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Analysis of a Phase Change Energy Storage System for Pulsed Power Dissipation

机译:脉冲功率耗散相变储能系统的分析

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摘要

The melting of a phase change material in a container of rectangular cross-section with multiple discrete heat sources mounted on one side is investigated for electronics cooling by latent heat energy storage. This numerical study focuses on the thermal management issues that arise when electronic components experience sudden surges in power dissipation. The transient response of the energy storage system to short pulses in power dissipation is studied. Convective cooling using air-cooled heat sinks on the sides of the containment remote from the heat sources provides for heat rejection to ambient air. The analysis is performed under different pulse frequencies. Different aspect ratios for the containment volume as well as different locations for the heat sources are studied in order to identify an optimal arrangement. Conduction and convection in the phase change material as well as conduction through the containment walls are considered in the computations. The constitutive equations are implicitly solved using a fully transient method on fixed orthogonal co-located finite volumes. The system is characterized based on the rate of heat absorption as well as the maximum temperatures experienced at the heat sources. Improvements that can be made in the application of latent heat energy storage to electronics cooling applications are discussed based on the results from the present study.
机译:研究了相变材料在具有多个离散热源安装在一侧的矩形横截面容器中的熔化情况,以通过潜热能量存储进行电子冷却。这项数值研究的重点是当电子组件的功耗突然激增时出现的热管理问题。研究了能量存储系统对短脉冲功耗的瞬态响应。使用安全壳远离热源的侧面上的空气冷却散热器进行对流冷却,可将热量排到周围空气中。在不同的脉冲频率下进行分析。为了确定最佳布置,研究了容纳容积的不同纵横比以及热源的不同位置。计算中考虑了相变材料中的传导和对流以及通过安全壳壁的传导。本构方程在固定正交共处的有限体积上使用完全瞬态方法隐式求解。该系统的特征是基于吸热率以及热源处经历的最高温度。基于本研究的结果,讨论了在将潜热能量存储应用到电子制冷应用中可以进行的改进。

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    Krishnan, S; Garimella, S V;

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  • 年度 2004
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