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    • 5. 发明授权
    • Operation management method of information processing system
    • 信息处理系统的运行管理方法
    • US08145927B2
    • 2012-03-27
    • US13003687
    • 2009-03-09
    • Jun OkitsuTakeshi KatoTatsuya SaitoTadakatsu Nakajima
    • Jun OkitsuTakeshi KatoTatsuya SaitoTadakatsu Nakajima
    • G06F1/26G05D23/19
    • G06F1/206G06F1/3203G06F9/5027G06F9/5094Y02D10/16Y02D10/22
    • In a computer room including information processing devices and air conditioners, power saving of the computer room by means of optimization of workload allocation to the information processing devices is achieved in a short time. There, a coefficient of air conditioner performance with respect to the information processing device (device-specific COP) is calculated for each air conditioner. Further, a device-associated power consumption expression representing a total of device power and air conditioner power is created for each information processing device. Also, power consumption of the entire computer room is calculated from the device-associated power consumption expression of the information processing devices. Also, workload allocation is determined by using power saving performance evaluation indexes based on the device-associated power consumption expression of the information processing devices. Further, output of the air conditioner is controlled based on a result of the air conditioner power calculation.
    • 在包括信息处理装置和空调的计算机室中,通过优化在信息处理装置中的工作量分配来实现计算机室的省电在短时间内。 在此,针对各空调器计算出相对于信息处理装置(装置专用COP)的空调机性能系数。 此外,为每个信息处理设备创建表示设备功率和空调功率的总和的与设备相关联的功耗表达式。 而且,根据信息处理设备的设备相关功耗表达式计算整个计算机房的功耗。 此外,通过使用基于信息处理装置的与设备相关联的功耗表达式的节电性能评估指标来确定工作负荷分配。 此外,基于空调机功率计算的结果来控制空调的输出。
    • 8. 发明申请
    • OPERATION MANAGEMENT METHOD OF INFORMATION PROCESSING SYSTEM
    • 信息处理系统的操作管理方法
    • US20110113273A1
    • 2011-05-12
    • US13003687
    • 2009-03-09
    • Jun OkitsuTakeshi KatoTatsuya SaitoTadakatsu Nakajima
    • Jun OkitsuTakeshi KatoTatsuya SaitoTadakatsu Nakajima
    • G06F1/32
    • G06F1/206G06F1/3203G06F9/5027G06F9/5094Y02D10/16Y02D10/22
    • In a computer room including information processing devices and air conditioners, power saving of the computer room by means of optimization of workload allocation to the information processing devices is achieved in a short time. There, a coefficient of air conditioner performance with respect to the information processing device (device-specific COP) is calculated for each air conditioner. Further, a device-associated power consumption expression representing a total of device power and air conditioner power is created for each information processing device. Also, power consumption of the entire computer room is calculated from the device-associated power consumption expression of the information processing devices. Also, workload allocation is determined by using power saving performance evaluation indexes based on the device-associated power consumption expression of the information processing devices. Further, output of the air conditioner is controlled based on a result of the air conditioner power calculation.
    • 在包括信息处理装置和空调的计算机室中,通过优化在信息处理装置中的工作量分配来实现计算机室的省电在短时间内。 在此,针对各空调器计算出相对于信息处理装置(装置专用COP)的空调机性能系数。 此外,为每个信息处理设备创建表示设备功率和空调功率的总和的与设备相关联的功耗表达式。 而且,根据信息处理设备的设备相关功耗表达式计算整个计算机房的功耗。 此外,通过使用基于信息处理装置的与设备相关联的功耗表达式的节电性能评估指标来确定工作负荷分配。 此外,基于空调机功率计算的结果来控制空调的输出。
    • 9. 发明授权
    • Electronic equipment cooling system
    • 电子设备冷却系统
    • US07913507B2
    • 2011-03-29
    • US12137659
    • 2008-06-12
    • Yoshihiro KondoTatsuya SaitoTakeshi KatoKenji Ogiro
    • Yoshihiro KondoTatsuya SaitoTakeshi KatoKenji Ogiro
    • F25D23/12
    • H01L23/427F28D15/0266F28D15/046F28F3/12F28F13/187H01L2924/0002H01L2924/00
    • An electronic equipment cooling system of the invention comprises: a heat receiver; a closed refrigerant circulation path (including: the heat receiver; a refrigerant condenser; a refrigerant pump; and a refrigerant tank); and a closed gas circulation path (including: the heat receiver; the refrigerant condenser; and a blower). The heat receiver includes: a heat receiver base contacting a heat generating component; a box; a gas flow space surrounded by the heat receiver base and box; a refrigerant inlet through which a liquid refrigerant dribbles down along an internal surface of the heat receiver base; a liquid refrigerant spreader used for spreading the liquid refrigerant thereacross and having a mesh portion with an opening for passing a vapor of the refrigerant into the gas flow space; a gas inlet through which a gas is fed from the blower; and a gas outlet for venting the gas containing the vapor of the refrigerant.
    • 本发明的电子设备冷却系统包括:热接收器; 封闭的制冷剂循环路径(包括:受热器;制冷剂冷凝器;制冷剂泵;和制冷剂罐); 和封闭的气体循环路径(包括:热接收器;制冷剂冷凝器;以及鼓风机)。 热接收器包括:接收发热部件的热接收器底座; 一个盒子; 由受热器底座和箱体包围的气流空间; 制冷剂入口,其中液体制冷剂沿着所述受热器基座的内表面向下运动; 用于在其间铺展液体制冷剂的液体制冷剂撒布机,并具有网孔部分,该开口用于使制冷剂的蒸汽通入气体流通空间; 气体从鼓风机供给气体的气体入口; 以及用于排出含有制冷剂的蒸气的气体的气体出口。