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    • 43. 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。
    • 46. 发明申请
    • Heat pipe
    • 热管
    • US20060231235A1
    • 2006-10-19
    • US11400815
    • 2006-04-07
    • Yasutoshi YamanakaShinichi HamadaSeiji InoueKimio Kohara
    • Yasutoshi YamanakaShinichi HamadaSeiji InoueKimio Kohara
    • F01N5/02F28D15/02
    • F01N5/02F02G5/02F28D15/0275F28D15/06Y02T10/16Y02T10/166
    • A heat pipe able to switch between operation and suspension of heat transport when used for a bottom heat type and able to prevent the condensed working medium from dropping to the evaporator side and a waste heat recovery system using the same are provided. A heat pipe having an evaporator set at one end of a tubular closed container and using heat of an outside high temperature part to cause the inside working medium to evaporate and a condenser set at the other end side of the closed container and radiating heat to an outside low temperature part to cause the evaporated working medium to condense, wherein the evaporator is arranged below the condenser and has a holding means holding the liquefied working medium condensed by the condenser along with an increase in the amount of heat received by the evaporator to prevent return to the evaporator.
    • 本发明提供一种热管,其能够在用于底部热型时能够在热运输的运行和暂停之间切换,并且能够防止冷凝的工作介质下降到蒸发器侧,并且提供使用其的废热回收系统。 一种热管,其具有设置在管状密闭容器的一端并使用外部高温部分的热量以使内部工作介质蒸发的蒸发器和设置在密闭容器的另一端侧的冷凝器并将热量辐射到 外部低温部分使蒸发的工作介质冷凝,其中蒸发器布置在冷凝器下方,并且具有保持装置,其保持由冷凝器冷凝的液化工作介质以及蒸发器接收的热量的增加以防止 返回蒸发器。
    • 48. 发明授权
    • Laminated heat exchanger
    • 层压热交换器
    • US06173764B1
    • 2001-01-16
    • US09388554
    • 1999-09-02
    • Seiji Inoue
    • Seiji Inoue
    • F28D103
    • F28D1/05325F28D1/0341F28F3/04F28F3/044F28F9/0248
    • In a heat exchanger formed by laminating tube elements alternately with fins over a plurality of levels, a plurality of beads are formed in each of tube elements provided with intake/outlet portions in the areas where the tank portions change to a passage portion. The width of these beads are set to be larger than the beads in other tube elements so as to constrict the passage cross section. In addition, the areas of the communicating holes formed in tank portions away from the intake/outlet portion through which the heat exchanging medium flows in are made smaller than the areas of the communicating holes formed in tank portions near the intake/outlet portion. The centers of the communicating holes in the tank portions further away from the intake/outlet portion are located further downward than the centers of the communicating holes in the tank portions provided closer to the intake/outlet portion. The distribution of the heat exchanging medium is made more consistent to reduce inconsistency in the temperature among individual tube elements in order to achieve good heat exchange.
    • 在通过多个级别与翅片交替地层叠管元件而形成的热交换器中,在容器部分改变为通道部分的区域中,在设置有进/出口部分的每个管元件中形成多个珠。 这些珠粒的宽度设定为大于其它管元件中的珠粒,以便缩小通道横截面。 此外,形成在与热交换介质流过的进/出口部分的罐部分中形成的连通孔的面积小于形成在进/出口部分附近的罐部分中的连通孔的面积。 进一步远离进/出口部分的罐部分中的连通孔的中心比设置在靠近进/出口部分的罐部分中的连通孔的中心更靠下。 使热交换介质的分布更加一致,以减少各个管元件之间的温度的不一致性,以实现良好的热交换。
    • 49. 发明授权
    • Adsorptive type refrigeration apparatus
    • 吸附式制冷装置
    • US5619866A
    • 1997-04-15
    • US530518
    • 1995-09-19
    • Hideaki SatoShin HondaSeiji InoueHiroshi TanakaTadayoshi Terao
    • Hideaki SatoShin HondaSeiji InoueHiroshi TanakaTadayoshi Terao
    • F25B17/08F25B7/00
    • F25B17/083Y02B30/64
    • An (n)th adsorber and (n+1)th adsorber among a plurality of adsorbers in an adsorption process are connected thermally in series, and adsorbent of the (n)th adsorber which is a previous stage is cooled by adsorption of refrigerant by adsorbent of the (n+1)th adsorber which is a subsequent stage. That is to say, adsorbent of a first-stage adsorber on the left-hand side which adsorbs vapor of refrigerant such as water which exits from an evaporator is strongly cooled by adsorption of vapor from refrigerant such as water which flows through a cooling pipe by adsorbent of a second-stage adsorber on the right-hand side, large adsorption capacity is imparted by a reduction in temperature, and as a result, the evaporator demonstrates large refrigeration capacity. Consequently, a compact adsorptive type refrigeration apparatus which demonstrates large refrigeration capacity while having a compact adsorber and using a comparatively small quantity of adsorbent is provided. The present invention can also be applied with respect to an adsorption process of a refrigeration system in which adsorbent circulates in an adsorber.
    • 吸附过程中的多个吸附器中的第(n)个吸附器和第(n + 1)个吸附器被串联连接,并且通过吸附制冷剂的第(n)个吸附器的吸附剂被冷却, 作为后续阶段的第(n + 1)个吸附器的吸附剂。 也就是说,吸附从蒸发器出来的诸如水的制冷剂的蒸气的左侧的吸附剂通过从制冷剂如来自冷却管流过的水等的制冷剂吸附而被吸附, 右侧的第二级吸附器的吸附剂通过降低温度赋予大的吸附能力,结果,蒸发器显示出大的制冷能力。 因此,提供了一种紧凑型吸附型制冷装置,其在具有紧凑型吸附器并且使用相对少量的吸附剂的情况下显示出大的制冷能力。 本发明也可以应用于其中吸附剂在吸附剂中循环的制冷系统的吸附过程。