Study the Performance of a Dynamic Wall Heat Exchanger Using Computational Fluid Dynamics

M. Uddin, Raisa Akhtaruzzaman, T. A. Shanto, M. Hasan
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引用次数: 1

Abstract

Thermal systems in small devices like cooling electronic chips require efficient technologies with small diameter channels. These systems have laminar flow and disrupted boundary layers, leading to high pressure drop values. To ensure sufficient flow and limit coolant temperature, a possible solution is to dynamically deform one channel wall to mimic pumping and disrupt boundary layers, creating a peristaltic effect, called a dynamic heat exchanger. The aim of the present numerical study is to explore the effects of different operating parameters of the dynamic wall heat exchanger on the heat transfer performance. In our numerical study we varied different operating parameters (amplitude of vibration A, frequency f, minimum gap between upper and lower wall H and pressure difference P) and observed how it affects the performance of the dynamic wall heat exchanger in terms of mass flow rate of coolant (water) and heat transfer coefficient. A crucial finding is that the distribution of isotherms and streamlines is adequate, and heat transfer is significant when the relative amplitude is high. Additionally, this type of wall can generate substantial heat transfer even with minimal externally applied pressure.
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用计算流体力学研究动态壁面换热器的性能
像冷却电子芯片这样的小型设备的热系统需要具有小直径通道的高效技术。这些系统具有层流和破坏的边界层,导致高压降值。为了确保足够的流量和限制冷却剂的温度,一个可能的解决方案是动态变形一个通道壁来模拟泵送和破坏边界层,产生蠕动效应,称为动态热交换器。本文的数值研究目的是探讨不同操作参数对动态壁面换热器换热性能的影响。在我们的数值研究中,我们改变了不同的操作参数(振动振幅A,频率f,上下壁之间的最小间隙H和压差P),并观察了它如何影响动态壁面换热器的性能,包括冷却剂(水)的质量流量和传热系数。一个重要的发现是,等温线和流线的分布是适当的,当相对振幅高时,传热是显著的。此外,这种类型的墙即使在最小的外部施加压力下也能产生大量的传热。
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