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    • 2. 发明申请
    • DECOMPRESSION DEVICE AND REFRIGERATION CYCLE DEVICE
    • 分解装置和制冷循环装置
    • US20140020424A1
    • 2014-01-23
    • US14007183
    • 2012-03-21
    • Tatsuhiro SuzukiEtsuhisa YamadaHaruyuki Nishijima
    • Tatsuhiro SuzukiEtsuhisa YamadaHaruyuki Nishijima
    • F25B41/00
    • F25B41/00B60H2001/3298F25B41/06F25B41/062F25B2341/0012
    • A body part of a decompression device has a swirl space for swirling a refrigerant that flows from a refrigerant inlet, and a refrigerant outlet that is positioned on an extension line of a swirl center line of the refrigerant and functions as a throttle. Further, a passage cross-sectional area of the refrigerant inlet is configured to be smaller than a twelve-fold value of a passage cross-sectional size of the refrigerant outlet, such that a swirl speed of the refrigerant in the swirl space is increased so as to enable a decompression boiling of the refrigerant around the swirl center line. In such manner, a gas-liquid mixture phase refrigerant securely flows into the refrigerant outlet, and it restricts a fluctuation of a flow amount of the refrigerant flowing toward a downstream side without complicating a cycle structure.
    • 减压装置的主体部分具有用于旋转从制冷剂入口流动的制冷剂的旋转空间和位于制冷剂的涡流中心线的延长线上并用作节流阀的制冷剂出口。 此外,制冷剂入口的通道横截面面积被构造成小于制冷剂出口的通道横截面尺寸的十二倍的值,使得涡流空间中的制冷剂的旋转速度增加 以使得围绕涡流中心线的制冷剂的减压沸腾。 以这种方式,气液混合相制冷剂可靠地流入制冷剂出口,并且限制制冷剂流向下游侧的流量的波动而不会使循环结构复杂化。
    • 4. 发明授权
    • Refrigerant cycle device with ejector
    • 带喷射器的制冷循环装置
    • US07367202B2
    • 2008-05-06
    • US11503892
    • 2006-08-14
    • Etsuhisa YamadaHirotsugu TakeuchiHaruyuki Nishijima
    • Etsuhisa YamadaHirotsugu TakeuchiHaruyuki Nishijima
    • F25B1/06
    • F25B41/00B60H2001/3298F25B40/02F25B2341/0011F25B2341/0012F25B2400/16F25B2500/18
    • A refrigerant cycle device includes a compressor for compressing refrigerant, a condenser for cooling and condensing high-pressure refrigerant discharged from the compressor, a vapor-liquid separator located at a refrigerant outlet side of the condenser for separating refrigerant from the condenser into vapor refrigerant and liquid refrigerant, a supercooling device for supercooling the liquid refrigerant from the vapor-liquid separator, an ejector having a nozzle part for decompressing refrigerant downstream from a refrigerant outlet side of the condenser and a refrigerant suction port for drawing refrigerant by a high-velocity flow of refrigerant jetted from the nozzle part, a throttle member which decompresses the liquid refrigerant supercooled by the supercooling device, an evaporator located at a downstream side of the throttle member and is connected to the refrigerant suction port of the ejector. Accordingly, cooling capacity of the evaporator can be improved without lowering a density of refrigerant drawn into the compressor.
    • 制冷剂循环装置包括用于压缩制冷剂的压缩机,用于冷却和冷凝从压缩机排出的高压制冷剂的冷凝器,位于冷凝器的制冷剂出口侧的气液分离器,用于将制冷剂从冷凝器分离成蒸气制冷剂, 液体制冷剂,用于使来自气液分离器的液体制冷剂过冷的过冷却装置,具有用于使从冷凝器的制冷剂出口侧下游的制冷剂减压的喷嘴部的喷射器和用于以高速流动吸引制冷剂的制冷剂吸入口 从喷嘴部喷射的制冷剂,对由过冷却装置过冷却的液体制冷剂进行减压的节流部件,位于节流部件下游侧的蒸发器,并与喷射器的制冷剂吸入口连接。 因此,可以提高蒸发器的冷却能力,而不会降低吸入压缩机的制冷剂的密度。
    • 6. 发明申请
    • Ejector refrigerant cycle device
    • 喷射制冷循环装置
    • US20070163293A1
    • 2007-07-19
    • US11653474
    • 2007-01-12
    • Makoto IkegamiHirotsugu TakeuchiEtsuhisa YamadaHaruyuki NishijimaHideya Matsui
    • Makoto IkegamiHirotsugu TakeuchiEtsuhisa YamadaHaruyuki NishijimaHideya Matsui
    • F25B19/02F25B1/06
    • 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。
    • 8. 发明授权
    • Ejector cycle
    • 喷射器循环
    • US06877339B2
    • 2005-04-12
    • US10868635
    • 2004-06-15
    • Haruyuki NishijimaHirotsugu TakeuchiMakoto Ikegami
    • Haruyuki NishijimaHirotsugu TakeuchiMakoto Ikegami
    • F25B1/00F25B9/00F25B41/00
    • F25B41/00B60H2001/3298F25B9/008F25B2309/061F25B2341/0011F25B2341/0012F25B2341/0013F25B2341/0683F25B2600/2513F25B2700/21175
    • In an ejector cycle with an ejector including a nozzle for decompressing refrigerant, a variable throttle device is disposed upstream from the nozzle to decompress and expand high-pressure refrigerant flowing from a condenser. For example, the variable throttle device decompresses the high-pressure refrigerant in a gas-liquid two-phase state at an upstream position from the nozzle of the ejector. In addition, the variable throttle device includes a back pressure chamber having an inner pressure that changes by sensing a refrigerant temperature at a refrigerant outlet side of an evaporator, and a pressure introducing means for introducing a refrigerant pressure of a refrigerant outlet side of the evaporator to a side opposite to the back pressure chamber with respect to a diaphragm. Therefore, a pressure difference between the back pressure chamber and the side opposite to the back pressure chamber can be made smaller.
    • 在具有用于减压制冷剂的喷嘴的喷射器的喷射器循环中,可变节流装置设置在喷嘴的上游,以对从冷凝器流出的高压制冷剂进行减压和膨胀。 例如,可变节流装置在喷射器的喷嘴的上游位置对气液两相状态的高压制冷剂进行减压。 此外,可变节流装置包括:背压室,其具有通过感测蒸发器的制冷剂出口侧的制冷剂温度而变化的内部压力;以及压力引入装置,用于引入蒸发器的制冷剂出口侧的制冷剂压力 相对于隔膜与背压室相对的一侧。 因此,能够使背压室与背压室相反的一侧的压差变小。