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Pushing the limits of vertical naturally-cooled heatsinks; Calculations and design methodology

机译:突破垂直自然冷却散热器的极限;计算和设计方法

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Heatsinks are essential parts of any thermal management system. High performance heatsinks are required for the cooling systems to be able to manage the ever-increasing power density in electronics and power electronics. The focus of this paper is on the design of high performance naturally-cooled heatsinks with vertical rectangular interrupted fins. A systematic analytical approach is taken, to solve the governing equations of the air flow and heat transfer. Closed-form correlations are presented for temperature and velocity distribution, and an easy-to-use method is introduced to design such heatsinks. Numerical simulations are used to provide better understanding of the physics of flow and heat transfer mechanism. An extensive experimental study is also conducted to verify the results from analytical solution and numerical simulation. Results show that the new-designed heatsinks are capable of dissipating heat up to 5 times more than currently available naturally-cooled heatsinks, with up to 30% less weight. The new heatsinks can increase the capacity of passive thermal management systems significantly.
机译:散热器是任何热管理系统的重要组成部分。冷却系统需要高性能散热器,以能够管理电子设备和电力电子设备中不断增长的功率密度。本文的重点是设计具有垂直矩形间断散热片的高性能自然冷却散热器。采取了系统的分析方法,以解决空气流动和传热的控制方程。给出了温度和速度分布的闭式相关性,并介绍了一种易于使用的方法来设计此类散热器。使用数值模拟可以更好地理解流动和传热机理。还进行了广泛的实验研究,以验证分析解决方案和数值模拟的结果。结果表明,新设计的散热器的散热能力是当前自然冷却散热器的5倍,重量减轻了30%。新的散热器可以显着提高被动式热管理系统的容量。

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