling performance and waterproof quality can be obtained.

さらには、案内板12は表面処理鋼板やステンレス鋼板あるいは耐火性材料等の不燃材にて作製されているため、例えば、近隣の火災で飛び火が太陽電池パネル1上に落下した時などは、太陽電池パネル1の硝子が割れて内部の樹脂が溶けて屋根面19へ火の粉が落下することが想定されるが、案内板12によりそれ以上の火災の進行は防止される。   Furthermore, since the guide plate 12 is made of a non-combustible material such as a surface-treated steel plate, a stainless steel plate, or a refractory material, for example, when a spark is dropped on the solar cell panel 1 by a nearby fire, Although it is assumed that the glass of the battery panel 1 is broken and the resin inside melts and the sparks fall to the roof surface 19, the guide plate 12 prevents further fire.

太陽電池パネル1と案内板12との組み合わせは、工場出荷前に行われても、施工時に行われても良いが、予め、軒側枠4にスライド可能な固定用駒8を組入れておくことにより、いずれの場所にて組立工程を行っても容易とすることができる。また、太陽電池パネル1と案内板12との固定と、棟側に連結する他の太陽電池パネル1との連結とが、いずれも軒側枠4に収納された固定用駒8により行われるので、構造を単純にして部品点数を削減するとともに作業性を向上させる。   The combination of the solar cell panel 1 and the guide plate 12 may be performed before shipment from the factory or at the time of construction. However, a slidable fixing piece 8 should be incorporated in the eaves side frame 4 in advance. Therefore, the assembly process can be easily performed at any place. In addition, the fixing between the solar cell panel 1 and the guide plate 12 and the connection with the other solar cell panel 1 connected to the ridge side are performed by the fixing piece 8 housed in the eaves side frame 4. , Simplify the structure, reduce the number of parts and improve workability.

尚、上記実施の形態の軒側開口部は、案内板12の軒側端部に断続的に設けられた複数の第一の傾斜部12aによって構成されているが、通風路に連通する軒側開口部は、必ずしも斜面である必要はなく、例えば単に案内板12の軒側端部に断続的に凹凸が設けられて構成されてもよい。ただし、通風路に連通する軒側開口部を斜面とすることで、空気の流れをスムーズとし、圧力損失を減らすことで、流通する空気の量を多くして効率的な冷却をすることができる。棟側開口部も同様である。   In addition, although the eaves side opening part of the said embodiment is comprised by the some 1st inclination part 12a intermittently provided in the eaves side edge part of the guide plate 12, the eaves side connected to a ventilation path The opening does not necessarily need to be a slope, and for example, the opening may be simply provided with irregularities at the eaves side end of the guide plate 12. However, by making the eaves side opening communicating with the ventilation path into a slope, the air flow can be made smooth and the pressure loss can be reduced, so that the amount of circulating air can be increased and efficient cooling can be performed. . The same applies to the ridge-side opening.

以上のように、本発明にかかる屋根材型太陽電池パネル装置は、平盤状の太陽電池パネルが棟側端部に棟側に隣接する太陽電池パネルの軒側端部を重ねるようにして、屋根勾配方向に階段状に複数段敷設されて成る屋根材型太陽電池パネル装置に適している。   As described above, the roof type solar cell panel device according to the present invention is such that the flat plate-like solar cell panel overlaps the eaves side end of the solar cell panel adjacent to the ridge side at the ridge side end, It is suitable for a roof material type solar cell panel device that is constructed in a plurality of steps in a stepwise manner in the roof gradient direction.

本発明に係る屋根材型太陽電池パネル装置の屋根勾配方向に階段状に複数段敷設された太陽電池パネルの様子を示す断面図である。It is sectional drawing which shows the mode of the solar cell panel laid in multiple steps by the roof gradient direction of the roof material type solar cell panel apparatus which concerns on this invention at step shape. 図1のA部分を拡大して示す太陽電池パネルの屋根勾配方向に重なる重合部の詳細な拡大断面図である。It is a detailed expanded sectional view of the superposition | polymerization part which overlaps with the roof gradient direction of the solar cell panel which expands and shows the A section of FIG. 太陽電池パネルの平面図である。It is a top view of a solar cell panel. 図3のG−G線に沿う矢視断面図である。FIG. 4 is a cross-sectional view taken along the line GG in FIG. 3. 図4の軒側枠と棟側枠の部分を拡大して示す部分拡大図である。It is the elements on larger scale which expand and show the part of the eaves side frame and ridge side frame of FIG. 太陽電池パネルの正面図である。It is a front view of a solar cell panel. 案内板の斜視図である。It is a perspective view of a guide plate. 案内板に太陽電池パネルを載置した状態を示す正面図である。It is a front view which shows the state which mounted the solar cell panel in the guide plate. 図8のH−H線に沿う矢視断面図である。It is arrow sectional drawing which follows the HH line | wire of FIG.

符号の説明Explanation of symbols

1 太陽電池パネル
2 基盤
2a 太陽電池セル
3 枠体
4 軒側枠
4a,5a コ字状部
4b,5b 延長部
4c 盗み部
4d 開放部
4e,5e,6e 上角鍵部
5 棟側枠
5c 内フランジ部
5d 棟側枠開口溝
6 左右枠
8 固定用駒(ネジ取付け部材)
12 案内板
12A 底部
12B 折返し部
12a 第一の傾斜部(軒側)
12b 第二の傾斜部(棟側)
12c 第一の平面部(軒側)
12d 第二の平面部(棟側)
12e 第一の固定爪
12g 立ち上がり部
12h 第二の固定爪
12j 傾斜先端曲げ部
13 固定ネジ
14 案内板固定具
15 押さえ金具
15a 固定ネジ
16 防水シート
17 野地板
18 垂木
19 屋根面
DESCRIPTION OF SYMBOLS 1 Solar cell panel 2 Base | substrate 2a Solar cell 3 Frame body 4 eaves side frame 4a, 5a U-shaped part 4b, 5b Extension part 4c Stealing part 4d Open part 4e, 5e, 6e Upper corner key part 5 Building side frame 5c Inside Flange 5d Building side frame opening groove 6 Left and right frame 8 Fixing piece (screw mounting member)
12 Guide plate 12A Bottom portion 12B Turn-up portion 12a First inclined portion (eave side)
12b 2nd slope (ridge side)
12c First flat part (eave side)
12d Second plane (building side)
12e First fixed claw 12g Rising part 12h Second fixed claw 12j Inclined tip bending part 13 Fixing screw 14 Guide plate fixture 15 Holding metal 15a Fixing screw 16 Waterproof sheet 17 Base plate 18 Rafter 19 Roof surface

Claims (8)

平盤状の光発電機能体、及び前記光発電機能体の外周縁部を保持する棟側枠、軒側枠及び一対の左右枠を有する太陽電池パネルと、
前記太陽電池パネル毎に設けられ、前記太陽電池パネルの裏面側に全面にわたって広がり、前記太陽電池パネルを載置して、前記光発電機能体及び前記枠体との間に第一の通風路を形成する底部、及び前記底部の棟側に前記太陽電池パネルの棟側端辺を囲むように断面コ字形に折り曲げられて設けられ、前記太陽電池パネルの棟側端辺の周囲に第二の通風路を形成する折返し部から成る案内板と、
前記案内板を屋根面から支持する案内板固定具とを備え、
前記案内板は、前記断面コ字形の前記折返し部の上面に、棟側に隣接する前記案内板の前記底部の軒側端部とを重ねて合わせて、載置した前記太陽電池パネルとともに屋根勾配方向に複数段に敷設され、
前記案内板と棟側に隣接する前記案内板とが重なり合う重合部において、
前記案内板の軒側端部の前記軒側枠に対向する所定幅部分が、前記軒側枠に沿って断続的に下方に折り曲げられて形成された第一の傾斜部と、隣り合う前記第一の傾斜部間に形成された第一の平面部とが設けられ、前記第一の傾斜部が前記軒側枠との間に形成する隙間により、外部と前記第一の通風路とを連通する前記軒側開口部が形成され、
前記折返し部の前記上面の軒側端部の前記棟側枠に対向する所定幅部分が、前記棟側枠に沿って断続的に下方に折り曲げられて形成された第二の傾斜部と、隣り合う前記第二の傾斜部間に形成された第二の平面部とが設けられ、前記第二の傾斜部が前記棟側枠と当接して前記第二の平面部と前記棟側枠との間に隙間が形成されることにより、外部と前記第二の通風路とを連通する前記棟側開口部が形成され、
前記棟側枠の一部に前記第一の通風路と前記第二の通風路とを連通する開口部が設けられている
ことを特徴とする屋根材型太陽電池パネル装置。
A photovoltaic panel having a flat plate-like photovoltaic power generation unit, and a ridge side frame, an eaves side frame and a pair of left and right frames for holding the outer peripheral edge of the photovoltaic function unit;
Provided for each of the solar cell panels, spread over the entire back surface side of the solar cell panel, placing the solar cell panel, and providing a first ventilation path between the photovoltaic function body and the frame. A bottom portion to be formed, and a fold side of the bottom portion of the solar cell panel so as to surround the ridge side edge of the solar cell panel, and a second ventilation is provided around the ridge side edge of the solar cell panel. A guide plate composed of folded portions forming a path;
A guide plate fixture for supporting the guide plate from the roof surface;
The guide plate has a roof slope together with the solar panel placed thereon, with the upper surface of the folded portion having a U-shaped cross section overlapped with the eaves side end portion of the bottom portion of the guide plate adjacent to the building side. Laid in multiple steps in the direction,
In the overlapping portion where the guide plate and the guide plate adjacent to the ridge overlap,
A predetermined width portion facing the eaves side frame of the eaves side end of the guide plate is adjacent to the first inclined portion formed by being bent downwardly along the eaves side frame. A first flat surface portion formed between the one inclined portion, and the first inclined portion communicates with the first ventilation path by a gap formed between the first inclined portion and the eaves side frame. The eaves side opening is formed,
Next to a second inclined part formed by a predetermined width portion facing the ridge-side frame of the eaves side end portion of the upper surface of the folded-back part being bent downwardly along the ridge-side frame. A second flat surface portion formed between the second inclined portions, and the second inclined portion is in contact with the ridge side frame so that the second flat portion and the ridge side frame are in contact with each other. By forming a gap in between, the ridge side opening that connects the outside and the second ventilation path is formed,
An opening for communicating the first ventilation path and the second ventilation path is provided in a part of the ridge-side frame.
前記第二の傾斜部と前記第一の傾斜部とが同様の形状を成し、前記第二の傾斜部と棟側に隣接する他の前記太陽電池パネルの前記第一の傾斜部とが、前記重合部にて密着して重なり、前記棟側開口部と棟側に隣接する他の前記案内板の前記軒側開口部とが隣り合う位置に設けられている
ことを特徴とする請求項1に記載の屋根材型太陽電池パネル装置。
The second inclined portion and the first inclined portion have the same shape, and the second inclined portion and the first inclined portion of the other solar cell panel adjacent to the ridge side, 2. The overlapping portion is closely overlapped at the overlapping portion, and the ridge side opening portion and the eaves side opening portion of another guide plate adjacent to the ridge side are provided at adjacent positions. The roof material type solar cell panel device according to 1.
前記案内板は、不燃材にて作製されている
ことを特徴とする請求項1または2に記載の屋根材型太陽電池パネル装置。
The roof material type solar cell panel device according to claim 1 or 2, wherein the guide plate is made of a non-combustible material.
前記第一の平面部からL字形に延設され前記太陽電池パネルの軒側端が締結される第一の固定爪と、前記第二の平面部からL字形に延設され、棟側に隣接する他の前記太陽電池パネルの軒側端が締結される第二の固定爪とをさらに備え、前記第一の固定爪と前記第二の固定爪とが同一平面上に存在する
ことを特徴とする請求項1から3のいずれか1つに記載の屋根材型太陽電池パネル装置。
A first fixed claw that extends in an L shape from the first plane portion and is fastened to an eave side end of the solar cell panel; A second fixing claw to which an eaves side end of the other solar cell panel is fastened, wherein the first fixing claw and the second fixing claw are on the same plane. The roofing material type solar cell panel device according to any one of claims 1 to 3.
前記案内板は、屋根勾配方向と直交する方向の左右両端辺が上方に折り曲げられて立ち上がり部が設けられている
ことを特徴とする請求項1から4のいずれか1つに記載の屋根材型太陽電池パネル装置。
The roof material mold according to any one of claims 1 to 4, wherein the guide plate is provided with rising portions by bending both left and right sides in a direction orthogonal to the roof gradient direction upward. Solar panel device.
前記案内板固定具は、前記案内板の前記折返し部を屋根面から支持する
ことを特徴とする請求項1から5のいずれか1つに記載の屋根材型太陽電池パネル装置。
The roof material type solar cell panel device according to any one of claims 1 to 5, wherein the guide plate fixture supports the folded portion of the guide plate from a roof surface.
前記第一の傾斜部及び前記第二の傾斜部は、その先端部が水平又は逆勾配に傾斜していることを特徴とする請求項1から6のいずれか1つに記載の屋根材型太陽電池パネル装置。   The roof material type sun according to any one of claims 1 to 6, wherein tip ends of the first inclined portion and the second inclined portion are inclined in a horizontal or reverse gradient. Battery panel device. 前記軒側枠は、全長にわたって中空の盗み部を有するとともに、軒側に形成された被固定面に前記盗み部に連通する固定ネジ通し穴が全長にわたって形成され、前記盗み部内に前記固定ネジと螺合する雌ネジが形成されたネジ取付け部材がスライド可能に収納されている
ことを特徴とする請求項1から7のいずれか1つに記載の屋根材型太陽電池パネル装置。
The eaves side frame has a hollow stealing portion over the entire length, and a fixing screw through hole communicating with the stealing portion is formed over the entire length on a fixed surface formed on the eave side, and the fixing screw and the fixing screw are formed in the stealing portion. The roof material type solar cell panel device according to any one of claims 1 to 7, wherein a screw mounting member in which a female screw to be screwed is formed is slidably accommodated.
JP2008229355A 2008-09-08 2008-09-08 Roof type solar panel device Expired - Fee Related JP5004909B2 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102214712A (en) * 2011-05-24 2011-10-12 广东保威新能源有限公司 Keel with slot structure
KR101198529B1 (en) 2012-06-08 2012-11-06 주식회사 에디슨전기 attachment apparatus for photovoltaic module
JP2013002244A (en) * 2011-06-21 2013-01-07 Mitsubishi Electric Corp Solar cell module
JP2014531892A (en) * 2011-09-22 2014-11-27 ダウ グローバル テクノロジーズ エルエルシー Photovoltaic device with improved thermal management mechanism
CN110752817A (en) * 2019-10-29 2020-02-04 宁波市广德太阳能科技有限公司 Double-glass photovoltaic panel roof mounting structure

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JPH06212749A (en) * 1993-01-12 1994-08-02 Misawa Homes Co Ltd Roof structure with solar battery
JPH07292907A (en) * 1994-04-22 1995-11-07 Kubota Corp Roofing material for solar battery
JPH0988281A (en) * 1995-09-27 1997-03-31 Kubota Corp Fitting structure of solar cell panel
JP2003105939A (en) * 2001-09-28 2003-04-09 Sharp Corp Solar-battery module, its mounting structure, and house
JP2003168816A (en) * 2001-11-30 2003-06-13 Sanyo Electric Co Ltd Solar cell module and solar cell unit

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JPH06212749A (en) * 1993-01-12 1994-08-02 Misawa Homes Co Ltd Roof structure with solar battery
JPH07292907A (en) * 1994-04-22 1995-11-07 Kubota Corp Roofing material for solar battery
JPH0988281A (en) * 1995-09-27 1997-03-31 Kubota Corp Fitting structure of solar cell panel
JP2003105939A (en) * 2001-09-28 2003-04-09 Sharp Corp Solar-battery module, its mounting structure, and house
JP2003168816A (en) * 2001-11-30 2003-06-13 Sanyo Electric Co Ltd Solar cell module and solar cell unit

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102214712A (en) * 2011-05-24 2011-10-12 广东保威新能源有限公司 Keel with slot structure
JP2013002244A (en) * 2011-06-21 2013-01-07 Mitsubishi Electric Corp Solar cell module
JP2014531892A (en) * 2011-09-22 2014-11-27 ダウ グローバル テクノロジーズ エルエルシー Photovoltaic device with improved thermal management mechanism
KR101198529B1 (en) 2012-06-08 2012-11-06 주식회사 에디슨전기 attachment apparatus for photovoltaic module
CN110752817A (en) * 2019-10-29 2020-02-04 宁波市广德太阳能科技有限公司 Double-glass photovoltaic panel roof mounting structure
CN110752817B (en) * 2019-10-29 2022-08-05 宁波市广德太阳能科技有限公司 Double-glass photovoltaic panel roof mounting structure

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