JP2010203657A - House ventilation system - Google Patents

House ventilation system Download PDF

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JP2010203657A
JP2010203657A JP2009048676A JP2009048676A JP2010203657A JP 2010203657 A JP2010203657 A JP 2010203657A JP 2009048676 A JP2009048676 A JP 2009048676A JP 2009048676 A JP2009048676 A JP 2009048676A JP 2010203657 A JP2010203657 A JP 2010203657A
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greenhouse
heat
ventilation system
air
outside air
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JP5483051B2 (en
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Hiroo Tarumi
弘夫 垂水
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Kanazawa Institute of Technology (KIT)
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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
    • 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
    • Y02E10/10Geothermal energy
    • 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

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  • Central Heating Systems (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a house ventilation system capable of reducing an outside air load and an indoor heating load during ventilation in winter, by effectively using natural energy and change in natural conditions. <P>SOLUTION: In the house ventilation system including a greenhouse for collecting and storing solar radiation heat, inside of the greenhouse and inside of a room in a house are interconnected with a heat tube having a ventilation function. The heat tube has an air intake port arranged within the greenhouse and an air blowout port arranged within the room. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、住宅の南側等、日射量の多い方向に温室を付設し、この温室が日射熱で高温になった蓄熱等を利用して居室内に新鮮空気を供給することで、冬季等における住宅の換気に伴う熱損失を低下させるのに効果的な住宅換気システムに関する。   The present invention attaches a greenhouse in a direction with a large amount of solar radiation, such as the south side of a house, and this greenhouse supplies fresh air to the living room using heat storage etc. that has become hot due to solar heat. The present invention relates to a housing ventilation system that is effective in reducing heat loss associated with housing ventilation.

平成15年の建築基準法改正により、住宅には0.5回/1時間以上の換気能力を有する機械換気システムの設置が義務付けられた。
そこで、壁や天井内に設定したファンを用いて外気と屋内空気を入れ替える換気方法が採用されるようになってきた。
しかし、単に外気を取り込むだけでは、冬季等においては外気が居室内の空気よりも冷たく、逆に夏季等においては外気の方が熱く、換気に伴って外気負荷が大きいという問題がある。
Due to the revision of the Building Standards Act in 2003, it was obliged to install mechanical ventilation systems with ventilation capacity of 0.5 times / hour or more in houses.
Therefore, a ventilation method has been adopted in which the outside air and the indoor air are switched using a fan set in a wall or ceiling.
However, simply taking outside air causes a problem that the outside air is cooler than the air in the living room in winter and the like, and conversely, the outside air is hot in summer and the like, and the outside air load increases with ventilation.

我が国は、北海道から鹿児島県本土までの大部分の地域において、住宅での冷房負荷よりも暖房負荷の方が大きいという特徴があり、暖房負荷を自然エネルギー活用によって減ずる対策が重要である。   In Japan, the heating load is larger than the cooling load in houses in most areas from Hokkaido to the mainland of Kagoshima Prefecture, and it is important to take measures to reduce the heating load by using natural energy.

東北地方の太平洋側の地域では、住宅南側に温室として機能する外部と内部とのつなぎ空間を設け、日中に昇温した空気を、仕切りの窓を開けるなどして、居室に取り込む例が見受けられる。
しかし、窓等の開閉操作が居住者次第であることから熱的効果は限定的であり、屋内で冬季に植物を栽培する趣味的空間として位置付けられる場合が多い。
特許文献1には、この発想に近いサンルームを活用することで、太陽熱の有効利用と居室への心地良い通風を図った技術を開示するが、やはり熱的効果は限定的である。
In the Pacific region of the Tohoku region, there is an example where a space connecting the outside and inside that functions as a greenhouse is provided on the south side of the house, and the air heated during the day is taken into the room by opening a partition window. It is done.
However, since the opening / closing operation of windows and the like depends on the resident, the thermal effect is limited, and it is often positioned as a hobby space for growing plants indoors in winter.
Patent Document 1 discloses a technique for effectively using solar heat and comfortably ventilating a living room by utilizing a solarium close to this idea, but the thermal effect is still limited.

特許文献2には、屋根板の直下に空気流路を形成してなる太陽集熱部を設け、加熱空気を立下りダクトにて床下に流下させる技術を開示する。
しかし、同公報に開示する屋根板の直下に設けられる太陽集熱部では、冬のシーズン全体を通して換気空気の加熱に用いるのには能力的に不充分であり、また、この太陽集熱部の設置場所が太陽光発電や太陽熱温水器の利用等の他の省エネルギーシステムと競合する問題も有する。
Patent Document 2 discloses a technique in which a solar heat collecting part formed by forming an air flow path is provided directly below a roof plate, and heated air is caused to flow down to the floor using a falling duct.
However, the solar heat collector provided directly below the roof plate disclosed in the publication is insufficient in capability to be used for heating ventilation air throughout the winter season. There is also a problem that the installation location competes with other energy saving systems such as the use of photovoltaic power generation and solar water heaters.

地中温度が大気の空気温度に比べて年変動が小さく、本州の大部分の地域において平均値が約15℃程度で安定している。
そこで、地中に埋設したヒート&クールチューブシステムを経由させて外気を導入することで夏は外気よりも冷たい空気を、また冬は外気よりも暖かい換気空気を屋内に導入する実験的住宅も見受けられる。
しかし、本願発明者らが国土交通省の先導技術開発補助金を得て、平成18年度に富山市内に建築したヒート&クールチューブ換気システムを持つモデル住宅の実測結果からは、冬の熱取得効果が1月に約540W程度、夏の熱除去効果が8月に約380W程度しか得られず、同システムの設置費用を考慮すると、地中熱だけでは不充分であった(非特許文献1)。
The underground temperature has a smaller annual fluctuation than the air temperature in the atmosphere, and the average value is stable at about 15 ° C in most areas of Honshu.
Therefore, there are some experimental houses that introduce air that is cooler than the outside air in the summer by introducing the outside air through a heat and cool tube system embedded in the ground, and that has a ventilation air that is warmer than the outside air in the winter. It is done.
However, the inventors of the present application obtained a subsidy for leading technology development from the Ministry of Land, Infrastructure, Transport and Tourism, and obtained winter heat from the measurement results of a model house with a heat and cool tube ventilation system built in Toyama City in 2006 The effect is only about 540 W in January, and the heat removal effect in summer is only about 380 W in August. Considering the installation cost of the system, underground heat alone is insufficient (Non-Patent Document 1) ).

特開平8−159531号公報Japanese Patent Laid-Open No. 8-159531 特開2006ー98025号公報JP 2006-98025 A

「ヒート&クールチューブシステムによる省エネルギー効果に関する研究」MINOHARA Yuki,TARUMI Hiroo,他2名,日本建築学会大会学術講演集,2008年9月,P625,626"Research on energy saving effect by heat & cool tube system" MINOHARA Yuki, TARUMI Hiroo, two others, Annual Meeting of Architectural Institute of Japan, September 2008, P625,626

本発明は、自然エネルギー及び自然条件変化を有効に活用することで冬季の換気の外気負荷及び屋内暖房負荷を低減できる住宅換気システムの提供を目的とする。   An object of the present invention is to provide a residential ventilation system that can reduce the outdoor air load and indoor heating load of ventilation in winter by effectively utilizing natural energy and natural condition changes.

本発明者らは、住宅に温室を付設することで得られる外気の昇温効果と、住宅の直下又は周辺の地中に埋設したヒートチューブによる蓄熱効果の利用に着目し、本発明に至った。
本発明に係る住宅換気システムは、日射熱を集熱及び蓄熱する温室を備えた住宅換気システムであって、温室内と住宅の居室内とを換気機能を有するヒートチューブで連結してあり、ヒートチューブは、温室内に空気の取入口を有し、居室内に空気の吹出口を有していることを特徴とする。
ここで、ヒートチューブは、温室の床から居室の床との間が地盤面下に埋設され、外気に触れないようになっているのが好ましい。
The present inventors paid attention to the effect of increasing the temperature of the outside air obtained by attaching a greenhouse to the house and the use of the heat storage effect by a heat tube buried directly under or around the house, leading to the present invention. .
A residential ventilation system according to the present invention is a residential ventilation system including a greenhouse that collects and stores solar heat, and is connected to the interior of the greenhouse by a heat tube having a ventilation function, The tube has an air intake port in the greenhouse and an air outlet in the living room.
Here, the heat tube is preferably buried between the floor of the greenhouse and the floor of the living room under the ground surface so as not to be exposed to the outside air.

また、冬季等は温室内の温かい空気を居室に取り入れ、夏季には温室内よりも温度が低い外気を居室に取り入れるようにするためにヒートチューブは、温室内からの空気取入口と外気取入口とが切り換え可能になっているのが好ましい。   In addition, in order to take warm air from the greenhouse into the living room during the winter, and to take outside air at a lower temperature than the greenhouse into the living room during the summer, the heat tube has an air intake and an outside air intake from the greenhouse. Are preferably switchable.

さらに温室は屋根と壁部とに透明パネル体を取り付けてあり、床部は蓄熱材で形成し、ヒートチューブの空気取入口を屋根の下面よりに設けてあり、温室内に外気を取り入れる外気取入口は床面よりに設けてあるとよい。   Furthermore, the greenhouse has a transparent panel attached to the roof and walls, the floor is made of heat storage material, and the air intake of the heat tube is provided from the lower surface of the roof, taking outside air into the greenhouse. The entrance is preferably provided from the floor.

本発明に係る住宅換気システムは、住宅に付設した温室で新鮮外気を大幅に昇温させ、次に蓄熱容量の大きい地盤を通過させることで、昼間の日射熱の外気加温効果を夜間にまで延長でき、また、晴天日に地盤蓄熱した熱を、その後に続いた曇天日、雨天日に利用できる点、従来の換気システムに無い特徴を有する。
また、本発明は、換気空気が通過する順序として加熱装置として機能する温室の下流側に地盤を配置したことで、この地盤が蓄熱、放熱緩衝体として機能し、晴天日の日射熱を長時間にわたり、安定した温度の換気空気として取り出せる。
The house ventilation system according to the present invention significantly increases the temperature of fresh outside air in a greenhouse attached to the house, and then passes through the ground having a large heat storage capacity, so that the effect of heating the outside air during the daytime can be increased to nighttime. It can be extended, and the heat stored on the ground on a clear day can be used on the following cloudy and rainy days.
In addition, the present invention provides a ground on the downstream side of the greenhouse that functions as a heating device in the order in which the ventilation air passes, so that this ground functions as a heat storage and heat dissipation buffer, and sunshine heat on a clear day is prolonged. It can be taken out as ventilation air at a stable temperature.

特に冬季に日射が多い地域において、大きな効果が期待される。
例えば、東京等では、晴天日の昼間は暖房負荷がほとんどなく、日によってはオーバーヒートを起こして窓を開けるケースも見られる。
ところが、夜間から明け方にかけては外気温低下に伴い暖房負荷が生ずる。
このような地域の住宅では、本住宅換気システムの適用により、昼間に地盤蓄熱した熱を夜間に取り出して有効に利用できるようになり、冬のシーズンを通じて大幅な暖房負荷削減が実現可能となる。
Great effect is expected especially in areas where there is a lot of solar radiation in winter.
For example, in Tokyo and the like, there is almost no heating load during the daytime on a sunny day, and there are cases where the windows are opened due to overheating depending on the day.
However, a heating load is generated from the night to dawn as the outside air temperature decreases.
In houses in such areas, the application of the house ventilation system makes it possible to extract the heat stored in the ground during the daytime and use it effectively at night, and to significantly reduce the heating load throughout the winter season.

本発明に係る住宅換気システムにおいて冬季の空気の流れを示す。The air flow in winter is shown in the residential ventilation system according to the present invention. ヒートチューブ配置例の平面図を透視図として示す。The top view of the heat tube arrangement example is shown as a perspective view. 本発明に係る住宅換気システムにおいて夏季の空気の流れを示す。The air flow in the summer is shown in the residential ventilation system according to the present invention.

本発明に係る住宅換気システムの構成例を図1〜3に模式的に示す。
住宅の居室10の例えば南側等、比較的強い日射が当たる位置に温室20を付設する。
温室20の広さは、住宅の換気0.5回/1時間に対応できるように大きく設定するのが好ましい。
温室20は冬季に外気を加温するのが目的であり、屋根21、側壁22等にはガラス張り等の透明パネル体を取り付けるのが好ましく、温室内に外気を取り込むための換気ガラリ24を床部23付近に設けてある。
なお、冬季以外は大きく開放できるように窓を側壁等に設けるとよい。
温室20の床部23は日射熱を蓄熱するとともに、温室内空気の加熱面として機能させるのがよく、コンクリートや石材を用いて、厚さ約30cm以上にするのが好ましい。
床部は厚い方がよいが、一般的には60〜80cm以下である。
これにより、日没後も床面からの放熱により温室内空気の温度低下が緩やかになる。
屋根21は、傾斜面等を設けて、屋根下に高温空気が滞留しやすい部分を設けるのがよい。
本実施例では居室10側が高くなるような傾斜屋根にし、屋根の高いコーナー部21aに高温空気を誘導し、この部分にヒートチューブ30の温室内立上り部31の空気取入口31aを配置した。
ヒートチューブ30は、直径15〜20cm程度の配管であり、熱伝導率が大きく、湿気に対して耐腐食性の高いものが好ましい。
コスト面からは塩化ビニール配管でもよいが、熱伝導性等の観点からはSUS配管がよい。
ヒートチューブ30は、温室内立上り部31の途中にダンパ等の切換弁31bを有し、温室20の床部23から地中に向かって配管し、地盤面下の地中に埋没された埋設部32を経由して、居室10の床から立上げた居室内立上り部33と居室内に設けた換気装置40と連結されている。
換気装置40はファンや制御盤が設けられ、換気装置40に設けた吹出口41から温室内の空気が換気空気として吹出す。
ヒートチューブ30の埋設部32は地熱効果を充分に得るために地盤面下1m以上がよく、好ましくは1.5m以上であり、埋設工事費からすると3m以下である。
また、埋設部32は住宅の直下でもよいが、本実施例では図2に示すように住宅の周囲に埋設した例となっている。
なお、図2では床部や地中に埋設したヒートチューブ部分も実線で示してある。
The structural example of the house ventilation system which concerns on this invention is typically shown in FIGS.
A greenhouse 20 is attached at a position where relatively strong solar radiation is applied, such as the south side of the living room 10 of the house.
It is preferable that the size of the greenhouse 20 is set to be large so that the ventilation of the house can correspond to 0.5 times / hour.
The purpose of the greenhouse 20 is to warm the outside air in the winter, and it is preferable to attach a transparent panel body such as glass to the roof 21 and the side wall 22, and a ventilation gallery 24 for taking outside air into the greenhouse is provided on the floor. It is provided near 23.
In addition, it is good to provide a window in a side wall etc. so that it can open large except in winter.
The floor 23 of the greenhouse 20 stores solar heat, and preferably functions as a heating surface for air in the greenhouse. The thickness is preferably about 30 cm or more using concrete or stone.
The floor should be thicker, but is generally 60-80 cm or less.
Thereby, even after sunset, the temperature drop of the air in the greenhouse becomes gentle due to heat radiation from the floor.
The roof 21 is preferably provided with an inclined surface or the like and a portion where high temperature air tends to stay under the roof.
In the present embodiment, the roof is inclined so that the side of the living room 10 becomes high, high-temperature air is guided to the corner 21a having a high roof, and the air intake 31a of the rising portion 31 in the greenhouse of the heat tube 30 is disposed in this portion.
The heat tube 30 is a pipe having a diameter of about 15 to 20 cm, and preferably has a high thermal conductivity and high corrosion resistance against moisture.
Although vinyl chloride piping may be used from a cost aspect, SUS piping is preferable from the viewpoint of thermal conductivity and the like.
The heat tube 30 has a switching valve 31b such as a damper in the middle of the rising portion 31 in the greenhouse, piped from the floor 23 of the greenhouse 20 toward the ground, and buried in the ground below the ground surface. The living room rising portion 33 raised from the floor of the living room 10 and the ventilating device 40 provided in the living room are connected to each other via 32.
The ventilator 40 is provided with a fan and a control panel, and air in the greenhouse is blown out as ventilating air from an outlet 41 provided in the ventilator 40.
In order to obtain a sufficient geothermal effect, the buried portion 32 of the heat tube 30 should be 1 m or more below the ground surface, preferably 1.5 m or more, and 3 m or less in terms of the construction cost.
Moreover, although the burying part 32 may be just under a house, in this embodiment, it is an example of being embedded around the house as shown in FIG.
In addition, in FIG. 2, the heat tube part embed | buried under the floor part and the ground is also shown as the continuous line.

冬季は暖房負荷低減を目的に温室20を利用するものであり、夏季等は図2、図3に示すように屋外立上り部34の外気取入口34aから外気を取り込み、埋設部32をクールチューブとして機能させる。
そこで、温室立上り部31に設けた切換弁31bと屋外立上り部34に設けた切換弁34bとで冬季と夏季との切り換えができるようになっている。
In winter, the greenhouse 20 is used for the purpose of reducing the heating load. In summer, as shown in FIGS. 2 and 3, outside air is taken in from the outside air intake 34a of the outdoor rising portion 34, and the buried portion 32 is used as a cool tube. Make it work.
Therefore, switching between winter and summer can be performed by the switching valve 31b provided in the greenhouse rising portion 31 and the switching valve 34b provided in the outdoor rising portion 34.

10 居室
20 温室
21 屋根
22 側壁
23 床
30 ヒートチューブ
31a 取入口
40 換気装置
41 吹出口
10 Living room 20 Greenhouse 21 Roof 22 Side wall 23 Floor 30 Heat tube 31a Inlet 40 Ventilator 41 Air outlet

Claims (4)

日射熱を集熱及び蓄熱する温室を備えた住宅換気システムであって、
温室内と住宅の居室内とを換気機能を有するヒートチューブで連結してあり、
ヒートチューブは、温室内に空気の取入口を有し、居室内に空気の吹出口を有していることを特徴とする住宅換気システム。
A residential ventilation system with a greenhouse that collects and stores solar heat,
The inside of the greenhouse and the living room of the house are connected with a heat tube having a ventilation function,
A residential ventilation system, wherein the heat tube has an air intake in the greenhouse and an air outlet in the living room.
ヒートチューブは、温室の床から居室の床との間が地盤面下に埋設され、外気に触れないようになっていることを特徴とする請求項1記載の住宅換気システム。   The residential ventilation system according to claim 1, wherein the heat tube is buried under the ground surface between the greenhouse floor and the floor of the living room so as not to be exposed to outside air. ヒートチューブは、温室内からの空気取入口と、外気取入口とが切り換え可能になっていることを特徴とする請求項1又は2記載の住宅換気システム。   The residential ventilation system according to claim 1 or 2, wherein the heat tube is switchable between an air intake from inside the greenhouse and an outside air intake. 温室は屋根と壁部とに透明パネル体を取り付けてあり、床部は蓄熱材で形成し、ヒートチューブの空気取入口を屋根の下面よりに設けてあり、温室内に外気を取り入れる外気取入口は床面よりに設けてあることを特徴とする請求項1〜3のいずれかに記載の住宅換気システム。   The greenhouse has a transparent panel attached to the roof and walls, the floor is made of heat storage material, and the air intake of the heat tube is provided from the lower surface of the roof, and the outside air intake takes in outside air into the greenhouse. The housing ventilation system according to any one of claims 1 to 3, wherein is provided on the floor surface.
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