JP2005340704A - Lid with solar cell panel - Google Patents

Lid with solar cell panel Download PDF

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JP2005340704A
JP2005340704A JP2004160692A JP2004160692A JP2005340704A JP 2005340704 A JP2005340704 A JP 2005340704A JP 2004160692 A JP2004160692 A JP 2004160692A JP 2004160692 A JP2004160692 A JP 2004160692A JP 2005340704 A JP2005340704 A JP 2005340704A
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solar cell
cell panel
cover
drainage groove
space
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JP2004160692A
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JP4532170B2 (en
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Akihiro Takita
昭裕 田北
Masahiro Mizuno
政宏 水野
Nobuhisa Ishida
信久 石田
Noriyuki Obitsu
紀之 帯津
Tomoyoshi Maeda
智愛 前田
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Nisshinbo Holdings Inc
Mitsubishi Heavy Industries Ltd
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Mitsubishi Heavy Industries Ltd
Nisshinbo Industries Inc
Nisshin Spinning Co Ltd
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    • 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

Abstract

<P>PROBLEM TO BE SOLVED: To provide a lid with a solar cell panel in which water does not stand in a wiring space formed at a lower section of the solar cell panel. <P>SOLUTION: The lid with a solar cell panel 20 comprises a body section 10 being stretched between lid receiving portions 201 formed on the opposite sides of a water tank 200, or the like, the solar cell panel 20 fixed to the upper surface of the body section 10, a space formed at the lower section of the solar cell panel in order to contain the wiring thereof, and a gutter 11a formed in the space wherein the gutter 11a has openings 11b at the opposite ends. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は水処理施設の水処理槽を始め、各種の貯水槽や水路を含む水槽等に被せる覆蓋に関し、特に、太陽電池パネルを付けた覆蓋に関する。   The present invention relates to a cover covering a water treatment tank of a water treatment facility, various water tanks, a water tank including a water channel, and the like, and particularly relates to a cover having a solar cell panel.

従来から、上下水道の水処理施設は、日射条件のよい広大な場所に設けられている。そこで、ここで得られる太陽エネルギの有効活用として、太陽電池パネルを用いた発電システムが考えられた。   Conventionally, water treatment facilities for water and sewage have been provided in vast places with good sunlight conditions. Thus, as an effective utilization of the solar energy obtained here, a power generation system using a solar cell panel has been considered.

初期のものは、水処理槽の周囲に鉄骨の柱を立ててこれらの間に屋根枠を取り付け、屋根枠の上に太陽電池パネルを取り付けるものであった。しかし、この構成は、高所に設置するので、作業に危険が伴うとか、設備費が高額になるなどの問題があった。   In the initial one, steel pillars were set up around the water treatment tank, a roof frame was attached between them, and a solar cell panel was attached on the roof frame. However, since this configuration is installed at a high place, there are problems such as danger in work and high equipment costs.

そこで、特許文献1では、水処理槽の上方を覆うアーチ状の覆蓋の上面に凹部を形成し、この凹部に太陽電池パネルをはめ込んだものを提案している。このような構成によって、高所作業を無くし、かつ、水処理槽内にごみなどが落下するのを防止することも可能となった。   Therefore, Patent Document 1 proposes a method in which a recess is formed on the upper surface of an arch-shaped cover that covers the upper portion of the water treatment tank, and a solar cell panel is fitted in the recess. With such a configuration, it is possible to eliminate work at a high place and prevent dust and the like from falling into the water treatment tank.

また、特許文献2では、アクリル樹脂製の表面層とFRP製の基材層との間に太陽電池パネルを配設して一体的にした天蓋パネルが提案されている。これにより、低コスト化が可能になった。   Further, Patent Document 2 proposes a canopy panel in which a solar cell panel is disposed and integrated between a surface layer made of acrylic resin and a base material layer made of FRP. As a result, the cost can be reduced.

特許文献3では、太陽電池パネルを配設した覆蓋を移動可能にして、覆蓋を開閉可能にし、開閉中でも発電ができるようにしたものを提案している。   Japanese Patent Application Laid-Open No. 2004-133867 proposes a cover that can move a cover provided with a solar cell panel so that the cover can be opened and closed, and can generate electric power even during opening and closing.

さらに、特許文献4では、太陽電池パネルを傾斜して取り付ける覆蓋を提案している。このような構成によって太陽光エネルギの利用効率を上げることができる。   Further, Patent Document 4 proposes a cover for attaching the solar cell panel at an inclination. With such a configuration, utilization efficiency of solar energy can be increased.

ところで、覆蓋に複数の太陽電池パネルを取り付けると、各太陽電池パネルを電線で接続する必要が生じる。そこで、特許文献4では、太陽電池パネルの下部に空間を形成し、この空間に電線を配索するようにしている。
特開2002−43609号 特開2002−134778号 特開2002−250080号 特開2003−54685号
By the way, when a plurality of solar cell panels are attached to the cover, it is necessary to connect the solar cell panels with electric wires. Therefore, in Patent Document 4, a space is formed in the lower part of the solar cell panel, and electric wires are routed in this space.
JP 2002-43609 A JP 2002-134778 A JP 2002-250080 JP 2003-54685 A

しかしながら、太陽電池パネルの下に空間を形成すると、この空間内に雨水などが進入し、溜まってしまうという問題が生じる。この問題に対し、従来は、太陽電池パネルを覆蓋に取り付ける際に、シール部材で密閉するという方法を採用していた。   However, when a space is formed under the solar cell panel, there arises a problem that rainwater or the like enters and accumulates in this space. In order to solve this problem, conventionally, when the solar cell panel is attached to the cover, a method of sealing with a sealing member has been adopted.

しかし、シール部材による密閉は簡単ではない。仮に新品の場合は防水できても、密閉部材が経時変化して防水性能が劣化すると内部空間に水が溜まる不具合が生じる。また、晴天の日には、この空間内の温度が80℃近くまで上昇するので、線膨張や内圧の上昇などの影響を受け、密閉性の保持が困難になる。さらに、電線は1つの覆蓋に留まらず、複数の覆蓋の太陽電池パネルを接続する必要があり、そのために、隣接する覆蓋間を接続する電線の収容空間を形成すれば、この空間についても同様の問題が生じる。   However, sealing with a sealing member is not easy. Even if a new article can be waterproofed, if the sealing member changes with time and the waterproof performance deteriorates, a problem occurs that water accumulates in the internal space. In addition, on a clear day, the temperature in this space rises to nearly 80 ° C., so that it is difficult to maintain the airtightness due to the effects of linear expansion and increase in internal pressure. Furthermore, the electric wire is not limited to one cover, and it is necessary to connect a plurality of cover solar cell panels. Therefore, if an accommodation space for the electric wire connecting adjacent cover is formed, the same applies to this space. Problems arise.

本発明は、このような問題を解決することを目的としてもので、太陽電池パネルを設けた覆蓋において、太陽電池パネルの下部に形成された電線配索用の空間に水が溜まることのない太陽電池パネル付き覆蓋を提供しようとするものである。   The object of the present invention is to solve such a problem, and in the cover provided with the solar cell panel, water does not accumulate in the space for wiring the electric wire formed in the lower part of the solar cell panel. An object of the present invention is to provide a cover with a battery panel.

上記の目的を達成するために本願の請求項1の発明は、水槽等の両側に形成された蓋受部間に架設される本体部と、該本体部の上面に取り付けられた太陽電池パネルと、該太陽電池パネルの配線を収容するために太陽電池パネルの下部の前記本体に形成された空間と、該空間に形成された排水溝と、を有し、該排水溝が少なくとも1つの開口を有することを特徴としている。   In order to achieve the above object, the invention of claim 1 of the present application is directed to a main body portion laid between lid receiving portions formed on both sides of a water tank or the like, and a solar cell panel attached to the upper surface of the main body portion. A space formed in the main body under the solar cell panel to accommodate the wiring of the solar cell panel, and a drain groove formed in the space, and the drain groove has at least one opening. It is characterized by having.

また、本願の請求項2の発明は、前記排水溝が、前記本体部の一方の蓋受部側から他方の蓋受部側まで貫通形成され、本体部の両端に開口を有することを特徴としている。   The invention of claim 2 of the present application is characterized in that the drainage groove is formed so as to penetrate from one lid receiving portion side of the main body portion to the other lid receiving portion side, and has openings at both ends of the main body portion. Yes.

本願の請求項3の発明は、前記排水溝の開口と前記蓋受部との間に隙間が形成されることを特徴としている。   The invention of claim 3 of the present application is characterized in that a gap is formed between the opening of the drainage groove and the lid receiving portion.

本願の請求項4の発明は、前記排水溝が、前記開口に向かって下がる勾配を有することを特徴としている。   The invention according to claim 4 of the present application is characterized in that the drainage groove has a gradient descending toward the opening.

本願の請求項5の発明は、前記太陽電池パネル付き覆蓋が前記両蓋受部側を両端とする円弧状であることを特徴としている。   The invention of claim 5 of the present application is characterized in that the cover with a solar cell panel has an arcuate shape with both the lid receiving part sides as both ends.

本願の請求項6の発明は、前記太陽電池パネル付き覆蓋が、水槽等の上に複数個隣接して配置されるもので、前記空間が、隣接する太陽電池パネル付き覆蓋に向かって開口する延長部を有することを特徴としている。   In the invention of claim 6 of the present application, a plurality of the cover with solar cell panels are arranged adjacent to each other on a water tank or the like, and the space opens toward the cover with solar cell panels adjacent to each other. It has the part.

上記手段によれば、以下のような作用が得られる。
太陽電池パネル付き覆蓋の上に落ちた雨水は、大部分が覆蓋の表面に沿って流れ、覆蓋の縁に達して隣接する覆蓋との隙間を通って水槽等内に滴下する。一部の雨水は、太陽電池パネルと本体部との境目から太陽電池パネルの下部に形成された空間内に進入する。進入した雨水は、空間内に形成された排水溝に入り、外に流れ出すことで排水される。
According to the above means, the following operation can be obtained.
Most of the rainwater that falls on the cover with the solar cell panel flows along the surface of the cover, reaches the edge of the cover, and drops into a water tank or the like through a gap with the adjacent cover. Some rainwater enters a space formed in the lower part of the solar cell panel from the boundary between the solar cell panel and the main body. The rainwater that has entered enters the drainage groove formed in the space and drains by flowing out.

本発明によれば、太陽電池パネル付き覆蓋において、雨水などの水が太陽電池パネルと本体部との隙間から空間内に入っても、排水溝があるので、確実に排水することができる、という優れた効果を奏し得る。また、太陽電池パネルと本体部との間の防水は不要となるので、覆蓋を安価に製造することができる。   According to the present invention, in the cover with a solar cell panel, even if water such as rainwater enters the space from the gap between the solar cell panel and the main body, there is a drainage groove, so that it can be drained reliably. An excellent effect can be achieved. Moreover, since the waterproofing between a solar cell panel and a main-body part becomes unnecessary, a cover can be manufactured cheaply.

排水溝は、覆蓋の一方にだけ開口していればよいが、一方だけしか開口していないと、内部に水が溜まる可能性がある。そこで、排水溝を覆蓋に貫通形成し、覆蓋の両端に開口することによって、排水溝の内部に水が溜まるのを防止することができる。   The drainage groove only needs to be opened on one side of the cover, but if only one side is opened, water may accumulate inside. Therefore, by forming a drainage groove penetrating the cover and opening it at both ends of the cover, it is possible to prevent water from accumulating inside the drainage groove.

排水溝の開口と蓋受部との間に隙間が無いと、うまく排水できないことになる。そこで排水溝の開口を蓋受部から離間して形成することによって、排水が容易にできる。   If there is no gap between the opening of the drainage groove and the lid receiving portion, the drainage cannot be performed well. Therefore, drainage can be easily performed by forming the drainage groove opening away from the lid receiving portion.

開口側が低くなるように排水溝に勾配を設けることで、空間内の水を完全に排水することが可能となる。   By providing a gradient in the drainage groove so that the opening side is lowered, water in the space can be completely drained.

太陽電池パネル付き覆蓋を円弧状にすることで、覆蓋の強度を上げ、排水溝内の水を排水し易くすることができる。   By making the cover with a solar battery panel into an arc shape, the strength of the cover can be increased and the water in the drainage groove can be easily drained.

以下、本発明の実施の形態を添付図面を参照して説明する。   Embodiments of the present invention will be described below with reference to the accompanying drawings.

図1は本発明の太陽電池パネル付き覆蓋の全体を示す斜視図、図2は、太陽電池パネル付き覆蓋から太陽電池パネルを取り外した本体部の斜視図、図3は本体部の分解斜視図、図4は図1のIII−III断面図、図5は使用状態を示す斜視図である。   1 is a perspective view showing the entire cover with a solar cell panel according to the present invention, FIG. 2 is a perspective view of a main body part from which the solar cell panel is removed from the cover with a solar cell panel, and FIG. 3 is an exploded perspective view of the main body part. 4 is a cross-sectional view taken along the line III-III in FIG. 1, and FIG. 5 is a perspective view showing a use state.

これらの図に示す本発明の太陽電池パネル付き覆蓋100は、本体部10に複数枚(図では3枚)の太陽電池パネル20を張り付けたもので、図5に示すように多数の太陽電池パネル付き覆蓋100を水槽等200の両側に並べて配置し、水槽等200の全面を覆うものである。   The cover 100 with a solar cell panel of the present invention shown in these drawings is obtained by attaching a plurality of (three in the figure) solar cell panels 20 to the main body portion 10, and as shown in FIG. 5, a large number of solar cell panels. The cover covers 100 are arranged side by side on both sides of the water tank 200 to cover the entire surface of the water tank 200.

本体部10は、底板11の両側を主梁12で支持し、その上に天板13を被せたものである。底板11の下部には、図4に示す小梁14が数枚ほぼ均等な間隔で設けられている。これら底板11、主梁12、天板13、小梁14は、耐薬品性に優れ、腐食に強いFRPや、ガラス繊維をポリウレタン樹脂で固めた合成木材などを使用している。   The main body 10 is configured by supporting both sides of a bottom plate 11 with a main beam 12 and covering a top plate 13 thereon. Several small beams 14 shown in FIG. 4 are provided in the lower part of the bottom plate 11 at almost equal intervals. These bottom plate 11, main beam 12, top plate 13, and small beam 14 are made of FRP, which is excellent in chemical resistance and resistant to corrosion, or synthetic wood in which glass fibers are hardened with polyurethane resin.

実施例の本体部10は、底板11、主梁12、天板13、小梁14をそれぞれ別個に作り、これらを木ねじなどで結合して構成しているが、これらの各板の2つ以上を一体成形したり、本体部10の全体を一体成形することも可能である。   The main body 10 of the embodiment is configured by separately making a bottom plate 11, a main beam 12, a top plate 13, and a small beam 14 and connecting them with wood screws or the like. Can be integrally molded, or the entire body 10 can be integrally molded.

底板11には、その長手方向を縦断するように排水溝11aが形成され、排水溝11aの両端には開口11bが形成されている。また、天板13には、太陽電池パネル20を取り付けたとき、太陽電池パネル20のコネクタや電線を収容する空間となる複数の開口13aと、隣接する開口13aの仕切部に形成された連通部13bと、端部の開口13aの両側に形成された接続部13cとが形成されている。開口13aと連通部13bとで電線配索用の空間を形成し、接続部13cもこの空間と一部となり、隣接する太陽電池パネル付き覆蓋100間を接続する電線の収容空間となっている。   The bottom plate 11 is formed with a drainage groove 11a so as to cut the longitudinal direction, and openings 11b are formed at both ends of the drainage groove 11a. Moreover, when the solar cell panel 20 is attached to the top plate 13, a plurality of openings 13a serving as spaces for accommodating connectors and electric wires of the solar cell panel 20, and communication portions formed in the partitioning portions of the adjacent openings 13a 13b and connecting portions 13c formed on both sides of the opening 13a at the end are formed. The opening 13a and the communication portion 13b form a space for electric wire routing, and the connection portion 13c is also part of this space, and serves as a housing space for electric wires that connect between the cover covers 100 with the adjacent solar cell panels.

なお、連通部13bや接続部13cは、天板13を底板11に張り付けた後に切り欠いて形成してもよい。   The communication portion 13b and the connection portion 13c may be formed by cutting out the top plate 13 after the top plate 13 is attached to the bottom plate 11.

各太陽電池パネル20は、コネクタ21を有し、1つの太陽電池パネル付き覆蓋100内の複数の太陽電池パネル20が電線22によって接続される。隣接する太陽電池パネル20間を接続する電線22が連通部13bを通過することになる。端部の太陽電池パネル20には別のコネクタ23があり、ここに、このコネクタ23が設けられた太陽電池パネル付き覆蓋100にある全ての太陽電池パネル20を接続する電線22が接続され、さらにこのコネクタ23に別の電線24が接続されている。   Each solar cell panel 20 has a connector 21, and a plurality of solar cell panels 20 in one cover 100 with a solar cell panel are connected by an electric wire 22. The electric wire 22 connecting the adjacent solar cell panels 20 passes through the communication portion 13b. The solar cell panel 20 at the end has another connector 23, to which an electric wire 22 for connecting all the solar cell panels 20 in the cover 100 with the solar cell panel provided with the connector 23 is connected. Another electric wire 24 is connected to the connector 23.

この電線24は、接続部13cを通過して隣接する太陽電池パネル付き覆蓋100に達し、ここに設けられたコネクタ23を介して太陽電池パネル20と接続される。接続部13cの部分は、電線24を挿通した後、蓋13dで閉止するようになっている。   The electric wire 24 passes through the connecting portion 13c, reaches the adjacent cover 100 with a solar cell panel, and is connected to the solar cell panel 20 via the connector 23 provided here. The portion of the connecting portion 13c is closed with a lid 13d after the electric wire 24 is inserted.

太陽電池パネル20は、開口13aより若干大きく、開口13aの上に載せられ、周囲を枠体15によって天板13上に固定される。   The solar cell panel 20 is slightly larger than the opening 13 a and is placed on the opening 13 a, and the periphery is fixed on the top plate 13 by the frame body 15.

図6は、本発明の太陽電池パネル付き覆蓋100を水槽等200の両側にある蓋受部201に本体部10の端部10aを載せて架設した状態を示す図である。本発明の太陽電池パネル付き覆蓋100は、天板13が底板11より若干長くなっており、これによって、排水溝11aの両端の開口11bと蓋受部201との間に若干の隙間Sが形成されるようになっている。このような構成にすることで、排水溝11aを流れて開口11bに達した水は、蓋受部201に阻止されることなく外部に容易に流出することができる。   FIG. 6 is a view showing a state in which the cover 100 with the solar cell panel of the present invention is installed with the end 10a of the main body 10 placed on the lid receiving parts 201 on both sides of the water tank 200 or the like. In the cover 100 with a solar cell panel of the present invention, the top plate 13 is slightly longer than the bottom plate 11, whereby a slight gap S is formed between the openings 11 b at both ends of the drainage groove 11 a and the lid receiving portion 201. It has come to be. With such a configuration, the water that has flowed through the drainage groove 11a and reached the opening 11b can easily flow out to the outside without being blocked by the lid receiving portion 201.

また、本発明の太陽電池パネル付き覆蓋100は、両蓋受部201,201側を両端として中央部分が上方に膨らんだ円弧状となっている。このように中高の構成にすることで、排水溝11a内にある水を速やかに、かつ、全て排出することができる。実施例では、図示の膨らみ量をHとし、水槽等200の幅を2Lとしたとき、(H/L)=2/100となるようにしている。   Moreover, the cover 100 with a solar cell panel of the present invention has an arc shape in which the center portion swells upward with both the lid receiving portions 201 and 201 as both ends. By adopting such a medium-high configuration, all the water in the drain groove 11a can be discharged quickly and completely. In the embodiment, when the illustrated bulge amount is H and the width of the water tank 200 is 2L, (H / L) = 2/100.

以上の実施例では、排水溝11aの開口11bを太陽電池パネル付き覆蓋100の長手方向両端に設けているが、排水溝11aを水平にしたり、排水溝11aの傾斜を一方向にすることなどによって、開口を一方だけにすることもできる。また、実施例では、排水溝11aを太陽電池パネル付き覆蓋100の長手方向に形成しているが、横方向に形成し、隣接する太陽電池パネル付き覆蓋100との隙間に排水する構成とすることもできる。   In the above embodiment, the opening 11b of the drainage groove 11a is provided at both ends in the longitudinal direction of the cover 100 with the solar cell panel. However, by making the drainage groove 11a horizontal or making the inclination of the drainage groove 11a in one direction, etc. It is also possible to have only one opening. Moreover, in the Example, although the drainage groove | channel 11a is formed in the longitudinal direction of the cover 100 with a solar cell panel, it shall be formed in a horizontal direction and it shall be set as the structure drained in the clearance gap between the adjacent cover 100 with a solar cell panel. You can also.

本発明の太陽電池パネル付き覆蓋の全体を示す斜視図である。It is a perspective view which shows the whole cover with a solar cell panel of this invention. 太陽電池パネル付き覆蓋から太陽電池パネルを取り外した本体部の斜視図、The perspective view of the main-body part which removed the solar cell panel from the cover with a solar cell panel, 本体部の分解斜視図である。It is a disassembled perspective view of a main-body part. 図1のIII−III断面図である。FIG. 3 is a sectional view taken along line III-III in FIG. 1. 使用状態を示す斜視図である。It is a perspective view which shows a use condition. 本発明の太陽電池パネル付き覆蓋を水槽等に架設した状態を示す図である。It is a figure which shows the state which constructed the cover with a solar cell panel of this invention in the water tank etc. FIG.

符号の説明Explanation of symbols

10 本体部
10a 端部
11a 排水溝
11b 開口
13a 開口(空間)
13b 連通部(空間)
13c 接続部(空間)
20 太陽電池パネル
22,24 電線
100 太陽電池パネル付き覆蓋
200 水槽等
201 蓋受部
DESCRIPTION OF SYMBOLS 10 Main-body part 10a End part 11a Drainage groove 11b Opening 13a Opening (space)
13b Communication part (space)
13c Connection part (space)
20 Solar cell panel 22, 24 Electric wire 100 Cover with solar cell panel 200 Water tank 201 etc. Lid receiving part

Claims (6)

水槽等の両側に形成された蓋受部間に架設される本体部と、該本体部の上面に取り付けられた太陽電池パネルと、該太陽電池パネルの配線を収容するために太陽電池パネルの下部の前記本体に形成された空間と、該空間に形成された排水溝と、を有し、該排水溝が少なくとも1つの開口を有することを特徴とする太陽電池パネル付き覆蓋。   A main body portion installed between lid receiving portions formed on both sides of a water tank, a solar cell panel attached to the upper surface of the main body portion, and a lower portion of the solar cell panel for accommodating the wiring of the solar cell panel A cover with a solar cell panel, comprising: a space formed in the main body; and a drainage groove formed in the space, wherein the drainage groove has at least one opening. 前記排水溝が、前記本体部の一方の蓋受部側から他方の蓋受部側まで貫通形成され、本体部の両端に開口を有することを特徴とする請求項1記載の太陽電池パネル付き覆蓋。   2. The cover with a solar cell panel according to claim 1, wherein the drainage groove is formed to penetrate from one lid receiving part side of the main body part to the other lid receiving part side, and has openings at both ends of the main body part. . 前記排水溝の開口と前記蓋受部との間に隙間が形成されることを特徴とする請求項1又は2記載の太陽電池パネル付き覆蓋。   The cover with a solar cell panel according to claim 1 or 2, wherein a gap is formed between the opening of the drainage groove and the lid receiving portion. 前記排水溝が、前記開口に向かって下がる勾配を有することを特徴とする請求項1から3のいずれかに記載の太陽電池パネル付き覆蓋。   4. The cover with a solar cell panel according to claim 1, wherein the drainage groove has a slope that decreases toward the opening. 5. 前記太陽電池パネル付き覆蓋が前記両蓋受部側を両端とする円弧状であることを特徴とする請求項1から4のいずれかに記載の太陽電池パネル付き覆蓋。   5. The cover with a solar cell panel according to claim 1, wherein the cover with a solar cell panel has an arcuate shape having both ends of the lid receiving part as both ends. 前記太陽電池パネル付き覆蓋が、水槽等の上に複数個隣接して配置されるもので、前記空間が、隣接する太陽電池パネル付き覆蓋に向かって開口する接続部を有することを特徴とする請求項1から5のいずれかに記載の太陽電池パネル付き覆蓋。   The said cover with a solar cell panel is arrange | positioned adjacently on a water tank etc., and the said space has a connection part opened toward the cover with a solar cell panel adjacent. Item 6. A cover with a solar cell panel according to any one of Items 1 to 5.
JP2004160692A 2004-05-31 2004-05-31 Cover with solar panel Expired - Fee Related JP4532170B2 (en)

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JP2010050257A (en) * 2008-08-21 2010-03-04 Metawater Co Ltd Lid apparatus and its using method
JP2013118081A (en) * 2011-12-02 2013-06-13 Toyo Denso Co Ltd Handle switch
JP2015211553A (en) * 2014-04-25 2015-11-24 三菱電機株式会社 Holding frame, solar cell module, manufacturing device for solar cell module, and manufacturing method of solar cell module

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JP2010050257A (en) * 2008-08-21 2010-03-04 Metawater Co Ltd Lid apparatus and its using method
JP2013118081A (en) * 2011-12-02 2013-06-13 Toyo Denso Co Ltd Handle switch
JP2015211553A (en) * 2014-04-25 2015-11-24 三菱電機株式会社 Holding frame, solar cell module, manufacturing device for solar cell module, and manufacturing method of solar cell module

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