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    • 2. 发明申请
    • Exhaust heat recovery device
    • 废热回收装置
    • US20080011458A1
    • 2008-01-17
    • US11827520
    • 2007-07-12
    • Masashi MiyagawaYasutoshi YamanakaSeiji InoueKimio KoharaKenshirou MuramatsuTakahiro Maeda
    • Masashi MiyagawaYasutoshi YamanakaSeiji InoueKimio KoharaKenshirou MuramatsuTakahiro Maeda
    • F28D15/00
    • F01N5/02F01P2003/2278F01P2060/16F02B75/22F28D1/0333F28D15/0266F28D15/06F28D21/0003F28D2015/0216Y02T10/16
    • An exhaust heat recovery device able to secure heat exchange performance even when tilted, provided with an evaporator exchanging heat between an exhaust gas and an evaporable and condensable working fluid sealed inside it and thereby evaporating the working fluid and a condenser exchanging heat between the working fluid evaporated by the evaporator and the cooling water and thereby condensing the working fluid, wherein the evaporator and condenser are arranged in a closed loop channel through which the working fluid circulates, the evaporator and condenser are arranged adjoining each other in the substantially horizontal direction, the evaporator is provided with a plurality of evaporation side heat pipes arranged in parallel and is provided with a first evaporation side header communicating one ends of the plurality of evaporation side heat pipe and a second evaporation side header communicating the other ends, and, when mounted in a vehicle in a horizontal state, the second evaporation side header arranged at the bottom among the two evaporation side headers is arranged with the side far from the condenser positioned lower than the side close to it.
    • 一种排气热回收装置,即使在倾斜时也能确保热交换性能,其具有蒸发器,其在排气和密封在其内部的可蒸发和可冷凝的工作流体之间交换热量,从而蒸发工作流体和在工作流体之间交换热量的冷凝器 蒸发器和冷却水蒸发,从而冷凝工作流体,其中蒸发器和冷凝器布置在工作流体循环通过的闭环通道中,蒸发器和冷凝器在大致水平方向上彼此相邻地布置, 蒸发器设置有并排布置的多个蒸发侧热管,并且设置有连通多个蒸发侧热管的一端的第一蒸发侧集管和连通另一端的第二蒸发侧集管,并且当安装在 处于水平状态的车辆,第二蒸发器 布置在两个蒸发侧集管中的底部的离子侧集管布置成远离冷凝器的一侧位于比靠近它的侧面更低的位置。
    • 3. 发明申请
    • Exhaust heat recovery apparatus
    • 废热回收装置
    • US20080196401A1
    • 2008-08-21
    • US12070291
    • 2008-02-18
    • Kenshirou MuramatsuMasashi MiyagawaYasutoshi YamanakaSeiji InoueKimio Kohara
    • Kenshirou MuramatsuMasashi MiyagawaYasutoshi YamanakaSeiji InoueKimio Kohara
    • F01N3/02
    • F28D15/0266F01N5/02F28D15/06F28D21/0003Y02T10/16
    • An exhaust heat recovery apparatus includes an evaporation unit, a condensation unit, an evaporation-side communication part and a condensation-side communication part. The evaporation unit is disposed in an exhaust gas passage through which an exhaust gas flows and performs heat exchange between the exhaust gas and an operation fluid flowing therein, thereby evaporating the operation fluid. The condensation unit is disposed in a coolant passage through which an engine coolant flows and performs heat exchange between the operation fluid and the engine coolant, thereby condensing the operation fluid. The evaporation-side communication part connects the evaporation unit and the condensation unit for introducing evaporated operation fluid to the condensation unit. The condensation-side communication part connects the condensation unit and the evaporation unit for introducing condensed operation fluid to the evaporation unit. The condensation-side communication part is provided with a throttle part.
    • 排气热回收装置包括蒸发单元,冷凝单元,蒸发侧连通部和冷凝侧连通部。 蒸发单元设置在废气流过的废气通道中,并且在排气和流过其中的操作流体之间进行热交换,从而蒸发操作流体。 冷凝单元设置在冷却剂通道中,发动机冷却剂通过该冷却剂通道,并在操作流体和发动机冷却剂之间进行热交换,从而冷凝工作流体。 蒸发侧连通部连接蒸发单元和冷凝单元,用于将蒸发的操作流体引入冷凝单元。 冷凝侧连通部将冷凝单元和蒸发单元连接,将冷凝运行流体引入蒸发单元。 冷凝侧连通部设有节流部。
    • 4. 发明申请
    • Exhaust heat recovery device
    • 废热回收装置
    • US20100146943A1
    • 2010-06-17
    • US12653256
    • 2009-12-10
    • Kenshirou MuramatsuYasutoshi YamanakaKimio KoharaYuuki Mukoubara
    • Kenshirou MuramatsuYasutoshi YamanakaKimio KoharaYuuki Mukoubara
    • F01N3/10
    • F01N5/02F01N3/0205F01N3/2046F01N3/2889F01N2240/02Y02T10/16Y02T10/26
    • An exhaust heat recovery device is provided with an evaporation portion for evaporating an operation fluid flowing therein by performing heat exchange with exhaust gas of an engine, a condensation portion for condensing the operation fluid flowing from the evaporation portion by performing heat exchange with coolant of the engine, and a flow adjusting portion for adjusting a flow amount of the operation fluid flowing from the condensation portion to the evaporation portion. A catalyst temperature detector is adapted to detect a temperature of a catalyst for purifying the exhaust gas, and a control unit sets a catalyst heating mode when the detected temperature of the catalyst is lower than a threshold value. Furthermore, the control unit causes the flow adjusting portion to adjust the flow amount of the operation fluid from the condensation portion to the evaporation portion at zero, in the catalyst heating mode.
    • 排气热回收装置设有蒸发部分,用于通过与发动机的排气进行热交换来蒸发其中流动的操作流体;冷凝部分,用于通过与蒸发部分的冷却剂进行热交换来冷凝从蒸发部分流出的操作流体; 发动机和用于调节从冷凝部流向蒸发部的工作流体的流量的流量调节部。 催化剂温度检测器适于检测用于净化废气的催化剂的温度,并且当催化剂的检测温度低于阈值时,控制单元设定催化剂加热模式。 此外,控制单元使催化剂加热模式中的流量调节部分将操作流体从冷凝部分到蒸发部分的流量调节到零。
    • 7. 发明授权
    • Exhaust heat recovery device
    • 废热回收装置
    • US08333068B2
    • 2012-12-18
    • US12653256
    • 2009-12-10
    • Kenshirou MuramatsuYasutoshi YamanakaKimio KoharaYuuki Mukoubara
    • Kenshirou MuramatsuYasutoshi YamanakaKimio KoharaYuuki Mukoubara
    • F01N3/02
    • F01N5/02F01N3/0205F01N3/2046F01N3/2889F01N2240/02Y02T10/16Y02T10/26
    • An exhaust heat recovery device is provided with an evaporation portion for evaporating an operation fluid flowing therein by performing heat exchange with exhaust gas of an engine, a condensation portion for condensing the operation fluid flowing from the evaporation portion by performing heat exchange with coolant of the engine, and a flow adjusting portion for adjusting a flow amount of the operation fluid flowing from the condensation portion to the evaporation portion. A catalyst temperature detector is adapted to detect a temperature of a catalyst for purifying the exhaust gas, and a control unit sets a catalyst heating mode when the detected temperature of the catalyst is lower than a threshold value. Furthermore, the control unit causes the flow adjusting portion to adjust the flow amount of the operation fluid from the condensation portion to the evaporation portion at zero, in the catalyst heating mode.
    • 排气热回收装置设置有蒸发部,用于通过与发动机的排气进行热交换来蒸发在其中流动的工作流体,冷凝部,用于通过与蒸发部的冷却剂进行热交换来冷凝从蒸发部流出的工作流体 发动机和用于调节从冷凝部流向蒸发部的工作流体的流量的流量调节部。 催化剂温度检测器适于检测用于净化废气的催化剂的温度,并且当催化剂的检测温度低于阈值时,控制单元设定催化剂加热模式。 此外,控制单元使催化剂加热模式中的流量调节部分将操作流体从冷凝部分到蒸发部分的流量调节到零。