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    • 1. 发明申请
    • REFRIGERATION CYCLE APPARATUS
    • 制冷循环装置
    • US20100313586A1
    • 2010-12-16
    • US12866410
    • 2009-02-13
    • Yuichi YakumaruKatsuji TaniguchiMasaya HonmaSubaru Matsumoto
    • Yuichi YakumaruKatsuji TaniguchiMasaya HonmaSubaru Matsumoto
    • F25B49/02F25B1/10
    • F25B9/06F25B9/008F25B2309/061F25B2400/075F25B2600/0253F25B2600/17F25B2700/195F25B2700/21161F25B2700/21163Y02B30/741
    • A refrigeration cycle apparatus (100) includes: a first compressor (101); a second compressor (102) connected in parallel with the first compressor (101) in a refrigerant circuit (200); a radiator (103) for cooling a refrigerant compressed by the first and second compressors; an expander (104) coupled to a rotation shaft of the first compressor (101); an evaporator (105) for evaporating the refrigerant expanded by the expander (104); and a controller (115). The controller (115) includes an efficiency enhancing means for performing a first process including a step of changing a rotation speed of the first compressor (101), as a process for increasing a coefficient of performance (COP) of the refrigeration cycle apparatus (100), when a temperature of a heat carrier flowing into the radiator (103) is in a predetermined temperature range, and for performing a second process including a step of changing a rotation speed of the second compressor (102), as a process for increasing the coefficient of performance, when the temperature of the heat carrier flowing into the radiator (103) is not in the predetermined temperature range.
    • 制冷循环装置(100)包括:第一压缩机(101); 在制冷剂回路(200)中与第一压缩机(101)并联连接的第二压缩机(102)。 用于冷却由第一和第二压缩机压缩的制冷剂的散热器(103) 联接到第一压缩机(101)的旋转轴的膨胀器(104); 蒸发器(105),用于蒸发由膨胀机(104)膨胀的制冷剂; 和控制器(115)。 控制器(115)包括效率提高装置,用于执行包括改变第一压缩机(101)的转速的步骤的第一处理,作为用于提高制冷循环装置(100)的性能系数(COP)的处理 ),当流入散热器(103)的热载体的温度处于预定温度范围时,并且用于执行包括改变第二压缩机(102)的转速的步骤的第二处理,作为增加的过程 当流入散热器(103)的热载体的温度不在预定温度范围内时的性能系数。
    • 3. 发明授权
    • Refrigeration cycle apparatus
    • 制冷循环装置
    • US08590326B2
    • 2013-11-26
    • US12680780
    • 2008-10-08
    • Yuichi YakumaruKatsuji TaniguchiMasaya Honma
    • Yuichi YakumaruKatsuji TaniguchiMasaya Honma
    • F25D21/06F25D21/00F25B49/00F25B1/00
    • F25B47/022F25B9/06F25B2309/061F25B2400/075F25B2400/14F25B2600/0253Y02B30/741
    • A refrigeration cycle apparatus 100 includes a first compressor 101, a second compressor 102 provided in parallel with the first compressor 101, a radiator 103 for cooling a refrigerant compressed by the compressors 101 and 102, an expander 104 for recovering power while expanding the refrigerant cooled by the radiator 103, an evaporator 105 for evaporating the refrigerant expanded by the expander 104, a rotation shaft 123 connecting the first compressor 101 to the expander 104 so that the first compressor 101 uses the power recovered by the expander 104, a controller 112 for executing a control including a step of increasing a flow rate of the refrigerant gradually during a defrosting operation in which frost formed on the evaporator 105 is melted by allowing the refrigerant having a high temperature to flow through the evaporator 105.
    • 制冷循环装置100包括第一压缩机101,与第一压缩机101并联设置的第二压缩机102,用于冷却由压缩机101,102压缩的制冷剂的散热器103,膨胀机104, 通过散热器103,用于蒸发由膨胀机104膨胀的制冷剂的蒸发器105,将第一压缩机101连接到膨胀机104的旋转轴123,使得第一压缩机101使用由膨胀机104回收的动力,控制器112, 执行包括在通过允许具有高温的制冷剂流过蒸发器105而在蒸发器105上形成的霜熔化的除霜操作期间逐渐增加制冷剂的流量的步骤的控制。
    • 4. 发明申请
    • REFRIGERATION CYCLE APPARATUS
    • 制冷循环装置
    • US20100218528A1
    • 2010-09-02
    • US12680780
    • 2008-10-08
    • Yuichi YakumaruKatsuji TaniguchiMasaya Honma
    • Yuichi YakumaruKatsuji TaniguchiMasaya Honma
    • F25D21/00F25B1/10
    • F25B47/022F25B9/06F25B2309/061F25B2400/075F25B2400/14F25B2600/0253Y02B30/741
    • A refrigeration cycle apparatus 100 includes a first compressor 101, a second compressor 102 provided in parallel with the first compressor 101, a radiator 103 for cooling a refrigerant compressed by the compressors 101 and 102, an expander 104 for recovering power while expanding the refrigerant cooled by the radiator 103, an evaporator 105 for evaporating the refrigerant expanded by the expander 104, a rotation shaft 123 connecting the first compressor 101 to the expander 104 so that the first compressor 101 uses the power recovered by the expander 104, a controller 112 for executing a control including a step of increasing a flow rate of the refrigerant gradually during a defrosting operation in which frost formed on the evaporator 105 is melted by allowing the refrigerant having a high temperature to flow through the evaporator 105.
    • 制冷循环装置100包括第一压缩机101,与第一压缩机101并联设置的第二压缩机102,用于冷却由压缩机101,102压缩的制冷剂的散热器103,膨胀机104, 通过散热器103,用于蒸发由膨胀机104膨胀的制冷剂的蒸发器105,将第一压缩机101连接到膨胀机104的旋转轴123,使得第一压缩机101使用由膨胀机104回收的动力,控制器112, 执行包括在通过允许具有高温的制冷剂流过蒸发器105而在蒸发器105上形成的霜熔化的除霜操作期间逐渐增加制冷剂的流量的步骤的控制。
    • 7. 发明申请
    • GRID-CONNECTED POWER SUPPLY SYSTEM
    • 网状连接电源系统
    • US20120181864A1
    • 2012-07-19
    • US13498462
    • 2010-08-30
    • Masaya HonmaSusumu Kobayasi
    • Masaya HonmaSusumu Kobayasi
    • H02J9/00
    • H01M10/44H02J3/32H02J3/383H02J3/386Y02E10/563Y02E10/566Y02E10/763Y02E70/30Y10T307/344
    • A grid-connected power supply system includes a power generation apparatus configured to generate power by using natural energy and connected in parallel to a commercial power grid; a electricity storage device; and a control device configured. The control device predicts an amount of power to be generated on a subsequent day by the power generation apparatus and a power demand of the loads and charges the electricity storage device with power in a time zone in which an electricity rate of the commercial power grid is relatively low if a predicted value of the amount of power to be generated is lower than a predicted value of the power demand, or does not charge the electricity storage device with power during the time zone if the predicted value of the amount of power to be generated is not lower than the predicted value of the power demand.
    • 并网电源系统包括配置为通过使用天然能量并联并联到商用电网来发电的发电装置; 蓄电装置; 以及配置的控制装置。 控制装置预测发电装置在随后的一天产生的功率的量和负载的电力需求,并且在商业电网的电力的时间区域内的电力的蓄电装置中进行充电 如果要产生的功率的预测值低于电力需求的预测值,或者如果电力量的预测值是在时间段内的电力的充电,则不对蓄电装置充电 产生的电力不低于电力需求的预测值。