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    • 31. 发明授权
    • Exhaust heat recovery apparatus
    • 废热回收装置
    • US08020524B2
    • 2011-09-20
    • US12218996
    • 2008-07-18
    • Masashi Miyagawa
    • Masashi Miyagawa
    • F01P11/08
    • F28F1/126F01N5/02F28D15/0266F28D21/0003F28F2265/26Y02T10/16
    • An exhaust heat recovery apparatus includes an evaporator and a condenser. The evaporator and the condenser form an operation medium circuit such that an operation medium circulates through the evaporator and the condenser. The evaporator has tubes and is disposed in a duct part through which an exhaust gas generated from an engine flows. The condenser is disposed in a heated fluid circuit through which a heated fluid flows for heating the heated fluid by condensation of the operation medium. The heated fluid circuit is separate from an engine coolant circuit through which an engine coolant for cooling the engine flows. The evaporator further has a fin between the tubes. The fin is provided with an operation force reducing portion that is capable of reducing an operation force applied to the fin due to a thermal expansion difference between the tubes, which are exposed to the exhaust gas.
    • 排气热回收装置包括蒸发器和冷凝器。 蒸发器和冷凝器形成操作介质回路,使得操作介质通过蒸发器和冷凝器循环。 蒸发器具有管并设置在管道部分中,从发动机产生的废气流过该管道部分。 冷凝器设置在加热的流体回路中,加热的流体通过该流体流动,以通过操作介质的冷凝来加热被加热的流体。 加热的流体回路与用于冷却发动机的发动机冷却剂流过的发动机冷却剂回路分开。 蒸发器还在管之间具有翅片。 翅片设置有操作力减小部分,其能够降低由于暴露于废气的管之间的热膨胀差而施加到翅片的操作力。
    • 33. 发明授权
    • Exhaust heat recovery device
    • 废热回收装置
    • US07877991B2
    • 2011-02-01
    • US12150474
    • 2008-04-28
    • Masashi MiyagawaKimio KoharaSeiji Inoue
    • Masashi MiyagawaKimio KoharaSeiji Inoue
    • F01N3/02F01N5/02B60H1/00
    • F01N5/02F01N2240/02F01P2003/225F01P2060/08F28D15/0266F28D15/06F28D21/0003Y02T10/16
    • An exhaust heat recovery device includes an evaporator for evaporating working medium sealed thereinto by exhaust heat from an internal combustion engine, a condenser for cooling the working medium evaporated at the evaporator, and a communication portion for communicating the evaporator with the condenser in an annular shape. The exhaust heat recovery device further includes an internal pressure operating valve adapted to be closed when a pressure of the working medium is equal to or more than a predetermined pressure, and a temperature operating valve adapted to be closed when a temperature of the coolant is equal to or more than a predetermined temperature. The internal pressure operating valve and the temperature operating valve are disposed between a downstream side of the condenser and an upstream side of the evaporator.
    • 一种废热回收装置,包括:蒸发器,用于通过来自内燃机的排气来密封其中的工作介质,用于冷却在蒸发器蒸发的工作介质的冷凝器;以及用于使蒸发器与冷凝器连通的连通部分, 。 排气热回收装置还包括适于当工作介质的压力等于或大于预定压力时关闭的内压操作阀,以及当冷却剂的温度相等时适于关闭的温度操作阀 达到或超过预定温度。 内部压力操作阀和温度操作阀设置在冷凝器的下游侧和蒸发器的上游侧之间。
    • 35. 发明申请
    • Heat exchanger
    • 热交换器
    • US20090065184A1
    • 2009-03-12
    • US12231638
    • 2008-09-04
    • Masashi MiyagawaKazuaki KafukuYasutoshi Yamanaka
    • Masashi MiyagawaKazuaki KafukuYasutoshi Yamanaka
    • F28D7/00
    • F28D15/0266F28D9/0037F28D21/0003F28F3/025
    • A heat exchanger has a core and header tanks. The core includes passage units stacked in a unit sacking direction and fins. Each passage unit includes a first passage member and a second passage member connected to each other such that a second fluid passage is provided therein. The passage units are stacked such that first fluid passages are provided between bent portions of the first and second passage members of the adjacent passage units. The fins are disposed inside of the passage units and held by the bent portions of the first and second passage members. The core has core end walls constructed of at least one of first side walls of the first passage members and second side walls of the second passage members. The header tanks are disposed at ends of the core and provide tank inner spaces with the core end walls.
    • 热交换器具有核心和集水箱。 核心包括以单元开袋方向堆叠的通道单元和翅片。 每个通道单元包括彼此连接的第一通道构件和第二通道构件,使得在其中设置第二流体通道。 通道单元被堆叠,使得第一流体通道设置在相邻通道单元的第一和第二通道构件的弯曲部分之间。 翅片设置在通道单元的内部并由第一和第二通道构件的弯曲部分保持。 芯具有由第一通道构件的第一侧壁和第二通道构件的第二侧壁中的至少一个构成的芯端壁。 集水箱设置在芯的端部,并且向芯部端壁提供罐内部空间。
    • 37. 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。