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Modelling and analysis of a liquid-cooled system for thermal management application of an electronic equipment

机译:电子设备热管理应用液冷系统的建模与分析

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The removal of heat from electronic components, increasingly miniaturized with high power dissipation per unit volume, is a significant industrial problem to be resolved, to avoid failures due to excessive temperatures and besides to maintain performance and operating conditions. This article describes the development of a one-dimensional thermodynamic model to simulate the cooling of electronic chips belonging to inverters for stationary PV solar arrays; these are typically located in very different environments, including deserts or very hot areas, so the operating life of theirs inverter units are strongly affected by changes in external environmental conditions. Results have shown that the model allows, with very low calculation times, to quantify the effects of cooling performance and thermal load of electronics both in design and off-design conditions: the working temperature of the components was monitored as the effectiveness of the main heat exchanger vary with the exposure to the external environment over time, in terms of fouling and as the ambient air temperature changes; in this case a simple control system was simulated to limit the maximum temperature of the chips and the air flow rate of the fans. The thermal performances of two types of glycol-based refrigerant fluids have been compared.
机译:从电子元件中除去热量,每单位体积的高功耗越来越小型化,是要解决的重要产业问题,以避免由于过高的温度和除了保持性能和操作条件而导致的故障。本文介绍了一维热力学模型的开发,以模拟用于静态光伏太阳阵列的逆变器的电子芯片的冷却;这些通常位于非常不同的环境中,包括沙漠或非常热的区域,因此其逆变器单元的使用寿命受外部环境条件的变化强烈影响。结果表明,该模型允许具有非常低的计算时间,以量化设计和非设计条件的冷却性能和热负荷的影响:将组分的工作温度被监测为主热的有效性交易者随着时间的推移而导致外部环境发生变化,并且随着环境空气温度的变化;在这种情况下,模拟简单的控制系统以限制芯片的最大温度和风扇的空气流速。已经比较了两种类型的二醇类制冷剂流体的热性能。

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