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Flow Analysis and Linearization of Rectangular Butterfly Valve Flow Control Device for Liquid Cooling

机译:矩形蝶阀液冷流量控制装置的流量分析与线性化

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One of the key areas in which electronic cooling research has been focusing on, is addressing the issue of non-uniform at package level. This challenge has incited the use of numerous temperature sensing mechanisms for dynamic cooling of electronic components. What dynamic liquid cooling effectively does is, use feedback from sensors as inputs for the pumps, supplying more amounts of fluid to parts of the electronics that is warmer while supplying minimal fluid to the parts of the electronics that are relatively cooler. A novel approach to address uneven heating in a liquid cooled system is the use of a temperature sensing flow control device that can control flow rate based on temperature. The necessity of numerous temperature and pressure sensors, a suitable control system and the maintenance and reliability issues that they present, can be significantly minimized with the use of a self sensing and controlling flow control device. This paper looks at the flow analysis of a self-regulating flow control device (FCD) designed for electronic module for data center application. An axially rotating butterfly valve is used to regulate the flow rate of FCD. Linearization of the flow with respect to damper angle is studied by modifying the dimensional ratios of the rectangular cross section of the FCD. Pressure drop, and flow rate characterization is done for the FCD.
机译:电子冷却研究一直关注的关键领域之一是解决封装级别不均匀的问题。这一挑战引发了许多温度感测机制用于电子元件的动态冷却的使用。动态液体冷却的有效作用是,使用来自传感器的反馈作为泵的输入,向较热的电子设备提供更多的流体,而向较冷的电子设备提供最少的流体。解决液体冷却系统中不均匀加热的新颖方法是使用温度感应流量控制设备,该设备可根据温度控制流量。通过使用自感应和控制流量控制设备,可以大大减少许多温度和压力传感器的必要性,合适的控制系统以及它们所存在的维护和可靠性问题。本文着眼于针对数据中心应用的电子模块设计的自调节流量控制设备(FCD)的流量分析。轴向旋转的蝶阀用于调节FCD的流量。通过修改FCD矩形横截面的尺寸比,研究了流量相对于阻尼角的线性化。对FCD进行了压降和流量表征。

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