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    • 4. 发明申请
    • Refrigerant cycle device
    • 制冷循环装置
    • US20080098757A1
    • 2008-05-01
    • US11977479
    • 2007-10-25
    • Hirotsugu TakeuchiMakoto IkegamiHaruyuki Nishijima
    • Hirotsugu TakeuchiMakoto IkegamiHaruyuki Nishijima
    • F25B41/06F25B15/00F25B49/02F25B39/02
    • F25B41/00B60H2001/3298F25B5/02F25B40/00F25B2341/0011F25B2700/21175
    • In a refrigerant cycle device having an ejector, a branch portion for branching a flow of refrigerant flowing out of the ejector into at least a first refrigerant stream and a second refrigerant stream is located. A first evaporator for evaporating the refrigerant of the first refrigerant stream is located to allow the refrigerant to flow to a suction side of the compressor, and a second evaporator for evaporating the refrigerant of the second refrigerant stream is located to allow the refrigerant to flow to an upstream side of a refrigerant suction port of the ejector. In addition, the branch portion is located to maintain a dynamic pressure of the refrigerant flowing out of the ejector, and the second evaporator is connected to the branch portion in a range where the dynamic pressure can be applied to an inside of the second evaporator.
    • 在具有喷射器的制冷剂循环装置中,设置有用于将从喷射器流出的制冷剂流分流成至少第一制冷剂流和第二制冷剂流的分支部。 定位用于蒸发第一制冷剂流的制冷剂的第一蒸发器以允许制冷剂流到压缩机的吸入侧,并且用于蒸发第二制冷剂流的制冷剂的第二蒸发器被定位成允许制冷剂流到 喷射器的制冷剂吸入口的上游侧。 此外,分支部分被定位成保持流出喷射器的制冷剂的动态压力,并且第二蒸发器在可以将动态压力施加到第二蒸发器的内部的范围内连接到分支部分。
    • 7. 发明授权
    • Refrigerant cycle device
    • 制冷循环装置
    • US07823401B2
    • 2010-11-02
    • US11977479
    • 2007-10-25
    • Hirotsugu TakeuchiMakoto IkegamiHaruyuki Nishijima
    • Hirotsugu TakeuchiMakoto IkegamiHaruyuki Nishijima
    • F25B49/00
    • F25B41/00B60H2001/3298F25B5/02F25B40/00F25B2341/0011F25B2700/21175
    • In a refrigerant cycle device having an ejector, a branch portion for branching a flow of refrigerant flowing out of the ejector into at least a first refrigerant stream and a second refrigerant stream is located. A first evaporator for evaporating the refrigerant of the first refrigerant stream is located to allow the refrigerant to flow to a suction side of the compressor, and a second evaporator for evaporating the refrigerant of the second refrigerant stream is located to allow the refrigerant to flow to an upstream side of a refrigerant suction port of the ejector. In addition, the branch portion is located to maintain a dynamic pressure of the refrigerant flowing out of the ejector, and the second evaporator is connected to the branch portion in a range where the dynamic pressure can be applied to an inside of the second evaporator.
    • 在具有喷射器的制冷剂循环装置中,设置有用于将从喷射器流出的制冷剂流分流成至少第一制冷剂流和第二制冷剂流的分支部。 定位用于蒸发第一制冷剂流的制冷剂的第一蒸发器以允许制冷剂流到压缩机的吸入侧,并且用于蒸发第二制冷剂流的制冷剂的第二蒸发器被定位成允许制冷剂流到 喷射器的制冷剂吸入口的上游侧。 此外,分支部分被定位成保持流出喷射器的制冷剂的动态压力,并且第二蒸发器在可以将动态压力施加到第二蒸发器的内部的范围内连接到分支部分。
    • 8. 发明授权
    • Ejector refrigerant cycle device
    • 喷射制冷循环装置
    • US07690218B2
    • 2010-04-06
    • US11653474
    • 2007-01-12
    • Makoto IkegamiHirotsugu TakeuchiEtsuhisa YamadaHaruyuki NishijimaHideya Matsui
    • Makoto IkegamiHirotsugu TakeuchiEtsuhisa YamadaHaruyuki NishijimaHideya Matsui
    • F25B1/06
    • F25B41/00F25B5/00F25B40/00F25B40/02F25B2341/0011F25B2600/2507
    • An ejector refrigerant cycle device includes a radiator for radiating heat of high-temperature and high-pressure refrigerant discharged from a compressor, a branch portion for branching a flow of refrigerant on a downstream side of the radiator into a first stream and a second stream, an ejector that includes a nozzle portion for decompressing and expending refrigerant of the first stream from the branch portion, a decompression portion for decompressing and expanding refrigerant of the second stream from the branch portion, and an evaporator for evaporating refrigerant on a downstream side of the decompression portion. The evaporator has a refrigerant outlet coupled to the refrigerant suction port of the ejector. Furthermore, a refrigerant radiating portion is provided for radiating heat of refrigerant while the decompression portion decompresses and expands refrigerant. For example, the refrigerant radiating portion is provided in an inner heat exchanger.
    • 喷射器制冷剂循环装置包括用于散发从压缩机排出的高温高压制冷剂的散热器的散热器,将散热器的下游侧的制冷剂流分支为第一流和第二流的分支部, 喷射器,其包括用于从分支部分减压和消耗第一流的制冷剂的喷嘴部分,用于从分支部分减压和膨胀第二流的制冷剂的减压部分和用于在第二流的下游侧蒸发制冷剂的蒸发器 减压部分。 蒸发器具有联接到喷射器的制冷剂吸入口的制冷剂出口。 而且,在减压部减压膨胀制冷剂的同时,设置制冷剂的散热部,用于散热制冷剂的热量。 例如,制冷剂散热部设置在内部热交换器中。
    • 9. 发明授权
    • Reaction apparatus for organic and/or other substances employing supercritical fluid or subcritical fluid
    • 用于使用超临界流体或亚临界流体的有机和/或其他物质的反应装置
    • US07547539B2
    • 2009-06-16
    • US10469869
    • 2002-03-06
    • Makoto IkegamiKen Kawabe
    • Makoto IkegamiKen Kawabe
    • C12M1/00B09B3/00
    • C10J3/00B01J3/006B01J3/008B01J2219/00006B01J2219/00247C10J3/78C10J2300/092C10J2300/0946C10J2300/0979Y02P20/145Y02P20/544
    • Disclosed is a reaction apparatus for organic and/or other substance(s) employing supercritical fluid(s) and/or subcritical fluid(s) permitting injection of organic substance(s) and/or other reactant substance(s) in homogeneous state(s) to reactor(s) without occurrence of clogging at location(s) of such injection, and also permitting actuation to occur in industrial fashion and at high energy efficiency. Reactor(s) (12) of this reaction apparatus comprise cylinder(s) (12a) and piston(s) (12b) provided at such cylinder(s) (12a). Actuation in periodic fashion is permitted by operating piston(s) (12b) to compress fluid vapor(s) and obtain supercritical fluid(s) and/or subcritical fluid(s); operating piston(s) (12b) in reverse direction(s) following conclusion of chemical reaction(s) of reactant substance(s), lowering temperature(s) and pressure(s) and stopping reaction(s); and removing, from cylinder(s) (12a), product(s) obtained while at the same time delivering new charge(s) of fluid vapor(s) to cylinder(s) (12a).
    • 公开了一种用于使用超临界流体和/或亚临界流体的有机和/或其它物质的反应装置,所述超临界流体和/或亚临界流体允许注入均匀状态的有机物质和/或其它反应物质( s)到反应器,而不会在这种注入的位置发生堵塞,并且还允许以工业方式和高能量效率进行致动。 该反应装置的反应器(12)包括设置在该气缸(12a)处的气缸(12a)和活塞(12b)。 通过操作活塞(12b)来压缩流体蒸气并获得超临界流体和/或亚临界流体,允许周期性的致动; 在反应物质的化学反应结束之后反向运行活塞(12b),降低温度和压力并停止反应; 以及从汽缸(12a)中取出所产生的产品,同时向气缸(12a)输送新的流体蒸气(一个或多个)。