JPS6012997Y2 - Heat storage type solar heat collector - Google Patents

Heat storage type solar heat collector

Info

Publication number
JPS6012997Y2
JPS6012997Y2 JP1980154405U JP15440580U JPS6012997Y2 JP S6012997 Y2 JPS6012997 Y2 JP S6012997Y2 JP 1980154405 U JP1980154405 U JP 1980154405U JP 15440580 U JP15440580 U JP 15440580U JP S6012997 Y2 JPS6012997 Y2 JP S6012997Y2
Authority
JP
Japan
Prior art keywords
heat
heat storage
fins
storage device
collector
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
Application number
JP1980154405U
Other languages
Japanese (ja)
Other versions
JPS5777856U (en
Inventor
功 野村
光治 藤井
Original Assignee
ダイキン工業株式会社
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 ダイキン工業株式会社 filed Critical ダイキン工業株式会社
Priority to JP1980154405U priority Critical patent/JPS6012997Y2/en
Publication of JPS5777856U publication Critical patent/JPS5777856U/ja
Application granted granted Critical
Publication of JPS6012997Y2 publication Critical patent/JPS6012997Y2/en
Expired 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

Landscapes

  • Other Air-Conditioning Systems (AREA)

Description

【考案の詳細な説明】 本考案は蓄熱形太陽熱集熱装置の改良に関するものであ
る。
[Detailed Description of the Invention] The present invention relates to an improvement of a heat storage type solar heat collector.

1 、、従来の蓄熱形太陽
熱集熱装置にはく・密閉汲置式のものや強制循環式のも
のがあるが、前者は水容器がそのまま集熱器を兼ねてい
るため、集熱性能が劣り、かつ蓄熱材と取出用熱媒は同
じものでなければならないという制約があり、又後者は
集熱器と貯湯槽(蓄熱槽を兼ねる)とが別個に設けられ
ているため、゛大きな設置スペースを必要とするととも
に、経済的にも高価となるという問題があつた。
1. Conventional heat storage type solar heat collectors include the foil/sealed pump type and the forced circulation type, but the former has poor heat collection performance because the water container also serves as the heat collector. , and there is a restriction that the heat storage material and the heat transfer medium for extraction must be the same, and the latter requires a separate heat collector and hot water storage tank (which also serves as a heat storage tank), so it requires a large installation space. There was a problem in that it required a large amount of equipment and was also economically expensive.

本考案は従来の蓄熱形太陽熱集勢装置」とおける上、記
の如き問題を改善するためになさ、れたもので、集熱器
と蓄熱器とを7体化、す、るとともに1.5集熱器から
蓄熱器べの伝熱作用Qび蓄熱器から、熱取出用の熱媒管
への1伝熱作用を向上せしめ、ることにより1、製品価
格の低減と、設置スペースの節約ヲ図りつつじp)も集
熱効率と熱利用効率の向上を図ることのできる蓄熱層太
陽Q熱装蝉を提供することを目的とするものである。
This invention was made to improve the problems described above in the conventional heat storage type solar heat concentration device, and it has seven heat collectors and heat storage devices, and 1. 5 Improves the heat transfer effect from the heat collector to the heat storage device Q and 1 Heat transfer effect from the heat storage device to the heat transfer pipe for heat extraction, thereby 1. Reducing the product price and saving installation space. Another object of the present invention is to provide a heat storage layer solar Q heating device that can improve heat collection efficiency and heat utilization efficiency.

以下1.図示の実施例&=より本考寡Φ蓄勢歩太陽熱集
熱装置を説明する7と、本考案の第1実施例を示す第1
図ないし第4図において、符号1は長方形枠状のケ、−
シイグ、2は萌、ケ7シング1の内側に取付けられた有
底箱状の断熱材、3は後に詳述するいく?かρ隼熱器9
,9・・からなφ集熱ユニット1.・、4は集熱ユ干ッ
ト73.と9間で勢交換を行う蓄熱器で、蓄勢器4.は
熟阜導性の材料(kと本ば金属あるりは粉末カフボン入
りポリ1千テレン等)からなる密v!3賽璧21内に固
体、碑体聞令相変化する蓄熱材、(りとえば’CaC1
,@ 6H20) 、22を過冷却防止材(たとえζ峰
rc12・4o)、bよび増粘材たとえばSiQりなど
を混合して使用する。
Below 1. 7 to explain the solar heat collecting device according to the illustrated embodiment &=, and 1 to explain the first embodiment of the present invention.
In the figures to FIG. 4, the code 1 is a rectangular frame-shaped case,
2 is a box-shaped insulation material with a bottom attached to the inside of the casing 1, and 3 is a box-shaped insulation material that will be explained in detail later. Kaρ Hayabusa Heater 9
, 9... φ heat collection unit 1.・、4 is the heat collection unit drying unit 73. This is a heat storage device that performs power exchange between energy storage device 4. is made of a highly conductive material (such as metal or poly 1,000 terene with powder cuffbon). 3 Inside the sapi 21 is a solid, heat storage material that changes phase depending on the shape of the monument (Litoba'CaC1
, @ 6H20), 22 is used in combination with a supercooling prevention material (for example, ζ peak rc12.4o), b, and a thickening material such as SiQ.

その他の蓄熱材としては表1に5記載のものが使用でき
る。
As other heat storage materials, those listed in 5 in Table 1 can be used.

1符号5はケーシング1上面を覆うガラス
板であり、6はガラス板の下側に張設されたネオフロン
フィルムであり、太陽熱の透過を許容する一方、下方の
集熱ユニット3側からの放熱を可及的に防止する作用す
る。
1 numeral 5 is a glass plate that covers the upper surface of the casing 1, and 6 is a neoflon film stretched on the lower side of the glass plate, which allows the transmission of solar heat while dissipating heat from the lower heat collection unit 3 side. It works to prevent this as much as possible.

三の第1実施例では、各集熱器9は横断面T字状で、′
両側水平方向にのびる二対め太陽熱集熱用ナイン(以下
、″単に集熱フィシという)12,12′と、蓄熱材2
2の深部にまで埋込量れるフィン(以下、埋込フィンと
いう)11とを看し゛、上部め南フィンの交点に熱媒管
通路14を有す゛る熱媒管10を熱(太陽熱)”吸収性
材料で一体威型し、その表面に熱線選択吸収膜を付設し
て形成されている。
In the first embodiment, each heat collector 9 has a T-shaped cross section, and
Two pairs of solar heat collecting nines (hereinafter simply referred to as "heat collecting fish") 12, 12' extending horizontally on both sides, and a heat storage material 2
The heat medium pipe 10, which has a heat medium pipe passage 14 at the intersection of the upper and south fins, is used to absorb heat (solar heat). It is made of a heat-resistant material and has a heat ray selective absorption film attached to its surface.

−□集熱器9
の集熱フィン12.12・・は蓄熱器4め容器21の上
面21a′に密着載置される上方、゛埋込フィン11は
容器21の一部を蓄熱材22′中に深く没入せしめてな
る容器没入部21b゛内に密着挟持さhiいる。
−□ Heat collector 9
The heat collecting fins 12, 12... are placed above the upper surface 21a' of the fourth heat storage container 21, and the embedded fins 11 deeply immerse a part of the container 21 into the heat storage material 22'. The container is tightly held in the container recessed part 21b.

ま゛た、洛集熱器嚢。9・)・−は一対のヘッダー8.
18間に相互に平行をと配列され、それぞれの熱媒管1
0の上端を一方のヘッダ=8に、”又他の一端を他方の
ヘラダニ1^に接続してい”る。
Also, Raku heat collector bag. 9.)・- is a pair of headers 8.
18 are arranged parallel to each other, and each heat medium tube 1
The upper end of 0 is connected to one header 8, and the other end is connected to the other header 1^.

一方のへy”if =8i□こは熱媒入口管゛7、□他
方のヘッダー1”8にぼ熱媒出口管19力噛続せ゛され
ている。
One header y"if =8i is connected to a heat medium inlet pipe 7, and a heat medium outlet pipe 19 is connected to the other header 1"8.

そして集熱ユニット3と熱利用機器層6とポンプ15と
で密閉循環回路番形成するもめである二゛・ □′
次に1.筆記の構成になる蓄熱形太陽熱集熱装置の作用
について説明する。
The heat collecting unit 3, the heat utilization equipment layer 6, and the pump 15 form a closed circulation circuit number.
Next 1. The operation of the heat storage type solar heat collecting device that has a writing configuration will be explained.

該装置は、日中、゛各集熱器9によって太陽熱を吸収し
、それによって蓄熱器4中の蓄熱材22を加熱溶融せし
める。
During the day, the device absorbs solar heat through each heat collector 9, thereby heating and melting the heat storage material 22 in the heat storage device 4.

その場合、各集熱器9は蓄熱器4の上部に水平に配設し
た一対の集熱フィン12.12で上方より蓄熱材22を
加熱するとともに深部まで没入する埋込フィン1Fを有
しているために、蓄熱器の深部の蓄熱材22を直接加熱
して両フィン11.12により効率よく蓄熱作用を行う
ことができる。
In that case, each heat collector 9 heats the heat storage material 22 from above with a pair of heat collecting fins 12, 12 arranged horizontally on the upper part of the heat storage device 4, and has embedded fins 1F that are sunk deep into the heat storage material 22. Therefore, the heat storage material 22 in the deep part of the heat storage device can be directly heated and the heat storage effect can be efficiently performed by both fins 11 and 12.

この蓄熱装置から熱を取り出す場合は、ポンプ15によ
って熱媒入口管″7から熱媒を集熱ユニット3″に送り
、°゛熱媒各集熱器9,9・・の熱媒管通路14を通過
する間に蓄熱材22から、熱、(顕熱及び凝固潜熱)を
吸収して、その熱を給湯器或いは暖房器等の熱利用機器
16において放熱する。
When extracting heat from this heat storage device, the heat medium is sent from the heat medium inlet pipe "7" to the heat collection unit 3" by the pump 15, and While passing through the heat storage material 22, heat (sensible heat and latent heat of solidification) is absorbed, and the heat is radiated in a heat utilization device 16 such as a water heater or a space heater.

この場合も、各集熱器9の埋込フィン11が蓄熱器深部
の蓄熱材22から直接的に熱を吸収するため水平番と配
設した一対集熱フイン12.12の熱吸収と相まって蓄
熱器4からの熱の取出し効率がよく、□短時間で比較的
多量の熱を熱利用機器へ伝達することができる。
In this case as well, since the embedded fins 11 of each heat collector 9 directly absorb heat from the heat storage material 22 deep in the heat storage device, the heat is stored in combination with the heat absorption of the pair of heat collection fins 12 and 12 arranged horizontally. The efficiency of extracting heat from the vessel 4 is high, and a relatively large amount of heat can be transferred to heat utilization equipment in a short period of time.

集熱ユニット3へ供給される熱媒としては、水、プロジ
ガスミブライン等が使用可能である。
As the heat medium supplied to the heat collecting unit 3, water, prodigas mibrine, etc. can be used.

次に、第4図は本考案の第2実施例の蓄熱形の太陽熱集
熱装置で使用される集熱ユニット3と蓄熱器4の構造を
示している。
Next, FIG. 4 shows the structure of a heat collection unit 3 and a heat storage device 4 used in a heat storage type solar heat collection device according to a second embodiment of the present invention.

とめ実施例の集熱ユニット3は、単一の集熱フィン32
め下側番こ複数枚の埋込フィシ31,311′・を一体
的に垂設し、該埋込フィン31,31竺・を蓄熱器4め
蓄熱材42中に没入せしめている竺そして、各埋込フィ
ン31.31・・の中間部比は内部に熱媒管通路34.
34・・を有する熱媒管30,30・・が一体形成され
、各熱媒管3・0.30・・の両端は第1図の場合と同
様に熱媒入口側のヘッダー8及び熱媒出口側のヘッダー
18に接続されている。
The heat collecting unit 3 of the stopper embodiment has a single heat collecting fin 32.
A plurality of embedded fins 31, 311' are integrally installed vertically on the lower side, and the embedded fins 31, 31' are immersed in the heat storage material 42 of the heat storage device 4, and The intermediate portion of each embedded fin 31, 31... has a heat medium pipe passage 34 inside.
Heat medium pipes 30, 30... having 34... are integrally formed, and both ends of each heat medium pipe 3, 0.30... are connected to the header 8 on the heat medium inlet side and the heat medium as in the case of Fig. 1. It is connected to the header 18 on the exit side.

又、蓄熱器4は上方開口の有底容器41内に蓄熱材42
を充填し、該容器41の開口部を集熱ユニット3の集熱
フィン32で密閉して構成されている。
In addition, the heat storage device 4 has a heat storage material 42 in a bottomed container 41 with an upward opening.
The opening of the container 41 is sealed with the heat collecting fins 32 of the heat collecting unit 3.

−′第5図は本考案の第
3実施例の太陽熱集熱装置で使用される集熱ユニット3
と蓄熱器4の構造を示している。
-'Figure 5 shows a heat collection unit 3 used in a solar heat collection device according to the third embodiment of the present invention.
and shows the structure of the heat storage device 4.

この実施例の集熱ユニット3は、上方開口の有底蓄熱器
容器61内に充填された蓄熱材62中に全面的に没入す
る下部ブロック36と、該下部ブロック3・、6の上端
フィン(集熱フィンとなる)52に接触し且つ蓄熱器容
器61の開口を密閉する中間板37と、中間板37上に
載置される上部ブロック38とから構成されている。
The heat collection unit 3 of this embodiment includes a lower block 36 that is completely immersed in a heat storage material 62 filled in a bottomed heat storage container 61 with an upper opening, and an upper end fin ( It consists of an intermediate plate 37 that contacts the heat collecting fins) 52 and seals the opening of the heat storage container 61, and an upper block 38 placed on the intermediate plate 37.

上部ブロック38は第1図の集熱器9と同一材料からな
り、中間板37は温度によって形状が可逆的に変化する
形状記憶合金からなりζさらに下部ブロック361よ上
部ブロック38ど同一材料または他の伝熱性材料からな
っている。
The upper block 38 is made of the same material as the heat collector 9 in FIG. Made of heat conductive material.

下部ブロック36は上下方向に延びる埋込フィン51の
中間に内部に熱媒管通路54を有する2本の熱媒管50
.50を一体形成し、各熱媒管50の両側方にさらに水
平方向に延びる埋込フィン53.53を一体延設し、さ
らに、上下方向埋込フィン51の上、下端に上端フィン
(集熱フィン)52及び下端フィン55を一体形成して
いる。
The lower block 36 has two heat medium pipes 50 having a heat medium pipe passage 54 therein between the embedded fins 51 extending in the vertical direction.
.. 50 are integrally formed, embedded fins 53, 53 extending horizontally on both sides of each heat medium pipe 50 are integrally extended, and upper end fins (heat collecting fins) 52 and lower end fins 55 are integrally formed.

上部ブロック38は平板状の受熱板45の下面に、各下
部ブロック36の直上方位置において脚フィン46.4
6・・を一体形成している。
The upper block 38 has leg fins 46.4 on the lower surface of the flat heat receiving plate 45 at a position directly above each lower block 36.
6... are integrally formed.

この実施例では、日照時は形状記憶合金で形成した中間
板37が温度上昇して、平板状となり上部ブロック38
の脚フィン46と中間板37と下部ブロック36の上端
フィン(集熱フィン)52とが密着して、上部ブロック
38で吸収した太陽熱を中間板37及び下部ブロック3
6.を介して蓄熱材62に伝達し、該蓄熱材62.全加
熱溶融させる。
In this embodiment, during sunshine, the temperature of the intermediate plate 37 made of a shape memory alloy rises, and the upper block 38 becomes flat.
The leg fins 46, intermediate plate 37, and upper end fins (heat collection fins) 52 of the lower block 36 are in close contact with each other, and the solar heat absorbed by the upper block 38 is transferred to the intermediate plate 37 and the lower block 3.
6. is transmitted to the heat storage material 62 via the heat storage material 62. Heat and melt completely.

これに対して、夜間又は雨天等′のように上部ブロック
3Bが太陽熱を吸収しない崎は、□形状記憶合金で形威
した中間板37が輝度低下Fより上方に変形して下部ブ
ロック36の上端フィン(集熱フィン)52から離間し
、蓄熱器4側から中間板37及び上部ブロック38側へ
の伝熱が遮断されるようになっている。
On the other hand, when the upper block 3B does not absorb solar heat, such as at night or on rainy days, the intermediate plate 37 made of shape memory alloy deforms above the brightness reduction F, and the upper end of the lower block 36 It is spaced apart from the fins (heat collecting fins) 52, so that heat transfer from the heat storage device 4 side to the intermediate plate 37 and upper block 38 side is blocked.

即ち、第5図の実施例では、上部ブロック38と下方の
蓄熱器4との間の熱交換は一方向にのみ可能で、それに
よって夜間等における蓄熱器4からの放熱損失を可及的
に低減せしめるようにしている。
That is, in the embodiment shown in FIG. 5, heat exchange between the upper block 38 and the lower heat storage device 4 is possible only in one direction, thereby minimizing heat radiation loss from the heat storage device 4 during nighttime, etc. We are trying to reduce it.

下部ブロック3・6の各熱媒管50の両端は、第1図の
場合と同様に熱媒入口側のヘッダー8と熱媒出口側のヘ
ッダー18に接続されている。
Both ends of each heat medium pipe 50 of the lower blocks 3 and 6 are connected to the header 8 on the heat medium inlet side and the header 18 on the heat medium outlet side, as in the case of FIG. 1.

第6図は本考案の第4実施例の集熱ユニット3と蓄熱器
4との構造を示している。
FIG. 6 shows the structure of a heat collecting unit 3 and a heat accumulator 4 according to a fourth embodiment of the present invention.

この実施例では、集熱ユニット3と蓄熱器4とは二重管
構造とした真空管で形威され、外管68と内管69との
間を真空断熱層とし内管69内に集熱ユニット3の埋込
フィン72を蓄熱器4の蓄熱材82内に没入させて形威
している。
In this embodiment, the heat collecting unit 3 and the heat accumulator 4 are formed of vacuum tubes with a double pipe structure, and a vacuum heat insulating layer is formed between the outer pipe 68 and the inner pipe 69, and the heat collecting unit is inside the inner pipe 69. The embedded fins 72 of No. 3 are immersed into the heat storage material 82 of the heat storage device 4 to form an impressive shape.

そして外部に熱を取出す熱媒管をヒートパイプ70に形
威しその内部通路74にR−11,12などのフロンガ
スやアルコールなどの冷媒を適宜量封入するものである
A heat medium tube for extracting heat to the outside is formed into a heat pipe 70, and an appropriate amount of a refrigerant such as fluorocarbon gas such as R-11 or 12 or alcohol is sealed in the internal passage 74 of the heat pipe 70.

続いて本考案の効果について説明すると、本考案の蓄熱
形太陽熱集熱装置は、集熱ユニットと蓄熱器とを一体化
して直接熱交換可能な位置関係において同一ケーシング
内に配設されているので、集熱性能が向上するとともに
、設置スペースが節約され且つ価格の低減を図ることが
できるという効果がある。
Next, to explain the effects of the present invention, the heat storage type solar heat collection device of the present invention integrates the heat collection unit and the heat storage device and is arranged in the same casing in a positional relationship that allows direct heat exchange. This has the effect of improving heat collection performance, saving installation space, and reducing cost.

又、本考案によれば集熱フィンと一体化された埋込フィ
ンが蓄熱器の深部にまで没入せしめられてい、るので伝
熱面積の増大が図られ且つ深部の蓄熱材が直接加熱され
て集熱効率が高まるとともに、蓄熱材か、ら熱を取出す
場合にも深部の蓄熱材が保有する熱を該埋込フィンを介
して直接熱媒管に伝達し、それによって熱利用効率が高
まる効果がある。
In addition, according to the present invention, the embedded fins integrated with the heat collecting fins are immersed deep into the heat storage device, so that the heat transfer area is increased and the heat storage material in the deep part is directly heated. In addition to increasing heat collection efficiency, when extracting heat from the heat storage material, the heat held in the deep heat storage material is directly transferred to the heat medium pipe through the embedded fins, thereby increasing heat utilization efficiency. be.

さらに本考案につれば、蓄熱器として固体、液体間を相
変化する蓄熱材を使用しているので蓄熱材め凝固潜熱を
利用して多量の熱をしかも短時間で吸収又は取出しでき
ることになり、小型で高性能の太陽熱集熱装置となし得
る効果がある。
Furthermore, according to this invention, since a heat storage material that changes phase between solid and liquid is used as a heat storage device, a large amount of heat can be absorbed or taken out in a short time by utilizing the latent heat of solidification of the heat storage material, and it is compact. It has the effect of being a high-performance solar heat collector.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本考案の実施例にかかる蓄熱形太陽熱集熱装置
の一部内示平面図、第2図は第1図の装置の一部内示側
面図、第3図は第1図における■−m断面拡大図、第4
図は本考案の第2実施例の装置における集熱ユニットの
形状説明図、第5図は本考案の第3実施例の装置におけ
る集熱ユニットの形状説明図、第6図イ9口は本考案の
第4実施例の装置におかる集熱ユニットの形状説明図で
ある。 1・・・・・・ケーシング、3・・・・・・集熱ユニッ
ト、4・・・・・・蓄熱器、10.30.5G、To・
・・・・・熱媒管、11.31,51,71・曲・埋込
フィン、12゜32.52.72・・曲集熱フィン、2
2,42゜62.82・・・・・・蓄熱材。
Fig. 1 is a plan view showing a part of the solar heat collector according to an embodiment of the present invention, Fig. 2 is a side view showing a part of the device shown in Fig. 1, and Fig. 3 is a - - in Fig. 1. Enlarged view of m cross section, 4th
The figure is an explanatory diagram of the shape of the heat collecting unit in the device according to the second embodiment of the present invention, FIG. 5 is an explanatory diagram of the shape of the heat collecting unit in the apparatus according to the third embodiment of the present invention, and It is a shape explanatory view of the heat collection unit in the device of the fourth example of the invention. 1... Casing, 3... Heat collection unit, 4... Heat storage device, 10.30.5G, To.
...Heat medium pipe, 11.31,51,71・Curved/embedded fin, 12゜32.52.72...Curved heat collecting fin, 2
2,42゜62.82... Heat storage material.

Claims (1)

【実用新案登録請求の範囲】 ゛ケーシング1の内側下部に有底箱状の断熱材2を取付
け、該断熱材2内側を固体、−液体間を相変化する熱媒
を使用した蓄熱材22,42.62゜82を内蔵した蓄
熱器4に形成する一方、ケーシング1の内側上部に太陽
熱を吸収する集熱フィン12.32,52.72と、□
前記蓄熱器4の深部に没入する埋込フィン11,31,
51,71と、蓄熱材22,4・2,62.82の熱を
外部へ熱伝達するための熱媒管10.30.50. T
。 とを一体にして集熱ユニット3を形成し、該集熱ユニッ
ト3と前記蓄熱器4とを熱交換可能に形成したことを特
徴とする蓄熱形太陽熱集熱装置。
[Claims for Utility Model Registration] ゛A bottomed box-shaped heat insulating material 2 is attached to the inner lower part of the casing 1, and the heat storage material 22 using a heat medium that changes phase between solid and liquid inside the heat insulating material 2, 42.62°82 is formed in the heat storage 4 with a built-in heat collecting fin 12.32, 52.72 that absorbs solar heat on the inside upper part of the casing 1, and □
embedded fins 11, 31, which are immersed deep into the heat storage device 4;
51, 71, and heat medium pipes 10, 30, 50 for transferring the heat of the heat storage materials 22, 4, 2, 62, 82 to the outside. T
. A heat storage type solar heat collecting device characterized in that a heat collecting unit 3 is formed by integrating the heat collecting unit 3 and the heat storage device 4, and the heat collecting unit 3 and the heat storage device 4 are formed so as to be able to exchange heat.
JP1980154405U 1980-10-28 1980-10-28 Heat storage type solar heat collector Expired JPS6012997Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1980154405U JPS6012997Y2 (en) 1980-10-28 1980-10-28 Heat storage type solar heat collector

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1980154405U JPS6012997Y2 (en) 1980-10-28 1980-10-28 Heat storage type solar heat collector

Publications (2)

Publication Number Publication Date
JPS5777856U JPS5777856U (en) 1982-05-14
JPS6012997Y2 true JPS6012997Y2 (en) 1985-04-25

Family

ID=29513630

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1980154405U Expired JPS6012997Y2 (en) 1980-10-28 1980-10-28 Heat storage type solar heat collector

Country Status (1)

Country Link
JP (1) JPS6012997Y2 (en)

Families Citing this family (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8938919B2 (en) 2007-09-21 2015-01-27 Andalay Solar, Inc. Electrical connectors for solar modules
WO2011025585A2 (en) 2009-07-02 2011-03-03 Zep Solar, Inc. Pivot-fit frame, and method for photovoltaic modules
US9518596B2 (en) 2009-07-02 2016-12-13 Solarcity Corporation Pivot-fit frame, system and method for photovoltaic modules
US20110000544A1 (en) 2009-07-02 2011-01-06 West John R Drop-in connection apparatus, system, and method for photovoltaic arrays
US20120298188A1 (en) 2009-10-06 2012-11-29 Zep Solar, Inc. Method and Apparatus for Forming and Mounting a Photovoltaic Array
WO2012079061A1 (en) 2010-12-09 2012-06-14 Zep Solar, Inc. Skirt for photovoltaic arrays
WO2012116121A1 (en) 2011-02-22 2012-08-30 Zep Solar, Inc. Pivot-fit frame, system and method for photovoltaic modules
US9320926B2 (en) 2012-06-28 2016-04-26 Solarcity Corporation Solar panel fire skirt

Also Published As

Publication number Publication date
JPS5777856U (en) 1982-05-14

Similar Documents

Publication Publication Date Title
US3996919A (en) System for collecting and storing solar energy
CN101231037A (en) Columnating type solar thermal collector
JPS6012997Y2 (en) Heat storage type solar heat collector
KR100400435B1 (en) Thermal expansion absorbing apparatus of double vacuum tube type solar collector
JP2002031414A (en) Solar collector
US4088118A (en) Heat exchanger
CN110906428A (en) Phase-change heat storage type solar heat pipe heater
CN107218734B (en) The solar powered heating of one kind is for cold triple supply system
CN2133807Y (en) Heat-storing tube type solar-energy focusing piece
CN107044736B (en) Phase-change heat-storage anti-freezing solar heat collector
CN210980405U (en) Two-stage circular ring baffling type solar phase change energy storage device
CN211650792U (en) Portable small solar heat pipe heater
EP0015017B1 (en) Heat transport tube solar collector and system comprising at least such a collector
CN103743123A (en) Solar water heater
CN105444433A (en) Horizontal heat storing box
CN207649147U (en) The solar powered heating of one kind is for cold triple supply system
CN207379094U (en) Solar energy heat-storage tank
CN205783884U (en) A kind of solar water heater
CN202082976U (en) Electromagnetic oven
US4196716A (en) Inert focusing photon energy collector
KR100449957B1 (en) Double vacuum tube type solar collector using ample and thermal expansion absorbing apparatus
CN211316600U (en) Solar heat collecting device
CN217520075U (en) High-efficient conversion highlight heat solar water heater
JPH0131112B2 (en)
KR100228234B1 (en) Heat exchange system structure