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    • 1. 发明授权
    • Cabinet cooling
    • 柜体冷却
    • US07061763B2
    • 2006-06-13
    • US10502385
    • 2002-01-29
    • Vadim Tsoi
    • Vadim Tsoi
    • H05K7/20
    • H05K7/20381F25B1/06F25B23/006F25B2700/2106F25B2700/2116F25B2700/2117G05D23/1931
    • A novel electronics cooling method and system is disclosed. A very flexible and efficient operation of an electronics cooling system (10) is achieved by controlling circulation of a cooling medium in a closed system (40) containing an evaporator (13), a condenser (14), an ejector (11) and control valves (15–18). Specifically, the system is continuously allowed to operate in the most appropriate mode by controlling the valves (15–18) of the system (10) based on detected heat load and/or detected heat transfer conditions. By automatically adapting the mode of operation of the system based on the actual prevailing conditions, a unique flexibility is obtained with regard to the cooling mode in which the system will be operated. This means that the cooling capacity will be constantly optimized and that the investment cost as well as the cost for operating the system will be reduced compared to known systems having equal maximum cooling capacity.
    • 公开了一种新颖的电子冷却方法和系统。 通过控制包含蒸发器(13),冷凝器(14),喷射器(11)和控制器(11)的封闭系统(40)中的冷却介质的循环来实现电子冷却系统(10)的非常灵活和有效的操作 阀门(15-18)。 具体地,通过基于检测到的热负荷和/或检测到的热传递条件控制系统(10)的阀(15-18),系统被连续允许以最合适的模式运行。 通过根据实际的现行条件自动适应系统的运行模式,可以在系统运行的冷却模式下获得独特的灵活性。 这意味着与具有相同最大冷却能力的已知系统相比,冷却能力将不断优化,并且投资成本以及操作系统的成本将会降低。
    • 4. 发明申请
    • Cabinet cooling
    • 柜体冷却
    • US20050083654A1
    • 2005-04-21
    • US10502385
    • 2002-01-29
    • Vadim Tsoi
    • Vadim Tsoi
    • F25B1/06F25B23/00G05D19/00G05D23/19H05K7/20
    • H05K7/20381F25B1/06F25B23/006F25B2700/2106F25B2700/2116F25B2700/2117G05D23/1931
    • A novel electronics cooling method and system is disclosed. A very flexible and efficient operation of an electronics cooling system (10) is achieved by controlling circulation of a cooling medium in a closed system (40) containing an evaporator (13), a condenser (14), an ejector (11) and control valves (15-18). Specifically, the system is continuously allowed to operate in the most appropriate mode by controlling the valves (15-18) of the system (10) based on detected heat load and/or detected heat transfer conditions. By automatically adapting the mode of operation of the system based on the actual prevailing conditions, a unique flexibility is obtained with regard to the cooling mode in which the system will be operated. This means that the cooling capacity will be constantly optimized and that the investment cost as well as the cost for operating the system will be reduced compared to known systems having equal maximum cooling capacity.
    • 公开了一种新颖的电子冷却方法和系统。 通过控制包含蒸发器(13),冷凝器(14),喷射器(11)和控制器(11)的封闭系统(40)中的冷却介质的循环来实现电子冷却系统(10)的非常灵活和有效的操作 阀门(15-18)。 具体地,通过基于检测到的热负荷和/或检测到的热传递条件控制系统(10)的阀(15-18),系统被连续允许以最适当的模式运行。 通过根据实际的现行条件自动适应系统的运行模式,可以在系统运行的冷却模式下获得独特的灵活性。 这意味着与具有相同最大冷却能力的已知系统相比,冷却能力将不断优化,并且投资成本以及操作系统的成本将会降低。