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    • 71. 发明申请
    • COOLING SYSTEM AND METHOD FOR CONTROLLING COOLING SYSTEM
    • 冷却系统及其控制方法
    • US20130091881A1
    • 2013-04-18
    • US13654460
    • 2012-10-18
    • Hitachi Plant Technologies, Ltd.
    • Junichi ITOYasuhiro KASHIRAJIMAYasuhiko INADOMITomohiro YOSHIDA
    • F25B49/00F25B23/00
    • H05K7/20827H05K7/20245H05K7/20836
    • A cooling system includes an evaporator for evaporating a refrigerant to cool an object to be cooled; a refrigerant-supply-flow-rate regulator for regulating a flow rate of the refrigerant to be supplied to the evaporator; a condenser for condensing the refrigerant by cooling the refrigerant by use of a chilled fluid; and a chilled-fluid-flow-rate regulator for regulating a flow rate of the chilled fluid to be supplied to the condenser, the refrigerant condensed by the condenser being to be pressurized to be supplied to the evaporator. The chilled-fluid-flow-rate regulator regulates a flow rate of the fluid, to be supplied to the evaporator, for a temperature of the refrigerant condensed to come to a predetermined target refrigerant-liquid temperature, and the refrigerant-supply-flow-rate regulator regulates a flow rate of the refrigerant, to be supplied to the evaporator, for a temperature of the object cooled to come to a predetermined target cooling temperature.
    • 冷却系统包括用于蒸发制冷剂以冷却要冷却的物体的蒸发器; 制冷剂供给流量调节器,用于调节供给到蒸发器的制冷剂的流量; 冷凝器,用于通过使用冷冻流体冷却制冷剂来冷凝制冷剂; 以及用于调节要供应到冷凝器的冷却流体的流量的冷冻流体流量调节器,由冷凝器冷凝的制冷剂被加压以供应到蒸发器。 冷冻流体流量调节器调节要供应到蒸发器的流体的流量,以使被冷凝的制冷剂的温度达到预定的目标制冷剂 - 液体温度,并且制冷剂供给流量调节器 速率调节器调节要供应到蒸发器的制冷剂的流量,以使被冷却的物体的温度达到预定的目标冷却温度。
    • 74. 发明申请
    • COOLING SYSTEM AND COOLING METHOD
    • 冷却系统和冷却方法
    • US20130091880A1
    • 2013-04-18
    • US13654451
    • 2012-10-18
    • HITACHI PLANT TECHNOLOGIES, LTD.
    • Yasuhiko INADOMIYasuhiro KASHIRAJIMAJunichi ITOTomohiro YOSHIDA
    • F25D17/02
    • F25B23/006F25B1/00F25B25/005F25B49/005F25B2500/03F25B2600/05F25B2700/04
    • Cooling system and cooling method that enable preventing breakdown of coolant pump is provided. The cooling system, includes: evaporator for evaporating coolant by heat exchange with indoor air as an object of air conditioning; condenser for cooling and condensing coolant evaporated by evaporator; coolant liquid storage section that communicates with condenser and stores coolant liquid flowing in from condenser; coolant pump that communicates with coolant liquid storage section and pressure-transmits coolant liquid toward evaporator, the coolant liquid flowing in from coolant liquid storage section; coolant liquid detection units for individually detecting whether or not liquid level of coolant liquid stored in coolant liquid storage section is higher than or equal to respective plural heights including first height and second height higher than first height in coolant liquid storage section; and control unit that changes motor rotation speed of coolant pump, corresponding to detection result input from coolant liquid detection units.
    • 提供了能够防止冷却剂泵故障的冷却系统和冷却方法。 冷却系统包括:作为空调的对象,通过与室内空气进行热交换来蒸发冷却剂的蒸发器; 用于冷却和冷凝由冷凝器蒸发的冷凝器的冷凝器; 冷凝液储存部,与冷凝器连通并储存从冷凝器流入的冷却液; 冷却剂泵,其与冷却剂液体存储部分连通并且将冷却剂液体朝向蒸发器压力传递,所述冷却剂液体从冷却剂液体存储部分流入; 冷却剂液体检测单元,用于单独检测存储在冷却剂液体存储部分中的冷却剂液体的液位是否高于或等于冷却剂液体存储部分中包括高于第一高度的第一高度和第二高度的相应多个高度; 以及控制单元,其改变冷却剂泵的电动机转速,对应于从冷却剂液体检测单元输入的检测结果。
    • 76. 发明授权
    • Microbial detection apparatus, microbial detection method, and sample container used therein
    • 微生物检测装置,微生物检测方法和其中使用的样品容器
    • US08679828B2
    • 2014-03-25
    • US14023640
    • 2013-09-11
    • Hitachi Plant Technologies, Ltd.
    • Masahiro OkanojoHideyuki NodaNoe Miyashita
    • C12M1/00C12M3/00C12M1/34
    • C12Q1/04C12Q1/24C12Q1/66
    • The sample container has a two-layer membrane filter comprising a first layer as an upper layer serving as a hydrophilic membrane filter and a hydrophobic membrane filter as an underlying second layer capable of filtering an aqueous solution without the use of a wetting agent and by means of a formed negative pressure. Using this sample container, a large amount of an aqueous sample solution is filtered by means of a negative pressure formed by a suction portion to capture microbes in the aqueous sample solution by the hydrophilic membrane filter. Then, the negative pressure is restored to normal pressure, and a microbial dissolution solution is then added to the membrane filter to retain the microbial dissolution solution for a given time on the hydrophobic membrane filter. Then, the microbial dissolution solution is dispensed to a reaction container containing a luminescent reagent, and luminescence is detected to detect the microbes.
    • 样品容器具有两层膜过滤器,其包括作为亲水膜过滤器的上层的第一层和作为第二层的疏水膜过滤器,其能够不使用润湿剂并且通过手段过滤水溶液 形成负压。 使用该样品容器,通过由抽吸部分形成的负压过滤大量的水样品溶液,以通过亲水膜过滤器捕获含水样品溶液中的微生物。 然后,将负压恢复到正常压力,然后将微生物溶解溶液加入到膜过滤器中,以将微生物溶解溶液在给定时间内保留在疏水膜过滤器上。 然后,将微生物溶解溶液分配到含有发光试剂的反应容器中,检测发光以检测微生物。