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    • 1. 发明申请
    • Heat transfer apparatus and methods
    • 传热装置及方法
    • US20080047694A1
    • 2008-02-28
    • US11511054
    • 2006-08-27
    • Andrew D. DelanoChristian L. Belady
    • Andrew D. DelanoChristian L. Belady
    • F28D15/00B29C47/88H05K7/20
    • F28F3/12F28D15/00F28F3/022H01L23/473H01L2924/0002H01L2924/00
    • Liquid heat exchangers and methods for removing heat from a central processing unit. An exemplary heat exchanger comprises a body having an open cavity whose periphery is sealable to the central processing unit from which heat is to be removed, a cooling liquid inlet port coupled through the body to the open cavity, and a liquid outlet port coupled through the body to the open cavity. Cooling liquid is pumped through the cavity when the body is sealed to the central processing unit, thereby contacting the central processing unit and removing heat from the central processing unit. A plurality of heat conducting elements may be provided that extend from an inner surface of the body into the open cavity, at least some of which have a length that is operative to contact the central processing unit. The heat conducting elements allow convective cooling of the central processing unit.
    • 液体热交换器和从中央处理单元去除热量的方法。 示例性的热交换器包括具有开放空腔的主体,其外围可以密封到中央处理单元,中心处理单元将从其中除去热量,通过主体连接到开放空腔的冷却液入口和通过 身体到开放的腔。 当主体被密封到中央处理单元时,冷却液体被泵送通过空腔,从而接触中央处理单元并从中央处理单元去除热量。 可以提供多个导热元件,其从主体的内表面延伸到开放空腔中,其中至少一些导热元件的长度可操作以接触中央处理单元。 导热元件允许中央处理单元的对流冷却。
    • 4. 发明授权
    • Deicing louvers for datacenter applications
    • 数据中心应用程序的除冰百叶窗
    • US08978747B2
    • 2015-03-17
    • US12982884
    • 2010-12-31
    • Eric C PetersonChristian L. Belady
    • Eric C PetersonChristian L. Belady
    • H05K7/00F24F12/00F24F13/00H05K7/20F24F13/14F24F11/00
    • H05K7/20745F24F11/41F24F13/14H05K7/20836Y10S165/909
    • A datacenter may use heat collected from a heat exchanger at the exhaust portion of a cooling system to heat inlet louvers for an atmospheric intake. The louvers may have fluid passages through which heated fluid may pass and cause the louvers to heat up. The heated louvers may operate during periods of snow, rain, high humidity, or other conditions to eliminate condensation, snow and ice buildup, or other problems. In some embodiments, a liquid may be passed through the louvers, while in other embodiments, heated air or other gas may be passed through conductive paths in the louvers. In a heated air system, holes in the louvers may allow the heated air to enter the incoming airstream to regulate the incoming temperature to the datacenter.
    • 数据中心可以使用从冷却系统的排气部分的热交换器收集的热量来加热大气摄入的入口百叶窗。 百叶窗可以具有流体通道,加热的流体可以通过流体通道,并使百叶窗加热。 加热的百叶窗可以在雪,雨,高湿度或其他条件期间操作,以消除冷凝,积雪积雪或其他问题。 在一些实施例中,液体可以通过百叶窗,而在其他实施例中,加热的空气或其它气体可以通过百叶窗中的导电路径。 在加热的空气系统中,百叶窗中的孔可以允许加热的空气进入进入的空气流以调节到数据中心的进入温度。
    • 10. 发明授权
    • System and method for controlling power to resources based on historical utilization data
    • 基于历史使用数据控制资源的系统和方法
    • US08041967B2
    • 2011-10-18
    • US11058554
    • 2005-02-15
    • Christian L. BeladyTom L. Vaden
    • Christian L. BeladyTom L. Vaden
    • G06F1/26G06F1/32
    • G06F1/3203G06F1/325G06F1/3275G06F1/3287Y02D10/14Y02D10/171
    • A method comprises collecting utilization data for a resource, and predicting by a power management system, based on the collected utilization data, future utilization of the resource. The method further comprises controlling, by the power management system, power to the resource, based at least in part on the predicted future utilization of the resource. In one embodiment, the utilization data is collected for a plurality of resources that are operable to perform tasks, and the method further comprises determining, by the power management system, how many of the resources are needed to provide a desired capacity for servicing the predicted future utilization of the resources for performing the tasks. The method further comprises configuring, by the power management system, ones of the resources exceeding the determined number of resources needed to provide the desired capacity in a reduced power-consumption mode.
    • 一种方法包括收集资源的利用数据,以及由电力管理系统基于收集的利用数据预测资源的未来利用。 该方法还包括至少部分地基于资源的预测的未来利用来控制电力管理系统对资源的功率。 在一个实施例中,针对可操作以执行任务的多个资源收集利用数据,并且该方法还包括由电力管理系统确定需要多少资源以提供用于维护预测的所需能力 未来利用资源执行任务。 该方法还包括通过电力管理系统配置超过确定的资源数量中的一个资源,以在降低的功耗模式中提供期望的容量所需的资源。