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Optimization design of a novel closed-loop spray cooling system

机译:一种新型闭环喷雾冷却系统的优化设计

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Due to the superiority of spray cooling system in removing high waste heat flux generated by the electronics, a novel spray cooling system combined with ejective condenser is proposed and its work procedure is introduced. Most previous relevant studies are only focus on the influences of parameters on the spray cooling performance. In the present paper, a multi-objective optimization function on the overall system is provided through the analysis of fluid flow and heat transfer characteristics, and the Particle Swarm Optimization (PSO) is applied to solve this problem. The optimized results of the total mass, the total pump power consumption and the heat surface temperature are obtained at different heat power. The optimal system structure parameters of the sprayer, the ejective condenser, the radiator are obtained. The work conditions of the sprayer mass flow and the heat surface temperature are also got under the performance of minimum power consumption, minimum system mass and the lowest heat source temperature at heat source power 500 W (heat flux 500 W/cm).
机译:由于喷雾冷却系统的优越性在去除由电子器件产生的高废热通量时,提出了一种新的喷射冷却系统与喷射冷凝器结合起来,并介绍了其工作过程。最先前的相关研究仅关注参数对喷雾冷却性能的影响。在本文中,通过分析流体流动和传热特性来提供整个系统的多目标优化功能,并应用粒子群优化(PSO)来解决这个问题。在不同的热功率下获得总质量,总泵功耗和热表面温度的优化结果。获得喷雾器,喷射冷凝器,散热器的最佳系统结构参数。喷雾器质量流量和热表面温度的工作条件也在最小功耗,最小系统质量和热源功率500W(热通量500W / cm)处的最低热源温度的性能下。

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