首页> 外文会议>ASME international technical conference and exhibition on packaging and integration of electronic and photonic microsystems >EXPERIMENTAL CHARACTERIZATION OF THE TRANSIENT RESPONSE OF AIR/WATER CROSSFLOW HEAT EXCHANGERS FOR DATA CENTER COOLING SYSTEMS
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EXPERIMENTAL CHARACTERIZATION OF THE TRANSIENT RESPONSE OF AIR/WATER CROSSFLOW HEAT EXCHANGERS FOR DATA CENTER COOLING SYSTEMS

机译:数据中心冷却系统中空气/水交叉流动换热器瞬态响应的实验表征

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Data Center hybrid air/liquid cooling systems such as rear door heat exchangers, overhead and in row cooling systems enable localized, on-demand cooling, or "smart cooling." At the heart of all hybrid cooling systems is an air to liquid cross flow heat exchanger that regulates the amount of cooling delivered by the system by modulating the liquid or air flows and/or temperatures. Due the central role that the heat exchanger plays in the system response, understanding the transient response of the heat exchanger is crucial for the precise control of hybrid cooling system. This paper reports on the transient experimental characterization of heat exchangers used in data centers applications. An experimental rig designed to introduce controlled transient perturbations in temperature and flow on the inlet air and liquid flow streams of a 12 in. × 12 in. heat exchanger test core is discussed. The conditioned air is delivered to the test core by a suction wind tunnel with upstream air heaters and a frequency variable axial blower to allow the control of air flow rate and bulk temperature. The conditioned water is delivered to the test core by a water delivery system consisting of two separate water circuits, one delivering cold water, and the other hot water. By switching from one circuit to the other or mixing water from both circuits, the rig is capable of generating step, ramp and frequency perturbations in water temperature at constant flow or step, ramp or frequency perturbations in water flow at constant temperature or combinations of temperature and water flow perturbations. Experimental data are presented for a 12×12 heat exchanger core with a single liquid pass under different transient perturbations.
机译:数据中心混合气/液冷却系统,例如后门热交换器,顶置式和行式冷却系统,可实现局部,按需冷却或“智能冷却”。所有混合冷却系统的核心是空气到液体的错流热交换器,该热交换器通过调节液体或空气的流量和/或温度来调节系统提供的冷却量。由于热交换器在系统响应中起着核心作用,因此了解热交换器的瞬态响应对于精确控制混合冷却系统至关重要。本文报告了数据中心应用中使用的热交换器的瞬态实验特性。讨论了设计用于在12英寸×12英寸热交换器测试芯的进气和液体流上引入温度和流量受控瞬态扰动的实验装置。经调节的空气通过带有上游空气加热器和变频轴向鼓风机的吸风管道输送到测试芯,以控制空气流量和整体温度。调节后的水通过一个水输送系统输送到测试核心,该系统由两个独立的水回路组成,一个回路输送冷水,另一个则输送热水。通过从一个回路切换到另一回路或将两个回路中的水混合,钻机能够在恒定流量或恒定温度或温度组合的水流中产生水温的阶跃,斜率和频率扰动,或者在温度恒定的情况下产生水流的阶跃,斜率或频率扰动。和水流扰动。给出了在不同瞬态扰动下具有单个液体通过的12×12换热器芯的实验数据。

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