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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Optimizing the design for a two-phase cooling loop heat pipe Part A: Numerical model, validation and application to a case study
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Optimizing the design for a two-phase cooling loop heat pipe Part A: Numerical model, validation and application to a case study

机译:两相冷却回路热管的优化设计A部分:数值模型,验证和在案例研究中的应用

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High-power light-emitting diodes can dissipate several times more heat power than conventional lighting devices, while keeping the junction temperature below a security value, in order to assure reliability and low light decay. No fans are usually permitted, so the heat dissipation solution should adopt new technological advances that are required in the form of lighter, shape-embedded heat-sink devices. The present study addresses the implementation of a special heat-dissipation technology, known as a loop heat pipe, consisting of an evaporator, a condenser, a compensation chamber, and vapor and liquid lines for cooling particular types of devices, such as light-emitting diodes, through the phase-change cooling method. In this paper a new algorithm to simulate this loop heat pipe is presented. This mathematical model is based on steady-state energy balance equations for each main component. Finally, a validation procedure through a fully monitored experimental test is performed to show the effects of different key parameters on the heat load such as radius and length of the vapor line, wick thickness and condensing temperature. It produces an effective optimization of the original design, representing an innovative tool for design assessment, to determine the influence of these key performance parameters for each particular application. Finally, a case study is presented for the optimization of a loop heat pipe design, applied to the cooling of an 80 W street lamp. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大功率发光二极管的散热功率是传统照明设备的几倍,同时将结温保持在安全值以下,以确保可靠性和低光衰。通常不允许使用风扇,因此,散热解决方案应采用新技术,以更轻便,形状嵌入的散热装置形式出现。本研究解决了一种特殊的散热技术的实施,该技术称为回路热管,该技术由蒸发器,冷凝器,补偿室以及用于冷却特定类型的设备(例如发光设备)的蒸汽和液体管线组成二极管,通过相变冷却方法。本文提出了一种模拟该回路热管的新算法。该数学模型基于每个主要组件的稳态能量平衡方程。最后,通过全面监控的实验测试进行验证程序,以显示不同关键参数对热负荷的影响,例如蒸汽管线的半径和长度,油芯厚度和冷凝温度。它可以有效地优化原始设计,代表设计评估的创新工具,以确定这些关键性能参数对每个特定应用的影响。最后,提出了一个案例研究,以优化应用于80 W路灯冷却的环路热管设计。 (C)2016 Elsevier Ltd.保留所有权利。

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