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    • 12. 发明授权
    • Method of making high-oxygenated water and the apparatus of making the same
    • 制造高含氧水的方法及其制造方法
    • US09138695B2
    • 2015-09-22
    • US13673614
    • 2012-11-09
    • Chien-An Chen
    • Chien-An Chen
    • A23L2/54B01F3/04
    • B01F3/04808B01F3/04482B01F2003/04879
    • An apparatus for making high-oxygenated water includes an oxygen supply, an exchange tank, and a pressure tank. The oxygen supply respectively supplies pure oxygen to the exchange tank and the pressure tank. The pure oxygen is dissolved in water in the exchange tank in a normal pressure environment to obtain oxygenated water. A slow-down unit is provided in the exchange tank to extend the time of the pure oxygen staying in the exchange to raise the dissolved oxygen of the oxygenated water. Next, the oxygenated water is drained to the pressure tank, and then the pure oxygen is dissolved in the oxygenated water in the exchange tank in a high pressure environment to obtain high-oxygenated water.
    • 用于制造高含氧水的设备包括氧气供应,交换罐和压力罐。 氧气供应分别为交换罐和压力罐供应纯氧。 将纯氧在常压环境下溶解在交换罐中的水中,得到含氧水。 在交换罐中提供减速单元以延长纯氧在交换中停留的时间,以提高氧化水的溶解氧。 接下来,将氧化水排出到压力罐中,然后在高压环境下将纯氧溶解在交换罐中的含氧水中,得到高氧化水。
    • 13. 发明授权
    • Cooling module
    • 冷却模块
    • US08644021B2
    • 2014-02-04
    • US13327894
    • 2011-12-16
    • Chien-An ChenYi-Ling Chen
    • Chien-An ChenYi-Ling Chen
    • H05K7/20
    • G06F1/20F28D15/0275G06F2200/201H05K7/20809
    • A cooling module applicable in an electronic device is provided. The electronic device includes a plurality of first heat sources and a plurality of second heat sources. The cooling module includes a cooling loop and a plurality of heat pipes. The cooling loop includes a plurality of cooling units. The cooling units are connected in series through a plurality of connection tube and each cooling unit is thermally coupled to one of the first heat source. The heat pipes are thermally coupled to the second heat sources and the cooling units. When the cooling unit is in failure, the cooling units can be directly removed and replaced. Also, the second heat sources of the electronic device are capable of exchanging heat with the cooling unit through the heat pipe.
    • 提供了一种适用于电子设备的冷却模块。 电子设备包括多个第一热源和多个第二热源。 冷却模块包括冷却回路和多个热管。 冷却回路包括多个冷却单元。 冷却单元通过多个连接管串联连接,并且每个冷却单元热耦合到第一热源中的一个。 热管与第二热源和冷却单元热耦合。 当冷却装置发生故障时,冷却装置可以直接拆下并更换。 此外,电子设备的第二热源能够通过热管与冷却单元进行热交换。
    • 14. 发明授权
    • Cooling circulation system of server
    • 服务器冷却循环系统
    • US08526182B2
    • 2013-09-03
    • US13158644
    • 2011-06-13
    • Chien-An ChenKai-Yang TungMao-Ching Lin
    • Chien-An ChenKai-Yang TungMao-Ching Lin
    • H05K7/20
    • H05K7/20736
    • A cooling circulation system of a server includes a cabinet assembly, a plurality of first fan modules, a plurality of second fan modules, and two air guide hoods. The first fan modules and the second fan modules are disposed on the cabinet assembly. The first fan modules blow a first airflow towards a first direction, and the second fan modules blow a second airflow towards a second direction. The air guide hoods are respectively installed on two ends of the cabinet assembly. The first airflow and the second airflow join each other through the air guide hoods, so as to form a cooling circulation loop inside the cabinet assembly.
    • 服务器的冷却循环系统包括机柜组件,多个第一风扇模块,多个第二风扇模块和两个空气引导罩。 第一风扇模块和第二风扇模块设置在机柜组件上。 第一风扇模块朝向第一方向吹动第一气流,并且第二风扇模块朝向第二方向吹动第二气流。 导气罩分别安装在机柜总成的两端。 第一气流和第二气流通过空气引导罩相互连接,以在柜组件内部形成冷却循环回路。
    • 16. 发明申请
    • LIQUID COOLING DEVICE
    • 液体冷却装置
    • US20120291997A1
    • 2012-11-22
    • US13431478
    • 2012-03-27
    • Chien-An ChenHsing-Yu Chiang
    • Chien-An ChenHsing-Yu Chiang
    • F28D15/00
    • H01L23/473H01L2924/0002H01L2924/00
    • A liquid cooling device includes a heat absorbing part, a first transmitting tube, a second transmitting tube, and a heat dissipation part, wherein the heat absorbing part has a heat block, a first expansion pipe, and a second expansion pipe. The heat block is connected to an external heat-generating component, and includes a plurality of flow channels to facilitate the flow of a coolant for absorbing the heat generated from the external heat-generating component. The first expansion pipe and the second expansion pipe are connected to the heat block respectively. The first transmitting tube and the second transmitting tube are connected to the heat dissipation part respectively to form a cooling cycle among the heat absorbing part, the first transmitting tube, the second transmitting tube, and the heat dissipation part for allowing the cooling fluid to circulate in the cycle.
    • 液体冷却装置包括吸热部,第一透射管,第二透射管和散热部,其中,所述吸热部具有热块,第一膨胀管和第二膨胀管。 热块连接到外部发热部件,并且包括多个流动通道,以便于冷却剂的流动以吸收由外部发热部件产生的热量。 第一膨胀管和第二膨胀管分别连接到热块。 第一透射管和第二透射管分别连接到散热部,以在吸热部,第一透射管,第二透射管和散热部之间形成冷却循环,以使冷却液循环 在循环中。
    • 17. 发明申请
    • SERVER RACK
    • 服务器机架
    • US20120113592A1
    • 2012-05-10
    • US13158561
    • 2011-06-13
    • Chien-An Chen
    • Chien-An Chen
    • H05K7/20
    • H05K7/1489H05K7/1488H05K7/20736
    • A server rack includes a cabinet, at least one fan, and at least one circuit board, in which the cabinet has a first side surface and a second side surface arranged along a first direction and opposite to each other. The fan is installed on the first side surface of the cabinet and blows an airflow in the first direction, the circuit board is installed in the cabinet along the second direction, and the second direction and the first direction are perpendicular to each other, so the airflow generated by the fan is blown to the circuit board, thereby performing heat dissipation.
    • 服务器机架包括机柜,至少一个风扇和至少一个电路板,其中机柜具有沿着第一方向布置并彼此相对的第一侧表面和第二侧表面。 风扇安装在机柜的第一侧面上,沿着第一方向吹动气流,电路板沿第二方向安装在机柜中,第二方向和第一方向彼此垂直,因此 由风扇产生的气流被吹送到电路板,从而进行散热。
    • 18. 发明申请
    • COOLING SYSTEM FOR SERVER AND COOLING METHOD FOR ELECTRONIC APPARATUS
    • 用于电子设备的服务器和冷却方法的冷却系统
    • US20120113584A1
    • 2012-05-10
    • US13158543
    • 2011-06-13
    • Chien-An Chen
    • Chien-An Chen
    • H05K7/20H01L23/467F25D31/00
    • H05K7/20781
    • A cooling system for a server includes at least one radiator and at least one cooling plate that are installed in a server cabinet, a cooling assembly, a storage tank, and a heat exchanger. The cooling assembly is connected to the radiator, and is carried with a first cooling fluid therein. The storage tank is connected to the cooling plate, and is carried with a second cooling fluid therein. The first cooling fluid enters the heat exchanger through the radiator, and the second cooling fluid enters the heat exchanger through the cooling plate. The first cooling fluid and the second cooling fluid perform heat exchange in the heat exchanger, so as to reduce the temperature of the second cooling fluid, thus reducing the required energy enabling the second cooling fluid to return to a set temperature.
    • 用于服务器的冷却系统包括至少一个散热器和安装在服务器机柜,冷却组件,储存箱和热交换器中的至少一个冷却板。 冷却组件连接到散热器,并在其中承载有第一冷却流体。 储罐与冷却板连接,并在其内装有第二冷却流体。 第一冷却流体通过散热器进入热交换器,第二冷却流体通过冷却板进入热交换器。 第一冷却流体和第二冷却流体在热交换器中进行热交换,从而降低第二冷却流体的温度,从而减少所需能量,使得第二冷却流体能够返回到设定温度。
    • 19. 发明申请
    • HEATING EXCHANGE CHAMBER FOR LIQUID STATE COOLING FLUID
    • 用于液体冷却液的加热交换室
    • US20120097368A1
    • 2012-04-26
    • US13030614
    • 2011-02-18
    • Chien-An ChenYi-Ling Chen
    • Chien-An ChenYi-Ling Chen
    • F28D15/00
    • H01L23/473F28D15/0266F28F3/12F28F13/08H01L2924/0002H01L2924/00
    • A heat exchange chamber for liquid state cooling fluid is provided, which comprises a casing and a thermal dissipation device, the casing has a cavity and the thermal dissipation device is sited in the cavity. A cooling fluid flows through the cavity along a flow direction. The cross-sectional area of the cavity whose direction is perpendicular to the flow direction shows linear increase or non-linear increase gradually along the flow direction, and a part of the cooling fluid vaporizes after flowing through the thermal dissipation device. The chamber along the flow direction shows different pressures, and two phase fluid flows automatically due to the pressure difference. The heat exchange chamber for liquid state cooling fluid could lighten the loading of the pump which is for circulating the cooling fluid, and it also achieve the efficacy of saving energy and raising efficiency.
    • 提供了一种用于液态冷却流体的热交换室,其包括壳体和散热装置,壳体具有空腔,并且散热装置位于空腔中。 冷却流体沿着流动方向流过空腔。 方向垂直于流动方向的空腔的横截面积沿着流动方向呈逐渐增加或非线性增加,一部分冷却流体在流经散热装置后蒸发。 沿着流动方向的腔室显示不同的压力,并且两相流体由于压差而自动流动。 用于液态冷却流体的热交换室可以减轻用于循环冷却流体的泵的负载,并且还实现节能和提高效率的功效。