JP2603865B2 - Solar energy conversion panel - Google Patents

Solar energy conversion panel

Info

Publication number
JP2603865B2
JP2603865B2 JP1023951A JP2395189A JP2603865B2 JP 2603865 B2 JP2603865 B2 JP 2603865B2 JP 1023951 A JP1023951 A JP 1023951A JP 2395189 A JP2395189 A JP 2395189A JP 2603865 B2 JP2603865 B2 JP 2603865B2
Authority
JP
Japan
Prior art keywords
panel
solar energy
header
energy conversion
panel unit
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP1023951A
Other languages
Japanese (ja)
Other versions
JPH0250049A (en
Inventor
浩次 水崎
文治 早貸
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Komatsu Ltd
Original Assignee
Komatsu Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Komatsu Ltd filed Critical Komatsu Ltd
Priority to JP1023951A priority Critical patent/JP2603865B2/en
Publication of JPH0250049A publication Critical patent/JPH0250049A/en
Application granted granted Critical
Publication of JP2603865B2 publication Critical patent/JP2603865B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Classifications

    • 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
    • Y02E10/44Heat exchange systems

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は太陽エネルギを熱あるいは熱と電気に変換し
て取り出すようにした太陽エネルギ変換パネルに関する
ものである。
Description: BACKGROUND OF THE INVENTION The present invention relates to a solar energy conversion panel that converts solar energy into heat or heat and electricity and extracts it.

〔従来の技術〕[Conventional technology]

従来の太陽エネルギ変換パネルとしては、実公昭41−
23657号公報等数多くの提案がなされている。そして、
これらの従来例で、例えば上記公開公報に記載されたも
のは、複数の温水管を並設し、この各温水管のそれぞれ
の両端部のキャップを固着し、このキャップの両側壁に
互いに対向する位置の一方に雌管を固着し、他方に、こ
の雌管に挿入する挿入管を固着し、この両管を互いに嵌
合することにより、上記各温水管の相互が、それぞれの
両端部で連結する構成となっている。そして各温水管の
雌管と挿入下との嵌合部には締結ボルトが貫設してあ
り、この締結ボルトにて上記各管の連結が確実に行われ
るようにしている。
As a conventional solar energy conversion panel,
Numerous proposals have been made, such as the publication of 23657. And
In these conventional examples, for example, those described in the above-mentioned publications have a plurality of hot water pipes arranged side by side, fix caps at both ends of each of the hot water pipes, and oppose each other on both side walls of the cap. A female pipe is fixed to one of the positions, and an insertion pipe to be inserted into the female pipe is fixed to the other, and these two pipes are fitted to each other, so that the hot water pipes are connected to each other at both ends. Configuration. A fastening bolt penetrates a fitting portion between the female pipe of each hot water pipe and the bottom of the insertion pipe so that the pipes can be reliably connected by the fastening bolt.

〔発明が解決しようとする課題〕[Problems to be solved by the invention]

上記従来の太陽エネルギ変換パネルでは、各温水管の
相互を連結する連結部はキャップに設けられた雌管とこ
れに挿入する挿入管とを嵌合する構成となっていること
により、この部分がどうしてもキャップ部分の通路の断
面積が小さくなり、折角キャップ部分の通路径を大きく
したにもかかわらず、この連結部で絞られて、この部分
で流路抵抗が増加してしまうという不具合があった。
In the above-mentioned conventional solar energy conversion panel, since the connecting part for connecting the respective hot water pipes has a configuration in which the female pipe provided in the cap and the insertion pipe inserted into the female pipe are fitted, this part is formed. In spite of the fact that the cross-sectional area of the passage in the cap portion is inevitably reduced and the diameter of the passage in the bent cap portion is increased, there is a problem that the connection portion is narrowed and the flow resistance increases in this portion. .

またこれらの連結部が、各温水管の側面より突出され
ているため、この連結部で連結した温水管の相互は、上
記連結部の突出分だけ間隙がてきてしまい、太陽熱を平
面状で受けようとする場合、この間隙分だけ無駄なスペ
ースとなってしまい、その分だけ太陽エネルギの受領効
率が落ちてしまうという不具合があった。
Further, since these connecting portions protrude from the side surfaces of the respective hot water pipes, a gap is formed between the hot water pipes connected by the connecting portions by an amount corresponding to the projecting portion of the connecting portion, and receives solar heat in a planar manner. In such a case, there is a problem that the space is wasted by the amount of the gap and the receiving efficiency of the solar energy is reduced by that amount.

本発明は上記のことにかんがみなされたもので、必要
数だけ並列に連結するパネル単位体相互の連結部通路の
流路抵抗が他の部分より増加することがなく、また並設
されるパネル単位体を、相互間に隙間があくことなく連
結でき、単位平面当たりの太陽エネルギの受領効率を最
大限によくすることができるようにした太陽エネルギ変
換パネルを提供することを目的とするものである。
The present invention has been made in view of the above, and the flow path resistance of a connecting portion passage between panel unit bodies connected in parallel by a required number does not increase more than other portions. It is an object of the present invention to provide a solar energy conversion panel capable of connecting bodies without any gap between each other and maximizing the efficiency of receiving solar energy per unit plane. .

〔課題を解決するための手段〕[Means for solving the problem]

上記目的を達成するために、本発明に係る太陽エネル
ギ変換パネルは、長手方向に流路を有するパネルの両端
に、このパネルの幅方向両側に出入口を開口したヘッダ
を固着してパネル単位体を構成し、複数のこのパネル単
位体相互のヘッダの出入口の相互を連結して構成する太
陽エネルギ変換パネルにおいて、上記ヘッダの長さをパ
ネルの幅と同じにすると共に、このヘッダの両側に設け
た出入口の端面形状をフランジ状にし、このフランジ部
を互いに当接した状態で熱溶着した構成となっている。
In order to achieve the above object, a solar energy conversion panel according to the present invention is characterized in that a panel unit body is fixed to both ends of a panel having a flow path in a longitudinal direction, and headers having openings at both sides in a width direction of the panel are fixed to both ends of the panel. In a solar energy conversion panel comprising a plurality of panel units connected to each other at the entrances and exits of the headers, the length of the header is made equal to the width of the panel and provided on both sides of the header. The end face of the entrance is formed in a flange shape, and the flange portions are heat-welded in a state where they are in contact with each other.

〔作 用〕(Operation)

各パネル単位体は、各パネル単位体の両端に固着した
ヘッダの両端に開口して設けた出入口を相互に熱溶着す
ることにより相互に並列に連結される。そしてこのと
き、パネル単位体は隙間なく連結される。またヘッダに
よる接続部は、この部分の管路径が他の部分より小径に
なることがなく、この部分の流路抵抗は他の部分と同じ
になる。
The panel units are connected in parallel with each other by heat-welding the ports provided at both ends of the header fixed to both ends of the panel units. At this time, the panel unit bodies are connected without any gap. In the connection part by the header, the pipe diameter of this part does not become smaller than that of the other part, and the flow resistance of this part becomes the same as that of the other part.

〔実 施 例〕〔Example〕

本発明の実施例を図面に基づいて説明する。 An embodiment of the present invention will be described with reference to the drawings.

第1図から第3図は本発明の実施例を示すもので、第
1,第2のパネル単位体C,C′を構成する第1,第2の長手
方向に流路を有するパネル本体22,22′の両端部にヘッ
ダが熱溶着される構成になっている。
1 to 3 show an embodiment of the present invention.
First, headers are heat-welded to both ends of panel bodies 22, 22 'having flow paths in the first and second longitudinal directions constituting second panel units C, C'.

そして第1図は第1のパネル単位体Cを示すもので、
これは第1のパネル22の両端にヘッダ23,23が熱溶着さ
れている。このヘッダ23,23の両端に出入口23a,23aがフ
ランジ状に設けてある。
FIG. 1 shows the first panel unit C,
In this, headers 23, 23 are thermally welded to both ends of the first panel 22. Doors 23a, 23a are provided at both ends of the headers 23, 23 in a flange shape.

また第2図は第2のパネル単位体C′を示すもので、
これは第2のパネル22′の一端に上記第1のパネル単位
体Cに用いたものと同一のヘッダ23が熱溶着されてお
り、他端には一端にフランジ状の出入口24aを設け、他
端に管状の出入口24bを設けたヘッダ24がそれぞれ熱溶
着で固着されている。
FIG. 2 shows a second panel unit C '.
This is because the same header 23 as that used for the first panel unit C is heat-welded to one end of the second panel 22 ', and a flange-like entrance 24a is provided at one end at the other end. Headers 24 each having a tubular entrance 24b at the end are fixed by heat welding.

上記各パネル22,22′の流路と直角方向の幅は上記ヘ
ッダ23の両出入口23a,23b間の長さと同じになってい
る。
The width of each of the panels 22, 22 'in the direction perpendicular to the flow path is the same as the length between the entrances 23a, 23b of the header 23.

上記のように構成された各パネル単位体C,C′は第3
図に示すように、両側端に出入口23a,23bを有するヘッ
ダ23,23を用いた第1のパネル単位体Cを複数個なら
べ、その両側に、一端側と側面に出入口24a,24bを有す
るヘッダ24を用いた第2のパネル単位体C′を配置し、
それぞれの隣接する各パネル単位体C,C′のヘッダ23,24
の対向する出入口23a,23b,24aの相互を対接し、これを
熱溶着することにより連結して太陽エネルギ変換パネル
の構成体が構成される。
Each of the panel units C and C ′ configured as described above is the third unit.
As shown in the figure, a plurality of first panel units C using headers 23, 23 having entrances 23a, 23b at both ends are arranged, and headers having entrances 24a, 24b at one end and side surfaces are arranged on both sides thereof. 24, a second panel unit C ′ is arranged,
Headers 23, 24 of each adjacent panel unit C, C '
The opposite entrances 23a, 23b, 24a of the solar energy conversion panel are configured to be in contact with each other and connected by heat welding.

このとき各パネル単位体C,C′はそれぞれのパネル22,
22′間に隙間があくことなく並べられる。また、両側に
配置される第2のパネル単位体C′のヘッダ24の開口側
の出入口24aは部材25にて閉塞する。
At this time, each panel unit C, C ′ is connected to each panel 22,
They are arranged without a gap between 22 '. The entrance 24a on the opening side of the header 24 of the second panel unit C 'arranged on both sides is closed by the member 25.

なお上記実施例では構成体の両側に側面に1個の出入
口24bを有するヘッダ24を用いた第2のパネル単位体
C′,C′を配置した例を示したが、一方にだけ上記第2
のパネル単位体C′を用い、あるいは、両端に出入口23
a,23bを有するヘッダ23を用いた第1のパネル単位体C,C
だけで構成体を構成してもよい。この場合も、両側部に
開口するそれぞれ2個の出入口の一方を部材25にて閉塞
する。
In the above-described embodiment, the second panel unit C ', C' using the header 24 having one entrance 24b on the side surface on both sides of the structure is shown, but only the second
Using a panel unit C 'of
First panel unit C, C using header 23 having a, 23b
The structure may be constituted only by the above. Also in this case, one of the two entrances opened on both sides is closed by the member 25.

上記構成において、入口から供給された熱媒体は矢印
261,〜26nで示すように、各パネル本体22を経て太陽エ
ネルギを吸収した後、矢印271,〜27nで示す経路を通っ
て出口へと排出される。
In the above configuration, the heat medium supplied from the inlet is indicated by an arrow.
As indicated by 26 1 and 26 n, the solar energy is absorbed through each panel body 22 and then discharged to the outlet through the paths indicated by arrows 27 1 and 27 n.

このとき、各パネル単位体C,C′は各ヘッダ23,24の対
向する出入口23a,23b,24aにて接続されるが、この各接
続部は各出入口を対接して溶着されていることにより、
この接続部の通路断面積はヘッダの他の部と略同一、少
なくとも小さくならない。このため、この部分での流路
抵抗の増加はない。
At this time, each panel unit C, C 'is connected at the facing entrances 23a, 23b, 24a of the headers 23, 24, and this connection portion is welded by contacting each entrance and exit. ,
The passage cross-sectional area of this connection is substantially the same as at least the other parts of the header and at least does not decrease. Therefore, there is no increase in flow path resistance at this portion.

なお上記構成の各パネル単位体C,C′の各パネル22,2
2′の表面に太陽光を受けて発電する太陽電池素子を取
付けてもよい。
Each panel 22, 2 of each panel unit C, C 'having the above configuration
A solar cell element that receives sunlight and generates power may be attached to the surface of 2 ′.

〔発明の効果〕〔The invention's effect〕

本発明によれば、必要数だけ並列に連結するパネル単
位体相互の連結部の流路径が、連結によって小系になる
ことがなく、開口径のまま連結されることにより、この
連結部通路の流路抵抗が他の部分より増加するのを防止
できる。
According to the present invention, the flow path diameter of the connecting portion of the panel unit bodies connected in parallel by the required number does not become small due to the connection, and the connection is performed with the opening diameter, so that the connection portion passage is formed. The flow path resistance can be prevented from increasing more than other parts.

また、各パネル単位体の相互を連結するヘッダの長さ
がパネル単位体の幅と同じにしたことにより、各パネル
単位体は相互間の隙間があくことなく連結され、単位平
面当たりの太陽エネルギの受領効率を最大限によくする
ことができる。
In addition, since the length of the header connecting each panel unit is the same as the width of the panel unit, each panel unit is connected without any gap between them, and the solar energy per unit plane is increased. The receiving efficiency can be maximized.

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

第1図から第3図は本発明の実施例を示すもので、第1
図、第2図はパネル単位体の分解斜視図、第3図は全体
平面図である。 22,22′はパネル本体、23,24はヘッダ。
1 to 3 show an embodiment of the present invention.
FIG. 2 is an exploded perspective view of the panel unit, and FIG. 3 is an overall plan view. 22,22 'is the panel body, 23,24 is the header.

Claims (1)

(57)【特許請求の範囲】(57) [Claims] 【請求項1】長手方向に流路を有するパネルの両端に、
このパネルの幅方向両側に出入口を開口したヘッダを固
着してパネル単位体を構成し、複数のこのパネル単位体
相互のヘッダの出入口の相互を連結して構成する太陽エ
ネルギ変換パネルにおいて、 上記ヘッダの長さをパネルの幅と同じにすると共に、こ
のヘッダの両側に設けた出入口の端面形状をフランジ状
にし、このフランジ部を互いに当接した状態で熱溶着し
たことを特徴とする太陽エネルギ変換パネル。
1. A panel having a flow path in the longitudinal direction, at both ends of the panel.
In a solar energy conversion panel, a panel unit is formed by fixing headers each having an opening on both sides in the width direction of the panel to form a panel unit, and a plurality of the panel units are connected to each other through the doors of the header. The length of the panel is the same as the width of the panel, the end faces of the entrances provided on both sides of the header are formed in a flange shape, and the flange portions are heat-welded in a state of being in contact with each other. panel.
JP1023951A 1988-04-04 1989-02-03 Solar energy conversion panel Expired - Fee Related JP2603865B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1023951A JP2603865B2 (en) 1988-04-04 1989-02-03 Solar energy conversion panel

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
JP8352588 1988-04-04
JP63-83525 1988-04-04
JP1023951A JP2603865B2 (en) 1988-04-04 1989-02-03 Solar energy conversion panel

Publications (2)

Publication Number Publication Date
JPH0250049A JPH0250049A (en) 1990-02-20
JP2603865B2 true JP2603865B2 (en) 1997-04-23

Family

ID=26361388

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1023951A Expired - Fee Related JP2603865B2 (en) 1988-04-04 1989-02-03 Solar energy conversion panel

Country Status (1)

Country Link
JP (1) JP2603865B2 (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR100692950B1 (en) * 2005-08-12 2007-03-12 한국에너지기술연구원 Flat-Plate Solar Collector using Channel Type Absorber Plate
KR101012447B1 (en) * 2008-08-07 2011-02-08 (주)천호산업 The solar energy collecting plate for outer decoration of architecture
JP5266162B2 (en) * 2009-08-21 2013-08-21 治生 藤本 Heat recovery device using hollow panel and its method

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS4123657Y1 (en) * 1964-09-28 1966-12-01
JPS5313633U (en) * 1976-07-17 1978-02-04

Also Published As

Publication number Publication date
JPH0250049A (en) 1990-02-20

Similar Documents

Publication Publication Date Title
US4183402A (en) Heat exchanger headering arrangement
US5927396A (en) Multi-fluid heat transfer device having a plate stack construction
KR880001489B1 (en) Steam generator tube supports
US5016707A (en) Multi-pass crossflow jet impingement heat exchanger
US6938688B2 (en) Compact high efficiency clam shell heat exchanger
US10465996B2 (en) Method of manufacturing a heat exchanger assembly having a sheet metal distributor/collector tube
KR930020135A (en) High efficiency evaporator, its cooling method and heat exchanger
JPS6222076B2 (en)
US6341650B2 (en) Heat exchanger
US4136675A (en) Solar collector
JP2603865B2 (en) Solar energy conversion panel
US4625794A (en) Plastic heat exchanger construction
JP3056829B2 (en) Solid oxide fuel cell
WO2024082953A1 (en) Battery pack heat dissipation device, battery pack, and vehicle
JPH10213382A (en) Composite heat exchanger
JP2000228207A (en) Separator for fuel cell, and fuel cell
CS202599B2 (en) Lamellar heat exchanger
JP2761517B2 (en) Plate heat exchanger
US4432414A (en) Dual circuit embossed sheet heat transfer panel
GB2110812A (en) Heat exchanger
JPH0547960Y2 (en)
JPH1096504A (en) Heat exchanger
US5909767A (en) Recuperative cross flow plate-type heat exchanger
WO2002097354A1 (en) A heat exchanger
WO1998049501A1 (en) Solar absorbers

Legal Events

Date Code Title Description
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 19961105

LAPS Cancellation because of no payment of annual fees