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    • 1. 发明授权
    • Cooling fluid provisioning with location aware sensors
    • 冷却液配置与位置感知传感器
    • US07057506B2
    • 2006-06-06
    • US10758229
    • 2004-01-16
    • Cullen E. BashSalil PradhanChandrakant D. Patel
    • Cullen E. BashSalil PradhanChandrakant D. Patel
    • G08B25/00
    • H05K7/20836F24F11/30F24F2120/10F24F2120/12H05K7/20745Y10T137/1939
    • A method of controlling cooling fluid provisioning in a room housing a plurality of components. The room includes at least one plenum having one or more cooling system components configured to vary a characteristic of at least one of cooling fluid supply to and removal from the room. In the method, location aware sensors are positioned at various locations in the room and their locations are determined. One or more conditions are detected with the location aware sensors and it is determined whether to manipulate at least one of the one or more cooling system components to modify a characteristic of cooling fluid contained in the plenum based upon the detected one or more conditions. In addition, at least one of the one or more cooling system components is manipulated in response to a determination to that the at least of the one or more cooling system components is to be modified.
    • 一种在容纳多个部件的房间内控制冷却液供应的方法。 该房间包括具有一个或多个冷却系统组件的至少一个增压室,该冷却系统组件被配置成改变至室内的冷却流体供应和从房间移除中的至少一个的特性。 在该方法中,位置感知传感器位于房间中的各个位置,并确定其位置。 利用位置感知传感器检测一个或多个条件,并且基于检测到的一个或多个条件确定是否操纵一个或多个冷却系统部件中的至少一个以修改容纳在集气室中的冷却流体的特性。 另外,响应于要修改至少一个或多个冷却系统组件的确定来操纵一个或多个冷却系统组件中的至少一个。
    • 9. 发明授权
    • Method for thermally managing a room
    • 热管理房间的方法
    • US07218996B1
    • 2007-05-15
    • US11474765
    • 2006-06-26
    • Abdlmonem H. BeitelmalCullen E. BashChandrakant D. Patel
    • Abdlmonem H. BeitelmalCullen E. BashChandrakant D. Patel
    • G06F19/00
    • H05K7/20745H05K7/20836
    • In a method for thermally managing a room with at least one air moving device having a temperature actuator and an airflow rate actuator, a temperature of airflow at a first location in the room is received and compared with a first predetermined temperature range and a second predetermined temperature range. In the method, one of the temperature actuator and the airflow rate actuator is varied when the received temperature of the airflow is outside of the first predetermined temperature range and the other of the temperature actuator and the airflow rate actuator is varied when the received temperature of the airflow is within the first predetermined temperature range and outside of the second predetermined temperature range.
    • 在具有至少一个具有温度致动器和气流速率致动器的空气移动装置的热管理房间的方法中,接收房间第一位置处的气流温度,并与第一预定温度范围和第二预定温度范围进行比较 温度范围。 在该方法中,当气流的接收温度超出第一预定温度范围时,温度致动器和气流速率致动器中的一个变化,并且温度致动器和气流速率致动器中的另一个在接收到的温度 气流在第一预定温度范围内并且在第二预定温度范围之外。
    • 10. 发明授权
    • Multi-state spray cooling system
    • 多状态喷雾冷却系统
    • US07134289B2
    • 2006-11-14
    • US11005283
    • 2004-12-04
    • Chandrakant D. PatelCullen E. BashRatnesh Sharma
    • Chandrakant D. PatelCullen E. BashRatnesh Sharma
    • F28C1/00
    • H01L23/4735F25B23/006F25B2339/021F28D5/00F28D15/02H01L2224/73204
    • A cooling system including a thermosyphon subsystem and a spray cooling subsystem, each being configured to evaporatively cool a component, and a controller configured to selectively operate the spray cooling subsystem based on the cooling requirements of the component. The controller controls a valve limiting the operation of the thermosyphon when the spray cooling system is active. The component is configured to run in a plurality of performance states including a low power state and a high power state. The spray cooling system operates when the component is in the high power state. The controller can order the component to operate in a lower power state if the cooling systems are inadequate to the cooling needs. The cooling needs are determined with a component temperature sensor, a vapor temperature sensor, a vapor pressure sensor, or a power usage sensor.
    • 一种包括热虹吸子系统和喷雾冷却子系统的冷却系统,每个都被配置为蒸发冷却部件,以及控制器,其被配置为基于部件的冷却要求选择性地操作喷射冷却子系统。 当喷雾冷却系统处于活动状态时,控制器控制阀门限制热虹吸管的运行。 该组件被配置为在包括低功率状态和高功率状态的多个性能状态下运行。 当组件处于高功率状态时,喷雾冷却系统运行。 如果冷却系统不足以满足冷却需要,则控制器可以命令组件在较低功率状态下运行。 冷却需要由部件温度传感器,蒸汽温度传感器,蒸汽压力传感器或电力使用传感器确定。