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    • 41. 发明申请
    • Co-generation
    • 联合代
    • US20080022707A1
    • 2008-01-31
    • US11785068
    • 2007-04-13
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • F25B27/02
    • F25B13/00F25B27/02F25B2400/24Y02A30/274Y02E20/14Y02P80/15
    • Disclosed related to a co-generation according to the present invention has some advantages in that the heat of the refrigerant recovered at the supply heat exchanger is used for the water boiling as well as the heat recovered at the drive source is used for water boiling when the air conditioner is under the air-cooling mode and has a water boiling request by comprised as an electric generator; a drive source operating the electric generator; a waste heat recovery heat exchanger recovering the exhaust gas heat of the drive source; a water boil heat exchanger installed for boiling water; an air conditioner air-conditioning indoor air; a radiant heat exchanger radiating heat to outside; a supply heat exchanger installed on the refrigerant path of the air conditioner; and a heat transfer path connecting the waste heat recovery heat exchanger, water boil heat exchanger, and the radiant heat exchanger, and the supply heat exchanger.
    • 本发明的共同发明涉及一些优点,即在供应热交换器回收的制冷剂的热量用于水沸腾,并且在驱动源处回收的热量用于水沸腾时 空调器处于空气冷却模式,并且具有作为发电机的水沸腾要求; 操作发电机的驱动源; 废热回收热交换器回收驱动源的排气热; 安装沸水的水煮热交换器; 空调空调室内空气; 辐射热交换器向外辐射热量; 供给热交换器,其安装在所述空调机的制冷剂路径上; 以及连接废热回收热交换器,水煮热交换器和辐射热交换器的热交换路径和供给热交换器。
    • 43. 发明授权
    • Air conditioner for individual cooling/heating
    • 单独冷却/加热空调
    • US06393842B2
    • 2002-05-28
    • US09727518
    • 2000-12-04
    • Cheol Min KimYoon Jel HwangYun Ho Ryu
    • Cheol Min KimYoon Jel HwangYun Ho Ryu
    • F25B2102
    • F25B21/04F24F5/0042F24F2221/12
    • Air condition for individual cooling/heating including a front compartment and a rear compartment separated by a partition plate made of an insulating material for forced inlet and outlet of external air therethrough respectively, at least two heat exchanger parts each in upper parts of the front and rear compartments and lower parts of front and rear compartments for making heat exchange with external air passing through the front compartment and the rear compartment respectively, first drawing means and second drawing means mounted in an upper portion or a lower portion of the front compartment or the rear compartment respectively for forced circulation of the external air through respective compartments, and driving means for driving the first and second drawing means, each of the heat exchanger parts includes thermoelectric modules each connected to a power source for absorbing heat at a heat absorptive part and discharging the heat from a heat dissipative part provided opposite to the heat absorptive part and heat exchangers each in contact either with the heat absorptive part or the heat dissipative part of the thermoelectric module for causing heat exchange between the air flowing into the front or rear compartment and the thermoelectric module, thereby providing individual cooling/heating to a user, and constant temperature dehumidification.
    • 用于单独冷却/加热的空气条件包括前隔室和后室,隔室由分隔板隔开,隔板由绝缘材料制成,用于分别强制进出外部空气入口和出口;至少两个热交换器部分,分别位于前部的上部和 后隔室和前后隔室的下部,分别与通过前隔室和后隔室的外部空气进行热交换;第一拉丝装置和第二拉伸装置,安装在前隔室的上部或下部或 后隔室分别用于通过相应的隔室强制循环外部空气,以及用于驱动第一和第二拉伸装置的驱动装置,每个热交换器部分包括各自连接到用于在吸热部分吸收热量的电源的热电模块, 从相对设置的散热部件排出热量 每个热吸收部分和热交换器与热电模块的吸热部分或散热部分接触,用于引起流入前室或后室的热量与热电模块之间的热交换,从而提供单独的冷却/加热 给用户,恒温除湿。
    • 44. 发明授权
    • Co-generation and control method of the same
    • 共同生成与控制方法相同
    • US08245948B2
    • 2012-08-21
    • US11783888
    • 2007-04-12
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • F25B27/02F25B13/00
    • F25B27/02F24D2200/18F24D2200/26F24H2240/06F24H2240/10Y02A30/274Y02B30/52Y02E20/14Y02P80/15
    • A co-generation system is provided that includes a heat exchanger that heats water; a heat transfer path connected with the water heat exchanger that transfers heat; a hot water storage tank connected with the water heat exchanger and the water circulation path; a hot water storage water supply apparatus that supplies water in the hot water storage tank to the water circulation path; a water supply path connected with the water circulation path; a water supply apparatus that supplies water to the water supply path; and a hot water supply heat exchanger bypassing apparatus that bypasses the water supplied to the water circulation path from the hot water storage tank through the hot water supply heat exchanger. With the co-generation system, so constructed, effective water boil heat is increased, as supplying the cold water supplied from the water service and the hot water supplied from the hot water storage tank to the hot water supply heat exchanger properly and heat exchanging with the heat medium, such as an anti-freeze solution, passing through the hot water supply heat exchanger.
    • 提供一种共发电系统,其包括加热水的热交换器; 与传热的水热交换器连接的传热路径; 与水热交换器和水循环路径连接的热水储存箱; 将蓄热水箱内的水供给水循环路的热水储存水供给装置, 与水循环路径连接的供水路径; 供水装置,其向供水路径供水; 以及热水供给热交换器旁通装置,其绕过从热水储存箱经由热水供给用热交换器供给到水循环路径的水。 通过共同发电系统,如此构建,有效的水沸腾热量就会增加,因为从供水服务提供的冷水和从热水储水箱供应的热水适当地供热给热交换器,并与 通过热水供给热交换器的热介质,例如防冻溶液。
    • 45. 发明授权
    • Exhaust gas heat exchanger for cogeneration system
    • 热电联产系统废气换热器
    • US07543631B2
    • 2009-06-09
    • US11250541
    • 2005-10-17
    • Cheol Min KimCheol Soo KoSim Bok HaBaik Young Chung
    • Cheol Min KimCheol Soo KoSim Bok HaBaik Young Chung
    • F28D7/10F02M31/08
    • F28D7/10F28D1/06F28D21/0003F28F13/06Y02E20/14
    • An exhaust gas heat exchanger for a cogeneration system is disclosed. In the exhaust gas heat exchanger, a heat exchanger cover is arranged around a heat exchanger body such that a primary heat medium passage, through which a heat medium passes, is defined between the heat exchanger cover and the heat exchanger body. In the heat exchanger body, a heat medium tube forming a secondary heat medium passage, through which the heat medium emerging from the primary heat medium passage passes, is arranged. Accordingly, the heat medium primarily absorbs heat from the exhaust gas while passing through the primary heat medium passage, and then secondarily absorbs heat from the exhaust gas while passing through the secondary heat medium passage. As a result, an enhancement in heat exchanging efficiency is achieved.
    • 公开了一种用于热电联产系统的排气热交换器。 在排气热交换器中,在热交换器主体的周围配置热交换器盖,在热交换器盖和热交换器主体之间限定有热介质通过的一次以上的热介质通路。 在热交换器主体中,设置形成从一次热介质通道出来的热介质通过的二次热介质通路的热介质管。 因此,热介质在通过一次导热介质通路的同时主要从排气中吸收热量,然后在通过二次热介质通路的同时二次从排气中吸收热量。 结果,实现了热交换效率的提高。