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    • 2. 发明授权
    • Cogeneration system
    • 热电联产系统
    • US07240505B2
    • 2007-07-10
    • US11155467
    • 2005-06-20
    • Cheol Min KimCheol Soo KoSim Bok HaBaik Young Chung
    • Cheol Min KimCheol Soo KoSim Bok HaBaik Young Chung
    • F25B27/00
    • F25B27/02F25B13/00F25B2313/02523Y02A30/274Y02E20/14
    • A cogeneration system including a heat pump type air conditioner including an outdoor heat exchanger and an outdoor heat exchanger bypass conduit, and a cogeneration unit including a second outdoor heat exchanger, an outdoor heat exchanger bypass conduit, second outdoor heat exchanger connecting conduits, and second outdoor heat exchanger bypass conduit to cause the refrigerant to be evaporated in the second outdoor heat exchanger during a heating operation of the heat pump type air conditioner, and to cause the refrigerant to be condensed in the outdoor heat exchanger during a cooling operation of the heat pump type air conditioner, so that the heat pump type air conditioner can provide a constant heating capacity irrespective of a variation in outdoor temperature during the heating operation thereof.
    • 一种热电联产系统,包括具有室外热交换器和室外热交换器旁通管道的热泵式空调机,以及包括第二室外热交换器,室外热交换器旁通管道,第二室外热交换器连接管道和第二室外热交换器旁通管道的热电联产机 室外热交换器旁路管道,在热泵式空调机的制热运转时使第二室外热交换器中的制冷剂蒸发,并且在制热运转中使制冷剂在室外热交换器中冷凝 泵式空调器,使得热泵式空调器可以提供恒定的加热能力,而不管室外温度在其加热操作期间的变化。
    • 3. 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。
    • 5. 发明申请
    • Co-generation and control method of the same
    • 共同生成与控制方法相同
    • US20080023961A1
    • 2008-01-31
    • US11783888
    • 2007-04-12
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • F01K23/00
    • F25B27/02F24D2200/18F24D2200/26F24H2240/06F24H2240/10Y02A30/274Y02B30/52Y02E20/14Y02P80/15
    • Disclosed related to a co-generation comprising a heat exchanger heating water; a heat transfer path connected with the water heat exchanger to transfer heat; a hot water storage tank connected with the water heat exchanger and the water circulation path; a hot water storage water supply apparatus supplying 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 supplying water to the water supply path; and a hot water supply heat exchanger bypassing apparatus and bypassing the water supplied to the water circulation path from the hot water storage tank through the hot water supply heat exchanger. The co-generation of the present invention has some advantage in that the 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 70 properly and heat exchanging with the heat medium such as an anti freezing solution and etc passing through the hot water supply heat exchanger.
    • 涉及一种包括热交换器加热水的共发电机; 与水热交换器连接以传递热量的传热路径; 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; 向供水路供水的供水装置; 和热水供给换热器旁通装置,并且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。 本发明的共同发明具有一些优点,因为从供水服务供给的冷水和从热水储存箱供给到热水供给热交换器70的热水正确地供给有效的水沸腾热量增加 与通过热水供给用热交换器的防冻液等热介质进行热交换。
    • 6. 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。
    • 7. 发明申请
    • Co-generation
    • 联合代
    • US20080022708A1
    • 2008-01-31
    • US11785067
    • 2007-04-13
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • Eun Jun ChoSim Bok HaCheol Min KimSe Dong Chang
    • F25B27/02
    • F25B27/02F25B13/00F25B2313/0254F25B2400/24Y02A30/274Y02E20/14Y02P80/15
    • Disclosed related to a co-generation according to the present invention comprising an electric generator, an engine, a waste heat recovery heat exchanger where the waste heat of the engine is recovered, a water boil heat exchanger connected with the waste heat recovery heat exchanger and the heat transfer path, a hot water storage tank connected with the water boil heat exchanger and the water circulation path, a water boil heat exchanger bypassing path formed at the water circulation path, a water boil heat exchanger bypassing valve installed at the water boil heat exchanger bypassing path. The co-generation of the present invention has some advantages in that the entire length of the exhaust pipe and the installing costs are reduced as the numbers of the long pipes are reduced compared with the case that the water boil heat exchanger and the water boil heat exchanger bypassing valve are installed at the outside of the engine unit as all of the electric generator, engine, the waste heat recovery heat exchanger, the water boil heat exchanger, the water heat exchanger bypassing path, and the water boil heat exchanger bypassing valve are installed at the engine unit.
    • 本发明的共同发明涉及发电机,发动机,回收发动机的余热的废热回收热交换器,与废热回收热交换器连接的水热交换器和 传热路径,与水沸腾热交换器和水循环路径连接的热水储存罐,在水循环路径上形成的水煮热交换器旁通路,安装在水沸腾处的水煮热交换器旁通阀 交换机旁路。 本发明的共同发明具有以下优点:与水煮热交换器和水沸腾的情况相比,排气管的整个长度和安装成本都降低,因为长管的数量减少 交换器旁通阀安装在发动机单元的外部,因为所有的发电机,发动机,废热回收热交换器,水沸器热交换器,水热交换器旁通路径和水热交换器旁通阀都是 安装在发动机单元。
    • 8. 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。