首页 / 国际专利分类库 / 机械工程;照明;加热;武器;爆破;发动机或泵 / 供热;炉灶;通风 / 住宅供热系统或区域供热系统,例如集中供热系统;住宅热水供应系统;其所用部件或构件 / 采用不包含在 F24D 1/00至F24D 5/00各组中的传热流体,例如油、盐、气体的集中供热系统 (F24D 10/00, F24D 11/00优先)
序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
141 Wärmeerzeugungs- oder Kühlanlage EP98250252.8 1998-07-09 EP0895036A2 1999-02-03 Hecker, Tomas

Wärmeerzeugungs- und eine Kühlanlage, wobei die Anlage als Wärmepumpenkreislauf ausgelegt ist und folgende wesentliche Merkmale aufweist:

  • a. mindestens ein Drosselventil (10),
  • b. mindestens einen Verdampfer (20),
  • c. mindestens einen Verdichter (30) und
  • d. mindestens zwei parallel zueinander geschaltete Verflüssiger (41,42,43),
  • e. wobei Rücklaufleitungen (51,52,53) von den Verflüssigern (41,42,43) zu den Drosselventilen (10) vorgesehen sind, und
  • f. wobei ferner jeder Verflüssiger (41,42,43) mit den Drosselventilen (10) über mindestens eine separate Rücklaufleitung (51,52,53) verbunden ist.

142 INSTALLATION DE CHAUFFAGE PAR CALODUC D'UN BATIMENT EP95935499.0 1995-10-13 EP0855006A1 1998-07-29 REROLLE, Michel
An apparatus for heating a building (1) using a heat pipe is disclosed. A number of passive heat transfer modules (2) are provided in the building (14), and each one comprises an evaporator (3) arranged, e.g., outside the space to be heated, and a number of condensers (41-43) with radiative elements (71-73) arranged inside the space (1) and an adiabatic circuit (5) connecting the evaporator (3) to the above-mentioned condensers. The heat transfer fluid in each module (2) and the pressure reigning therein are selected so that, in use, the temperature in the condensers (41-43) is relatively low, e.g. 150 °C. Said heating apparatus may be used to provide heating in an explosive atmosphere.
143 Central space heating apparatus EP89108789.2 1989-05-16 EP0343485A2 1989-11-29 Liljegren, Leif; Scanlan, Harry J.

A central space heating apparatus comprises a furnace (F) having a chamber (1) adapted to receive and contain a gas and a source of heat for heating the gas in the chamber (1), conduits (9, 11, 12) connected in closed circuit to the furnace chamber (1) for conducting the gas from the chamber (1) and returning it to the chamber (1), helium gas filling the chamber (1) and the conduit circuit (9, 11, 12) under a pressure of from about 25 psig to about 100 psig at the operating temperature of the apparatus, a fan (8) for circulating the helium gas through the conduit circuit (9, 11, 12) and the furnace chamber (1), and a multiplicity of convectors (3) connected in the conduit circuit (9, 11, 12) for flow of the helium gas there­through and installed at selected locations in the space to be heated for transferring heat from the flowing helium gas to the space.

144 Appareil pour la conversion d'énergie électrique en énergie thermique EP84114054.4 1984-11-21 EP0149057B1 1988-06-15 Porcellana, Michel
145 Einrichtung zum Beheizen einer Bedienungskabine EP82110513.7 1982-11-15 EP0082946B1 1987-11-04 Okulicz, Konrad, Dr.; zur Nieden, Achim, Dipl.-Ing.
146 Equipment for heating a working cabin EP82110513 1982-11-15 EP0082946A3 1986-02-19 Okulicz, Konrad, Dr.; zur Nieden, Achim, Dipl.-Ing.
147 Einrichtung zum Aufheizen von Raumluft EP81100070.2 1981-01-08 EP0034242B1 1985-05-02 Tholen, Paul, Dipl.-Ing.
148 Einrichtung zum Beheizen einer Bedienungskabine EP82110513.7 1982-11-15 EP0082946A2 1983-07-06 Okulicz, Konrad, Dr.; zur Nieden, Achim, Dipl.-Ing.

Eine Einrichtung zum Beheizen einer Bedienungskabine einer Maschine verwendet als Heizungsmedium des Motoröl einer Brennkraftmaschine, das von einer Hydraulikpumpe unter hohen Druck gesetzt und in einem Drosselelement zur Erwärmung entspannt wird. Zur Beschleunigung der Erwärmung der Brennkraftmaschine wird der von der Hydrraulikpumpe kommende Motorölstrom dem Schmier- bzw. Kühlölsystem der Brennkraftmaschine vor den Lagerstellen zugeführt. Zur Verstärkung der Wärmezufuhr zu einer Teilmenge des Ölinhalts der Brennkraftmaschine saugt die Hydraulikpumpe hinter einer Schmierölförderpumpe im Kurzschluß einen Teilstrom aus dem Schmieröl- bzw. Kühlölsystem der Brennkraftmaschine an. Beide Maßnahmen führen zu einer verbesserten Applikationsmöglichkeit der Einrichtung an das Schmierölsystem von Brennkraftmaschinen.

149 锅炉烟气余热加热导热油的系统 CN201120069052.6 2011-03-16 CN202032740U 2011-11-09 钱学略; 刘兵
本实用新型用锅炉烟气余热加热导热油的系统,包括按烟气流经方向设在烟道内的省器和空预器,还包括导热油加热器,设在烟道内省煤器的前方,导热油加热器通过循环管与用热设备相连,循环管上设有循环。本实用新型的用锅炉烟气余热加热导热油的系统,充分利用了烟气余热,通过改变锅炉尾部受热面布置顺序,在保证原锅炉效率与出的同时,降低锅炉排烟温度,回收锅炉烟气部分余热,并将其回收的热量加热热载体——导热油,可应用于石油、化工、纺织、印染、橡胶、制革、食品、木材加工等许多行业。
150 온수를 이용한 온풍기 KR2020140008255 2014-11-11 KR2020140006126U 2014-12-05 안종은
본 고안은 온수를 이용하여 농업용 및 공업용 등 다양한 용도로 사용할 수 있고 성능을 우수하게 향상시킴과 동시에 소형화시킨 온수를 이용한 온풍기에 관한 것이다.
본 고안은 히터라인(24)과 날개(20) 및 역날개(22)가 설치된 몸체(10)로 이루어지는 몸체부(102)와; 상기 몸체부(102)의 후부에 설치되고 흡입되는 외기를 상기 몸체부(102)의 히터라인(24)을 통과하도록 내측부에 격판(34)이 구비된 공급 덕트부(104)와; 상기 공급 덕트부(104)를 통과해서 온풍을 공급하도록 하기 위해 외기를 흡입 공급하는 송풍모터(38)를 구비한 동작부(106)와; 상기 공급 덕트부(104)와 상기 몸체부(102)의 히터라인(24)을 통과한 온수를 회수하기 위한 제 1차 회수라인(44) 및 제 2차 회수라인(46)을 구비한 모터펌프(42)로 이루어지는 동작부(108)와; 상기 동작부(108)의 모터펌프(42)에 의해 회수된 온수를 다시 가열하여 상기 몸체부(102)의 히터라인(24)으로 공급하기 위한 온수기(110)로 이루어지는 것을 특징으로 한다.
151 히트 아궁이 KR2020130003745 2013-05-13 KR2020140005892U 2014-11-21 권정섭
히트 파이프를 이용해 비용을 절감시키는 구들 설치 방법
152 Anion hot water low heatino meat KR20090013751 2009-02-19 KR20100094670A 2010-08-27 KANG YOUN NAM
PURPOSE: A hot water mat boiler with a low temperature heating transparent silica tube for anion-generation is provided to prevent fire despite the exposure to ignition material for a long time by the installation of a temperature sensor and a transparent silica low temperature water convert pipe. CONSTITUTION: According to a hot water mat boiler with a low temperature heating transparent silica tube for anion-generation, fire is prevented despite the exposure to ignition material, since a temperature sensor(4) and a transparent silica low temperature water convert pipe are installed. A water shortage sensor is attached so that the temperate can rise despite the use of the small amount of liquid. A body balance safety switch is balanced with an electric room(8). A connector(7) is installed in an infrared ray hot-water heating pipe.
153 3단식 다용도 냉온매트 KR1020080089620 2008-09-11 KR1020100030751A 2010-03-19 이상의
PURPOSE: A 3-stage cold and hot mat is provided to prevent electromagnetic wave from being generated and generate heat in the electrolysis of sodium chloride electrolyte by positioning a hot water mat part on the top. CONSTITUTION: A 3-stage cold and hot mat comprises hot water mat part(1), an air mat part(2), and a coolant mat part(3). The hot water mat part, the air mat part, and the coolant mat part have a surface and a rear surface. The surface of the hot water mat part, the air mat part, and the coolant mat part is made of an outer cover and an inner cover. Sodium chloride electrolyte and ceramic balls are formed inside the surface and the rear surface of the hot water mat part. Pressing parts(14) are formed on the surface and the rear surface of the hot water mat part, the air mat part, the coolant mat part. A coupling hole(15) is formed at one corner of the hot water mat part. A rechargeable power supply part(16) is projected from a coupling hole. The air mat part is connected to a hot water mat part by a connecting member(123). A space is formed inside the air mat part. The coolant mat is connected to the other side of the hot water mat part through the connecting member. The inside of the coolant mat part is filled with the filter.
154 열매체오일과 미세발열체를 이용한 난방장치 KR1020080121504 2008-12-02 KR100884328B1 2009-02-18 이춘서
A heating apparatus using heat-medium oil and a micro heating element is provided to raise the temperature more rapidly with low power whereby the hot water pipe is coated with a triple layer structure consisting of polyethylene, aluminium and polyethylene. A heating apparatus comprises a triple-coated pipe(100) in which polyethylene coating(130), aluminum-coated(120), and polyethylene coating(110) are successively formed, a heating wire(200) which is installed inside the triple-coated pipe and coated with Teflon(210), heat-medium oil(300) filled in the triple-coated pipe, a micro heating element(400) filled in the heat-medium oil at the fixed density, two wires(500) connected to both ends of the triple-coated pipe by a coupling(900), oil adsorption cloth(600) installed at the inner both ends of the triple-coated pipe, a temperature controller(700) in which the two wires are connected, and a temperature sensor(800) which is connected to the triple-coated pipe in order to detect the temperature.
155 히트파이프 이용 냉난방 시스템 KR1020040063430 2004-08-12 KR1020060014748A 2006-02-16 김유관
본 발명은 열매체순환관이 히트파이프의 전 길이에 걸쳐 내설되어 순환이 이루어짐으로써 열효율을 증대시키며 시공이 용이하고, 겨울철 난방뿐만 아니라 하절기 냉방장치로의 전환이 자유롭도록 하는 히트파이프 이용 냉난방 시스템에 관한 것이다. 이를 실현하기 위한 본 발명은 보일러에 설치되는 온수조와 상기 온수조에 연결되며 온돌바닥을 돌아 복귀하는 열매체순환관과 상기 열매체순환관과 연결되는 히트파이프를 포함하여 이루어지는 온돌의 열교환시스템에 있어서, 상기 히트파이프는 내부 하방에 길이 방향으로 열매체순환관이 관통 내설되어 밀봉 결합됨을 특징으로 하는 것으로서, 상기 히트파이프는 양측으로 인출된 열매체관 단부에 관이음수단이 형성된 히트파이프 순환관 유니트로 형성될 수는 있는 한편, 상기 열매체순환관은 상기 온수조와, 압축기와 응축기 및 증발기를 포함하 는 냉각수단이 구비되는 냉수조에 3방밸브를 통하여 연결되어 난방싸이클 및 냉방싸이클로의 전환이 가능토록 구성되는 것이다.
156 오일을 이용한 온열매트 KR2020050000372 2005-01-06 KR200380248Y1 2005-03-29 지정근
본 고안은 오일을 이용한 온열매트에 관한 것으로, 단열재가 구비된 매트와, 상기 매트의 내부에 구비되고 액체가 채워진 수용부재와, 상기 수용부재의 일측과 연결된 순환펌프와, 상기 순환펌프를 컨트롤 하고 상기 수용부재와 연결되어진 열교환기와, 상기 열교환기에 전기를 공급하는 전원부를 구비하며, 상기 수용부재에 채워진 액체는 실리콘유인 것이 특징이다. 본 고안에 의하면, 매트에 전열선이 없기 때문에 인체에 유해한 전자파가 발생되지 않으며, 화재 및 감전의 위험이 없다. 그리고, 끓는점이 매우 높은 실리콘유를 사용하기 때문에 효율성이 매우 높다. 또한, 실리콘유는 온열매트를 제작하는 초기과정에서 주입하면 보충할 필요 없이 영구적으로 사용이 가능한 이점이 있다. 그리고, 실리콘유가 채워진 수용부재가 튜브 또는 실리콘 호스로 구비되기 때문에 온열매트를 접은 상태에서 보관 및 이동이 가능한 점도 있다.
157 열매체 기름과 제트 파이프를 이용한 보일러 KR1020010023260 2001-04-28 KR1020010069703A 2001-07-25 배정한
PURPOSE: A boiler using heat medium oil and a jet pipe is provided to generate high temperature of heat by combining the jet pipe and the heat medium oil. CONSTITUTION: A conventional method generates 100cal by using 18 liters of oil. Herein, a jet boiler method generates over 200cal by using 18 liters of the oil. Moreover, smoke is not generated while being used for semi-permanently. Herein, the existing method generates energy in a direct heat transfer method. The jet boiler method generates energy in an indirect heat transfer method.
158 고주파와 열 초전도 물질을 적용한 에너지 절감 시스템 KR1020010007349 2001-02-14 KR1020010044373A 2001-06-05 김현식
PURPOSE: An energy saving system applying high frequency and heat superconducting material is provided to save energy by having a thermal conductor conducting heat for using a complex system and a high frequency heating device for heating the thermal conductor. CONSTITUTION: An energy saving system applying high frequency and heat superconducting material includes a central controller(4), a magnetron(6) mounted at the center of the system and generating heat, artificial intelligent sensor(8) measuring temperature and humidity and determining whether or not the system is operated, an E.C.O.R.(9) for supplying and blocking electric current, a shielding device(10) for shielding microwave, a temperature controller(11), a thermal wave sensor(12) for indicating temperature of thermal wave, a waveguide(13) generating magnetron, and a cavity(5) formed in the waveguide and generating microwave to heat a pilot gas pipe(7) in which a heat superconductor is mounted.
159 난방 보일러용 순환 열매체 및 제조방법 KR1019990035065 1999-08-23 KR1019990083868A 1999-12-06 유한웅; 박성걸
본발명은동절기에실내의공기를따뜻하게하기위하여사용되는보일러의열매체에관한것으로서, 부식방지제, 소포제, D.B.P, 글리세린, 메탄올, 물등을적정의비율로혼합하여보일러의난방관에충진시켜난방관에순환시키는것으로, D.B.P와메탈올및 글리세린에의하여물의끓는온도보다빠르게온도가높아지는성질을이용하여물에비하여끓는시간이단시간에이루어지도록하여단시간내에실내온도를높일수 있도록하고온도가내려가는시간을장시간걸리도록함으로열효율을높이고계면활성제및 부식방지제에의하여난방수가난방관에장시간정체되어있어도난방관의부식이나이물질이퇴적되는것을방지하여난방수의순환을원활하게할 수있도록하는난방용보일러용순환열매체및 제조방법을제공하고자하는것이다.
160 A HEATING APPARATUS FOR A DOMESTIC CENTRAL HEATING SYSTEM PCT/GB2009002400 2009-10-07 WO2010041011A2 2010-04-15 MASSIER HARALD
A heating apparatus for a domestic central heating system. The apparatus comprising a reservoir (15) for heat transfer fluid. A pump assembly (33) comprises a pump (33) and a pressure relief valve (35), wherein the pump is arranged, in use, to draw a heat transfer fluid from the reservoir and wherein the pressure relief valve is arranged, in use, to control the pressure on the outlet side of the pump assembly by diverting a first portion of the heat transfer fluid to the reservoir. A flow restriction (47) is located upstream of the pump assembly. The pressure relief valve is arranged, in use, to divert a second portion of the heat transfer fluid through the flow restriction to heat the second portion of heat transfer fluid, and to return the heated heat transfer fluid to the reservoir.
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