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    • 1. 发明申请
    • HEATING APPARATUS
    • 加热装置
    • US20150159960A1
    • 2015-06-11
    • US14403004
    • 2012-06-15
    • Masashi FujitsukaKazunori Tsuchino
    • Masashi FujitsukaKazunori Tsuchino
    • F28D20/00
    • F28D20/0034F24D17/0078F24D17/02F24D19/1054F24D2220/08F24H4/04F25B30/02F25B2339/047F28D2020/0073F28D2020/0078
    • A thermal storage and exchange heating apparatus includes: a thermal storage tank that stores a heated heat medium; a circulation channel connected to high and low temperature sides of the thermal storage tank, and through which the heat medium circulates; a heat exchanger provided to the circulation channel and configured to exchange heat between the heat medium and a heating object, to heat the heating object; a circulation direction switch configured to switch circulation of the heat medium in the circulation channel between a forward direction from the high-temperature side to the low-temperature side and a reversed backward direction; and a controller configured to cause the heat medium to circulate in the forward direction by switching the circulation direction switch in a heating operation and causing the heat medium to circulate in the backward direction by switching the circulation direction switch after a stop of the heating operation.
    • 热存储和交换加热装置包括:储存加热的热介质的储热箱; 连接到储热箱的高温和低温侧的循环通道,热介质循环通过该循环通道; 热交换器,其设置在所述循环通道上并且被配置为在所述热介质和加热物体之间交换热量,以加热所述加热物体; 循环方向开关,其构造为在从高温侧向低温侧的向前方向和反转方向之间切换循环通道中的热介质的循环; 以及控制器,其被配置为通过在加热操作中切换循环方向开关来使热介质在向前方向上循环,并且在加热操作停止之后通过切换循环方向开关使热介质在向后方向上循环。
    • 6. 发明申请
    • EXHAUST HEAT RECOVERY SYSTEM
    • 排气热回收系统
    • US20110167818A1
    • 2011-07-14
    • US13063474
    • 2009-09-03
    • Kazunori TsuchinoKazuhiko KawajiriMinoru Sato
    • Kazunori TsuchinoKazuhiko KawajiriMinoru Sato
    • F01K23/10
    • F02G5/02F01K13/02F01K23/065F01K25/10Y02T10/166
    • In a case of a refrigerant amount being short when a Rankine cycle starts operating, because the pressure difference does not occur across a refrigerant pump, refrigerant cannot be injected from a bypass circuit to the Rankine cycle, and therefore super-cooling degree cannot be controlled. An exhaust heat recovery system is provided that can adjust the super-cooling degree even in the case of the pressure difference not occurring across the refrigerant pump. The system includes a refrigerant tank, for storing refrigerant, which is connected by pipes to the low-pressure circuit side and the high-pressure circuit side of the Rankine cycle through a low-pressure-side valve and a high-pressure-side valve, respectively, and a temperature adjuster for adjusting internal temperature of the refrigerant tank.
    • 在兰金循环开始运行时制冷剂量短的情况下,由于在制冷剂泵上不产生压差,所以制冷剂不能从旁路回路喷射到兰金循环,因此不能控制超冷却度 。 提供了一种排气热回收系统,其即使在制冷剂泵两端不发生压力差的情况下也能够调节超冷却度。 该系统包括用于存储制冷剂的制冷剂罐,其通过管道通过低压侧阀和高压侧阀连接到兰金循环的低压回路侧和高压回路侧 以及用于调节制冷剂罐的内部温度的温度调节器。
    • 8. 发明授权
    • Exhaust heat recovery system
    • 废热回收系统
    • US08713939B2
    • 2014-05-06
    • US13063474
    • 2009-09-03
    • Kazunori TsuchinoKazuhiko KawajiriMinoru Sato
    • Kazunori TsuchinoKazuhiko KawajiriMinoru Sato
    • F01K23/10F02G3/00F01K13/00F01K25/00F01K23/06
    • F02G5/02F01K13/02F01K23/065F01K25/10Y02T10/166
    • In a case of a refrigerant amount being short when a Rankine cycle starts operating, because the pressure difference does not occur across a refrigerant pump, refrigerant cannot be injected from a bypass circuit to the Rankine cycle, and therefore super-cooling degree cannot be controlled. An exhaust heat recovery system is provided that can adjust the super-cooling degree even in the case of the pressure difference not occurring across the refrigerant pump. The system includes a refrigerant tank, for storing refrigerant, which is connected by pipes to the low-pressure circuit side and the high-pressure circuit side of the Rankine cycle through a low-pressure-side valve and a high-pressure-side valve, respectively, and a temperature adjuster for adjusting internal temperature of the refrigerant tank.
    • 在兰金循环开始运行时制冷剂量短的情况下,由于在制冷剂泵上不产生压差,所以制冷剂不能从旁路回路喷射到兰金循环,因此不能控制超冷却度 。 提供了一种排气热回收系统,其即使在制冷剂泵两端不发生压力差的情况下也可以调节超冷却度。 该系统包括用于存储制冷剂的制冷剂罐,其通过管道通过低压侧阀和高压侧阀连接到兰金循环的低压回路侧和高压回路侧 以及用于调节制冷剂罐的内部温度的温度调节器。
    • 9. 发明申请
    • EXHAUST HEAT REGENERATION SYSTEM
    • 废热再生系统
    • US20120090317A1
    • 2012-04-19
    • US13378841
    • 2010-07-26
    • Kazuhiko KawajiriMinoru SatoKazunori Tsuchino
    • Kazuhiko KawajiriMinoru SatoKazunori Tsuchino
    • F02G5/02
    • F01C1/0215F01C11/008F01C13/04F01C21/06F01K13/02F01K23/065F01K25/10F04C2/18F04C11/006F04C15/06F04C23/02F04C2240/30
    • An exhaust heat regeneration system includes: an evaporator for cooling engine cooling water; an expansion device for expanding the refrigerant heated through the evaporator so as to generate a driving force; a condenser for cooling the refrigerant passing through the expansion device to condense the refrigerant; and a pump for pressure-feeding the refrigerant cooled through the condenser to the evaporator, in which: the expansion device is coupled to the pump by a shaft, and the expansion device and the pump are housed within the same casing to constitute a pump-integrated type expansion device; and the pump includes a high-pressure chamber through which the refrigerant to be discharged to the evaporator flows, the high-pressure chamber being provided on the expansion device side, or a low-pressure chamber through which the refrigerant flowing from the condenser flows, the low-pressure chamber being provided on the expansion device side.
    • 排气热再生系统包括:用于冷却发动机冷却水的蒸发器; 膨胀装置,用于膨胀通过蒸发器加热的制冷剂,以产生驱动力; 用于冷却通过膨胀装置的制冷剂冷凝制冷剂的冷凝器; 以及用于将通过冷凝器冷却的制冷剂压送到蒸发器的泵,其中:膨胀装置通过轴联接到泵,并且膨胀装置和泵容纳在同一壳体内以构成泵 - 集成型膨胀装置; 该泵包括高压室,排出到蒸发器的制冷剂通过该高压室流动,高压室设置在膨胀装置侧,或者冷凝器从冷凝器流过的低压室, 低压室设置在膨胀装置侧。