JPH09257262A - Heat accumulation layer of heat accumulation hot water floor heating panel - Google Patents

Heat accumulation layer of heat accumulation hot water floor heating panel

Info

Publication number
JPH09257262A
JPH09257262A JP6758196A JP6758196A JPH09257262A JP H09257262 A JPH09257262 A JP H09257262A JP 6758196 A JP6758196 A JP 6758196A JP 6758196 A JP6758196 A JP 6758196A JP H09257262 A JPH09257262 A JP H09257262A
Authority
JP
Japan
Prior art keywords
heat storage
hot water
housing
heat
storage layer
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.)
Granted
Application number
JP6758196A
Other languages
Japanese (ja)
Other versions
JP3296963B2 (en
Inventor
Nobuaki Yabunouchi
伸晃 薮ノ内
Mikio Sei
三喜男 清
Akira Sugawara
亮 菅原
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.)
Panasonic Electric Works Co Ltd
Original Assignee
Matsushita Electric Works 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 Matsushita Electric Works Ltd filed Critical Matsushita Electric Works Ltd
Priority to JP06758196A priority Critical patent/JP3296963B2/en
Publication of JPH09257262A publication Critical patent/JPH09257262A/en
Application granted granted Critical
Publication of JP3296963B2 publication Critical patent/JP3296963B2/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

PROBLEM TO BE SOLVED: To provide a heat accumulation layer to prevent the occurrence of deformation and migration of a heat accumulating material even when hot water is caused to pass through for a long period and have excellent durability. SOLUTION: This heat accumulation layer of a heat accumulation hot water heating panel to radiate, in order, the heat of hot water stored at the heat accumulation layer from a panel surface comprises a housing 2, and a heat accumulating material 4 disposed in the housing 2. The surface of the heat accumulation material 4 is brought into contact with the tips of a plurality of rib pieces 5 formed in a protruding manner on the surface of the heat accumulating material 4 along a flow-through direction of hot water in the housing 2 and the heat accumulation material 4 is held in a state to prevent migration and deformation. A hot water flow passage is formed between the inner wall surface of the housing 2 and the surface of the heat accumulation material 4.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【発明の属する技術分野】この発明は、蓄熱式温水床暖
房パネルの幾熱層に関するものである。さらに詳しく
は、この発明は、蓄熱層に蓄えた温水の熱をパネル表面
より順次に放熱する蓄熱式の温水床暖房パネルの蓄熱層
であって、温水を長期に渡って通水させても蓄熱材が変
形・移動することのない新しい蓄熱層に関するものであ
る。
TECHNICAL FIELD The present invention relates to a heat storage layer of a heat storage type hot water floor heating panel. More specifically, the present invention relates to a heat storage layer of a heat storage type hot water floor heating panel that sequentially radiates the heat of hot water stored in the heat storage layer from the panel surface, and the hot water is stored even if the hot water is passed for a long time. It relates to a new heat storage layer in which the material does not deform or move.

【0002】[0002]

【従来の技術】近年、その利用料金が格安な深夜(23
時から7時、または1時から6時)電力を有効利用する
ことに関心が高まってきており、住宅等における暖房設
備についても、深夜電力によって得た熱を保存して、こ
れを昼間の床暖房に利用しようとする試みが提案されて
いる。
2. Description of the Related Art Recently, late night (23
There is an increasing interest in effectively using electric power from 7 o'clock to 7 o'clock, or from 1 o'clock to 6 o'clock, and even for heating equipment in homes, etc., the heat obtained from late-night electric power is stored and used for daytime flooring. Attempts to use it for heating have been proposed.

【0003】例えば、図6にその断面構造を模式的に示
した蓄熱式の温水床暖房設備の実用化が検討されてもい
る。すなわち、この温水床暖房設備においては、蓄熱材
(ア)を内蔵した蓄熱層(イ)、放熱パイプ(ウ)およ
び均熱板(エ)によって床暖房パネル(オ)を構成し、
一方、たとえば膨張タンク(カ)、ポンプ(キ)、蓄熱
ヒーター(ク)並びに追焚ヒーター(ケ)などによって
加熱ユニット部(コ)を構成して、この加熱ユニット部
(コ)で加熱された温水を、パネル(オ)の蓄熱層
(イ)から放熱パイプ(ウ)へと通水し、そして再び加
熱ユニット(コ)へと還流させるようにな構造を採用し
ている。この構造では、夜間に蓄熱ヒーター(ク)によ
って加熱した温水を床暖房パネル(オ)の蓄熱層(イ)
に供給し、その熱エネルギーを蓄熱層(イ)の蓄熱材
(ア)に吸収させ、蓄熱させる。そして、昼間には加熱
ユニット部(コ)を停止し、蓄熱材(ア)からの自然放
熱により均熱板(エ)を加温する。また、蓄熱材(ア)
の熱エネルギーが枯渇して床暖房性能が低下した場合に
は、追焚ヒーター(ケ)を作動させて温水を蓄熱層
(イ)に供給して蓄熱材(ア)に蓄熱するとともに、残
余の熱エネルギーを放熱パイプ(ウ)から放熱させ、こ
れによって床暖房性能を回復させる追焚機能を備えても
いる。
For example, the practical application of a heat storage type hot water floor heating facility whose sectional structure is schematically shown in FIG. 6 is being studied. That is, in this hot water floor heating facility, a floor heating panel (e) is constituted by a heat storage layer (a) containing a heat storage material (a), a heat radiation pipe (c) and a heat equalizing plate (d),
On the other hand, for example, an expansion tank (K), a pump (K), a heat storage heater (K), and a reheating heater (K) constitute a heating unit section (K), and the heating unit section (K) is heated. A structure is adopted in which hot water is passed from the heat storage layer (a) of the panel (e) to the heat dissipation pipe (c) and then returned to the heating unit (c) again. In this structure, the hot water heated by the heat storage heater (K) at night is used to store the heat in the floor heating panel (E).
To the heat storage material (a) of the heat storage layer (a) to store heat. Then, in the daytime, the heating unit section (K) is stopped, and the heat equalizing plate (D) is heated by natural heat dissipation from the heat storage material (A). In addition, heat storage material (A)
When the floor heating performance deteriorates due to the exhaustion of the heat energy of, the additional heating heater (K) is operated to supply hot water to the heat storage layer (A) to store heat in the heat storage material (A), and the remaining It also has an additional heating function that radiates heat energy from the heat dissipation pipe (c), thereby recovering floor heating performance.

【0004】[0004]

【発明が解決しようとする課題】これまでに検討されて
きている蓄熱式の温水床暖房設備は、以上のとおりの特
徴を有するものではあるが、さらに改良すべき点が残さ
れてもいた。すなわち、これまでに提案した床暖房パネ
ル(オ)の蓄熱層(イ)は、たとえば図7に示したよう
に、パイプ状のハウジング(サ)内にボード状蓄熱材
(シ)またはペレット状蓄熱材(ス)を充填したものが
用いられてきた。ボード状蓄熱材(シ)を充填した蓄熱
層(セ)の場合には、ハウジング(サ)の内壁面と蓄熱
材(シ)の表面との隙間が温水流路となり、ペレット状
蓄熱材(ス)を充填した蓄熱層(ソ)では、各ペレット
状蓄熱材(ス)の隙間が温水流路となっている。
The heat storage type hot water floor heating equipment which has been studied so far has the above-mentioned characteristics, but there are still some points to be improved. That is, the heat storage layer (a) of the floor heating panel (e) proposed so far is, for example, as shown in FIG. 7, a board-shaped heat storage material (si) or a pellet-shaped heat storage material in a pipe-shaped housing (sa). Materials filled with wood have been used. In the case of the heat storage layer (SE) filled with the board-shaped heat storage material (SI), the gap between the inner wall surface of the housing (SA) and the surface of the heat storage material (SI) forms a hot water flow path, and the pellet-shaped heat storage material (SS) In the heat storage layer (SO) filled with (1), the gaps between the pellet-shaped heat storage materials (S) are hot water flow paths.

【0005】しかしながら、このような蓄熱層(セ)
(ソ)は、図8(a)(b)に示したように、長期間に
渡って温水を通水させた場合に、ペレット状蓄熱材
(ス)は温水の熱および水圧によって圧縮されやすく、
温水排出側に偏って密に集合してしまうことにより流路
を塞ぎ、またボード状蓄熱材(シ)の場合も全体形状が
変形することによって温水流路を閉塞してしまう場合が
あるという問題点があった。
However, such a heat storage layer (C)
As shown in FIGS. 8A and 8B, when the hot water is passed for a long period of time, the pellet-shaped heat storage material (S) is easily compressed by the heat and water pressure of the hot water. ,
There is a problem that the hot water flow path may be blocked by concentrating densely on the hot water discharge side to block the flow path, and also in the case of the board-shaped heat storage material (Si), the entire shape may be deformed to close the hot water flow path. There was a point.

【0006】一方、図9は、箱型形状のハウジング
(タ)に整流板(チ)とボード状蓄熱材(ツ)を配設し
た従来の蓄熱層(テ)を例示した側面図であるが、この
蓄熱層(テ)の場合には、蓄熱材(ツ)がハウジング
(タ)の天井面(ト)に接触し、摩擦力により同一位置
に止まるようになっているが、長期間に渡って温水を通
水させた場合には、蓄熱材(ツ)と天井面(ト)の間に
空気や温水が進入して摩擦力が低下し、その結果、蓄熱
材(ツ)が移動して変形して流路を閉塞させてしまうと
いう問題があった。
On the other hand, FIG. 9 is a side view illustrating a conventional heat storage layer (TE) in which a straightening plate (H) and a board-shaped heat storage material (T) are provided in a box-shaped housing (T). In the case of this heat storage layer (TE), the heat storage material (TSU) comes into contact with the ceiling surface (TO) of the housing (TA) and stops at the same position due to frictional force. When hot water is passed through by heat, the air and hot water enter between the heat storage material (tsu) and the ceiling surface (g) to reduce the frictional force, resulting in movement of the heat storage material (tsu). There is a problem that the flow path is deformed and the flow path is blocked.

【0007】そこで、この発明は、以上のとおりの事情
に鑑みてなされたものであって、蓄熱式の床暖房設備を
さらに実用的なものとするため、温水を長期に渡って通
水させても蓄熱材が変形・移動することのない新しい蓄
熱層を提供することを目的としている。
Therefore, the present invention has been made in view of the above circumstances, and in order to make a heat storage type floor heating facility more practical, hot water is allowed to flow for a long period of time. Also aims to provide a new heat storage layer in which the heat storage material does not deform or move.

【0008】[0008]

【課題を解決するための手段】この発明は、上記の課題
を解決するものとして、蓄熱層に蓄えた温水の熱をパネ
ル表面より順次に放熱する蓄熱式の温水床暖房パネルの
蓄熱層であって、ハウジングと、このハウジング内に配
設した蓄熱材とからなり、ハウジング内の温水通水方向
に沿ってその内壁面に突設された複数枚のリブ片先端に
蓄熱材の表面が当接されて蓄熱材が移動・変形不可の状
態に保持されるとともに、ハウジング内壁面と蓄熱材表
面との間に温水流路が形成されていることを特徴とする
蓄熱式温水床暖房パネルの蓄熱層を提供する(請求項
1)。
As a solution to the above problems, the present invention relates to a heat storage layer of a heat storage type hot water floor heating panel which sequentially radiates heat of hot water stored in the heat storage layer from the panel surface. A housing and a heat storage material arranged in the housing, and the surface of the heat storage material abuts on the tips of a plurality of ribs protruding from the inner wall surface of the housing along the hot water flow direction in the housing. The heat storage layer of the heat storage type hot water floor heating panel is characterized in that the heat storage material is held in a state in which it cannot be moved or deformed and a hot water flow path is formed between the inner wall surface of the housing and the surface of the heat storage material. Is provided (Claim 1).

【0009】また、この発明は、蓄熱層に蓄えた温水の
熱をパネル表面より順次に放熱する蓄熱式の温水床暖房
パネルの蓄熱層であって、ハウジングと、このハウジン
グ内に配設した蓄熱材とからなり、蓄熱材がハウジング
内下方の内壁面に固着されているとともに、ハウジング
内上方には温水流路が形成されていることを特徴とする
蓄熱式温水床暖房パネルの蓄熱層を提供する(請求項
2)。
Further, the present invention relates to a heat storage layer of a heat storage type hot water floor heating panel for sequentially radiating the heat of hot water stored in the heat storage layer from the panel surface, the housing and the heat storage layer arranged in the housing. A heat storage layer of a heat storage type hot water floor heating panel, characterized in that a heat storage material is fixed to an inner wall surface in the lower part of the housing and a hot water flow path is formed in the upper part of the housing. (Claim 2).

【0010】さらにこの発明は、蓄熱層に蓄えた温水の
熱をパネル表面より順次に放熱する蓄熱式の温水床暖房
パネルの蓄熱層であって、ハウジングと、このハウジン
グ内に配設した蓄熱材とからなり、蓄熱材がハウジング
内壁面に沿って固着されているとともに、ハウジング中
心部には温水流路が形成されていることを特徴とする蓄
熱式温水床暖房パネルの蓄熱層をも提供する(請求項
3)。
Further, the present invention relates to a heat storage layer of a heat storage type hot water floor heating panel which radiates the heat of the hot water stored in the heat storage layer sequentially from the panel surface, the housing and the heat storage material arranged in the housing. A heat storage layer of a heat storage type hot water floor heating panel, characterized in that the heat storage material is fixed along the inner wall surface of the housing and a hot water flow path is formed in the center of the housing. (Claim 3).

【0011】[0011]

【発明の実施の形態】以下、添付した図面に沿って実施
例を示し、この発明の実施の形態についてさらに詳しく
説明する。
Embodiments of the present invention will be described below in more detail with reference to the accompanying drawings.

【0012】[0012]

【実施例】図1および図2は、各々、この発明の請求項
1の蓄熱層を例示した側断面図および正断面図である。
例えば、この図1および図2に示した蓄熱層(1)は、
箱型形状のハウジング(2)内に整流板(3)とボード
状蓄熱材(4)を配設している。ハウジング(2)の内
壁面には、温水の通水方向に沿って複数枚のリブ片
(5)が突設されており、蓄熱材(4)の表面がこれら
のリブ片(5)の先端に当接している。すなわち、蓄熱
材(4)は、リブ片(5)先端との摩擦力によって同一
位置に保持され、変形することはなく、また、リブ片
(5)の存在によってハウジング(2)と蓄熱材(4)
との間には温水流路(6)が確保されてもいる。
1 and 2 are a side sectional view and a front sectional view, respectively, illustrating a heat storage layer according to claim 1 of the present invention.
For example, the heat storage layer (1) shown in FIGS. 1 and 2 is
A baffle plate (3) and a board-shaped heat storage material (4) are arranged in a box-shaped housing (2). On the inner wall surface of the housing (2), a plurality of rib pieces (5) are provided so as to protrude along the hot water flow direction, and the surface of the heat storage material (4) is the tip of these rib pieces (5). Is in contact with. That is, the heat storage material (4) is held at the same position by the frictional force with the tips of the rib pieces (5) and is not deformed, and the presence of the rib pieces (5) causes the housing (2) and the heat storage material (4) to move. 4)
A hot water flow path (6) is also secured between and.

【0013】ハウジング(2)の形状は、この例に示し
た箱型形状に限定されるものではなく、パイプ状等であ
ってもよい。材質は、樹脂、金属等を用いることがで
き、ハウジング(2)とリブ片(5)は同一材質である
必要なない。また、蓄熱材(4)についてはその種類に
特段の制限はないが、ハウジング(2)内を流れる温水
に接触することから、液状体として流出や染み出しする
ことなく、効果的に蓄熱と放熱を可能にするものを用い
る。たとえばこのような蓄熱材(4)としては、この出
願人が既に提案しているパラフィン、パラフィンワック
ス等の結晶性炭化水素、結晶性脂肪酸、結晶性脂肪酸エ
ステル等の、より好ましくは融点が90℃以下で、潜熱
量が20Kcal/kg以上の潜熱蓄熱材とポリオレフ
ィン系樹脂、さらに必要に応じてこれに無機フィラーが
添加されたものなどを使用することができる。ポリオレ
フィン系樹脂としては、エチレン−αオレフィン共重合
体、超高分子量ポリエチレン、高密度ポリエチレン等が
ある。このような蓄熱材(3)の形状にも特段の制限は
なく、ハウジング(2)の内部形状等に合わせて円柱
形、角柱形等の適宜な形状とすることができる。
The shape of the housing (2) is not limited to the box shape shown in this example, but may be a pipe shape or the like. The material may be resin, metal or the like, and the housing (2) and the rib piece (5) do not have to be the same material. The type of the heat storage material (4) is not particularly limited, but since it comes into contact with the hot water flowing in the housing (2), it does not flow out or ooze out as a liquid substance, and effectively stores and radiates heat. Use the one that enables. For example, as such a heat storage material (4), crystalline hydrocarbons such as paraffin and paraffin wax, which are already proposed by the applicant, crystalline fatty acids, crystalline fatty acid esters and the like, and more preferably have a melting point of 90 ° C. In the following, a latent heat storage material having a latent heat amount of 20 Kcal / kg or more, a polyolefin resin, and, if necessary, an inorganic filler added thereto can be used. Examples of the polyolefin resin include ethylene-α-olefin copolymer, ultra high molecular weight polyethylene, and high density polyethylene. There is no particular limitation on the shape of the heat storage material (3), and the heat storage material (3) may have an appropriate shape such as a columnar shape or a prismatic shape in accordance with the internal shape of the housing (2).

【0014】図3は、この発明の請求項2の蓄熱層を例
示した透視斜視図である。この図3の例では、蓄熱層
(7)は、パイプ状のハウジング(8)の下方空間に蓄
熱材(9)が配設されており、この蓄熱材(9)は、ハ
ウジング(8)の内壁面に固着された状態となってお
り、しかもハウジング(8)の上方空間が温水流路(1
0)となっている。
FIG. 3 is a perspective view showing a heat storage layer according to claim 2 of the present invention. In the example of FIG. 3, the heat storage layer (7) is provided with a heat storage material (9) in a space below the pipe-shaped housing (8), and the heat storage material (9) is disposed in the housing (8). It is fixed to the inner wall surface, and the space above the housing (8) is located at
0).

【0015】このような蓄熱層(7)は、例えば、固液
間を可逆的に相転移する有機系蓄熱材(9)を結晶性ポ
リオレフィン等に担持させ、ポレオレフィン等の融点以
上の温度で溶融させ、図4に示したように両端開口の下
方を蓋(11)で覆ったハウジング(8)に注入して冷
却・固化させればよい。固化した蓄熱材(9)はハウジ
ング(8)の内壁面に固着されるため、温水の熱や水圧
によっても移動・変形すすることはなく、温水流路(1
0)が閉塞することはない。なお、この請求項2の発明
においては、ハウジング(8)の形状はパイプ状に限定
されるものではなく、図1および図2に示したような箱
型形状のものであってもよい。
In such a heat storage layer (7), for example, an organic heat storage material (9) which reversibly undergoes a phase transition between solid and liquid is carried on crystalline polyolefin or the like, and the temperature is higher than the melting point of polyolefin or the like. It may be melted and poured into a housing (8) covered with a lid (11) below the openings at both ends as shown in FIG. 4 to be cooled and solidified. Since the solidified heat storage material (9) is fixed to the inner wall surface of the housing (8), it does not move or deform due to heat or water pressure of the hot water, and the hot water flow path (1)
0) is never blocked. In the invention of claim 2, the shape of the housing (8) is not limited to the pipe shape, but may be a box shape as shown in FIGS. 1 and 2.

【0016】図5(a)(b)は、この発明の請求項3
の蓄熱層を例示した透視斜視図と正断面図である。この
場合には、蓄熱層(12)は、パイプ状のハウジング
(13)の内壁面に沿って蓄熱材(14)が固着されて
おり、しかもハウジング(13)の中心部に温水流路
(15)が形成されている。このような蓄熱層(12)
は、蓄熱材(14)として上記のような溶融性のものを
用い、例えば、2層パイプ押出成形法によって製造する
ことができる。この場合には、ハウジング(13)の材
質は、押出成形が可能な塩化ビニル、ポリプロピレン、
ポリエチレン等の樹脂を用いることができる。このよう
にして成形した蓄熱層(12)は、蓄熱材(14)はハ
ウジング(13)の内壁面に沿って固着されているため
に、温水の熱や水圧によっても移動・変形せず、中心部
の温水流路が閉塞することもない。なお、この請求項3
の発明においても、ハウジング形状は、パイプ以外の箱
型等とすることができる。
5 (a) and 5 (b) show the third aspect of the present invention.
FIG. 3 is a perspective view and a front sectional view illustrating the heat storage layer of FIG. In this case, in the heat storage layer (12), the heat storage material (14) is fixed along the inner wall surface of the pipe-shaped housing (13), and the hot water flow path (15) is provided in the center of the housing (13). ) Has been formed. Such a heat storage layer (12)
Can be manufactured by, for example, a two-layer pipe extrusion molding method using the above-mentioned meltable heat storage material (14). In this case, the material of the housing (13) is extrudable vinyl chloride, polypropylene,
Resins such as polyethylene can be used. The heat storage layer (12) formed in this way does not move or deform due to heat or water pressure of hot water because the heat storage material (14) is fixed along the inner wall surface of the housing (13) The hot water flow path of the part is not blocked. The claim 3
Also in the invention, the housing shape may be a box shape other than the pipe.

【0017】もちろん、この発明は以上の例によって限
定されるものではなく、細部の構成等については様々な
態様が可能であることは言うまでもない。
Of course, the present invention is not limited to the above examples, and it goes without saying that various aspects can be made in the detailed configuration and the like.

【0018】[0018]

【発明の効果】以上詳しく説明したとおり、この発明に
よって、温水を長期に渡って通水させても蓄熱材が変形
・移動することのない耐久性に優れた蓄熱層が提供され
る。これによって、蓄熱式温水床暖房背悦日の実用化が
進展する。
As described in detail above, according to the present invention, a heat storage layer having excellent durability, in which the heat storage material is not deformed or moved even when hot water is passed for a long period of time, is provided. As a result, heat storage type hot water floor heating will be put into practical use.

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

【図1】この発明の請求項1の蓄熱層を例示した側断面
図である。
FIG. 1 is a side sectional view illustrating a heat storage layer according to claim 1 of the present invention.

【図2】この発明の請求項1の蓄熱層を例示した正断面
図である。
FIG. 2 is a front sectional view illustrating a heat storage layer according to claim 1 of the present invention.

【図3】この発明の請求項2の蓄熱層を例示した透視斜
視図部である。
FIG. 3 is a perspective view part illustrating a heat storage layer according to claim 2 of the present invention.

【図4】図3に示した蓄熱層の製造方法を例示した斜視
図である。
FIG. 4 is a perspective view illustrating a method for manufacturing the heat storage layer shown in FIG.

【図5】(a)(b)は、各々、この発明の請求項3の
蓄熱層を例示した透視斜視図および正断面図である。
5A and 5B are a perspective view and a front sectional view, respectively, illustrating a heat storage layer according to claim 3 of the present invention.

【図6】この発明の発明者等が先に提案した蓄熱式の床
暖房設備の模式図である。
FIG. 6 is a schematic diagram of a heat storage type floor heating facility previously proposed by the inventors of the present invention.

【図7】従来の蓄熱層の製造工程を例示した模式図であ
る。
FIG. 7 is a schematic view exemplifying a conventional heat storage layer manufacturing process.

【図8】各々、従来の蓄熱層の使用後の状態を例示した
断面図である。
FIG. 8 is a cross-sectional view illustrating the state of a conventional heat storage layer after use.

【図9】従来の別の蓄熱層の使用後の状態を例示した断
面図である。
FIG. 9 is a cross-sectional view illustrating a state after using another conventional heat storage layer.

【符号の説明】[Explanation of symbols]

1 蓄熱層 2 ハウジング 3 整流板 4 蓄熱材 5 リブ片 6 温水流路 7 蓄熱層 8 ハウジング 9 蓄熱材 10 温水流路 11 蓋 12 蓄熱層 13 ハウジング 14 蓄熱材 15 温水流路 1 Heat Storage Layer 2 Housing 3 Rectifier Plate 4 Heat Storage Material 5 Rib Piece 6 Hot Water Flow Path 7 Heat Storage Layer 8 Housing 9 Heat Storage Material 10 Hot Water Flow Path 11 Lid 12 Heat Storage Layer 13 Housing 14 Heat Storage Material 15 Hot Water Flow Path

Claims (3)

【特許請求の範囲】[Claims] 【請求項1】 蓄熱層に蓄えた温水の熱をパネル表面よ
り順次に放熱する蓄熱式の温水床暖房パネルの蓄熱層で
あって、ハウジングと、このハウジング内に配設した蓄
熱材とからなり、ハウジング内の温水通水方向に沿って
その内壁面に突設された複数枚のリブ片先端に蓄熱材の
表面が当接されて蓄熱材が移動・変形不可の状態に保持
されるとともに、ハウジング内壁面と蓄熱材表面との間
に温水流路が形成されていることを特徴とする蓄熱式温
水床暖房パネルの蓄熱層。
1. A heat storage layer of a heat storage type hot water floor heating panel which sequentially radiates the heat of hot water stored in the heat storage layer from the panel surface, which comprises a housing and a heat storage material arranged in the housing. , The surface of the heat storage material is brought into contact with the tips of a plurality of rib pieces projecting from the inner wall surface of the housing along the hot water flow direction, and the heat storage material is held in a non-movable / deformable state, A heat storage layer of a heat storage type hot water floor heating panel, characterized in that a hot water flow path is formed between the inner wall surface of the housing and the surface of the heat storage material.
【請求項2】 蓄熱層に蓄えた温水の熱をパネル表面よ
り順次に放熱する蓄熱式の温水床暖房パネルの蓄熱層で
あって、ハウジングと、このハウジング内に配設した蓄
熱材とからなり、蓄熱材がハウジング内下方の内壁面に
固着されているとともに、ハウジング内上方には温水流
路が形成されていることを特徴とする蓄熱式温水床暖房
パネルの蓄熱層。
2. A heat storage layer of a heat storage type hot water floor heating panel that sequentially radiates the heat of hot water stored in the heat storage layer from the panel surface, comprising a housing and a heat storage material arranged in the housing. A heat storage layer of a heat storage type hot water floor heating panel, wherein a heat storage material is fixed to an inner wall surface in a lower part of the housing and a hot water flow path is formed in an upper part of the housing.
【請求項3】 蓄熱層に蓄えた温水の熱をパネル表面よ
り順次に放熱する蓄熱式の温水床暖房パネルの蓄熱層で
あって、ハウジングと、このハウジング内に配設した蓄
熱材とからなり、蓄熱材がハウジング内壁面に沿って固
着されているともに、ハウジング中心部には温水流路が
形成されていることを特徴とする蓄熱式温水床暖房パネ
ルの蓄熱層。
3. A heat storage layer of a heat storage type hot water floor heating panel that sequentially radiates the heat of the hot water stored in the heat storage layer from the panel surface, which comprises a housing and a heat storage material disposed in the housing. A heat storage layer of a heat storage type hot water floor heating panel, wherein a heat storage material is fixed along an inner wall surface of the housing and a hot water flow path is formed in a central portion of the housing.
JP06758196A 1996-03-25 1996-03-25 Thermal storage layer of thermal storage type hot water floor heating panel Expired - Fee Related JP3296963B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP06758196A JP3296963B2 (en) 1996-03-25 1996-03-25 Thermal storage layer of thermal storage type hot water floor heating panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP06758196A JP3296963B2 (en) 1996-03-25 1996-03-25 Thermal storage layer of thermal storage type hot water floor heating panel

Publications (2)

Publication Number Publication Date
JPH09257262A true JPH09257262A (en) 1997-09-30
JP3296963B2 JP3296963B2 (en) 2002-07-02

Family

ID=13349043

Family Applications (1)

Application Number Title Priority Date Filing Date
JP06758196A Expired - Fee Related JP3296963B2 (en) 1996-03-25 1996-03-25 Thermal storage layer of thermal storage type hot water floor heating panel

Country Status (1)

Country Link
JP (1) JP3296963B2 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003090547A (en) * 2001-09-17 2003-03-28 Denso Corp Heat pump heating system
JP2012072931A (en) * 2010-09-28 2012-04-12 Panasonic Corp Heat storage device and air conditioner using the same

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2003090547A (en) * 2001-09-17 2003-03-28 Denso Corp Heat pump heating system
JP2012072931A (en) * 2010-09-28 2012-04-12 Panasonic Corp Heat storage device and air conditioner using the same

Also Published As

Publication number Publication date
JP3296963B2 (en) 2002-07-02

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