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A Concept of Pumpless Convective Micro/Micro Channel Cooling Technology

机译:无泵对流微/微通道冷却技术的概念

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摘要

The sustained drive for faster and smaller micro electronic devices has led to a considerable increase in power density. The ability to effectively pump and enhance heat transfer in micro/mini channels is of immense technological importance. The micro channel heat exchanger has great advantages for high heat flux applications due to their high surface-to-volume ratio. Unfortunately, the small dimension of the micro channel leads to a large pressure drop and low Reynolds flow, which is usually associated with the low heat transfer coefficient. Therefore, forced convection micro heat exchangers require advanced micro pumping and heat transfer enhancement technologies. Using oscillatory flow to enhance the convective heat transfer coefficients in micro/mini channels is one of many new concepts and methodologies that have been proposed. In this paper, we propose a novel and simple streaming-based micro/mini channel cooling technology. The phenomenon of the flow streaming are found in zero-mean velocity oscillating flows in a wide range of channel geometries. Although there is no mass flow (zero-mean velocity) passing through the channel, the discrepancy in velocity profiles between the forward flow and backward flow causes fluid particles near the walls to drift toward one end while fluid particles near the centerline drift to the other end. We hypothesize that the unique characteristics of flow streaming could be used to achieve the convective cooling. The advantages of the streaming based convective cooling technique includes enhanced heat transfer coefficient, pumpless, and cost-effective. Preliminary results of scaling analysis and computer simulations are presented to demonstrate the potential of the stream based technology for micro cooling applications.
机译:对更快,更小的微电子设备的持续驱动已导致功率密度的显着提高。在微型/微型通道中有效泵送和增强热传递的能力具有巨大的技术重要性。由于微通道热交换器具有高的表面积与体积之比,因此对于高热通量应用具有巨大优势。不幸的是,微通道的小尺寸导致大的压降和低的雷诺流量,这通常与低的热传递系数有关。因此,强制对流微型热交换器需要先进的微型泵送和传热增强技术。使用振荡流来增强微/微型通道中的对流传热系数是已提出的许多新概念和方法之一。在本文中,我们提出了一种新颖且简单的基于流的微型/微型通道冷却技术。在广泛的通道几何形状中,零均速度振荡流中发现了流动现象。尽管没有质量流(平均速度为零)通过通道,但在前向流和后向流之间的速度分布差异会导致壁附近的流体粒子向一端漂移,而中心线附近的流体粒子向另一端漂移结束。我们假设流的独特特性可用于实现对流冷却。基于流的对流冷却技术的优点包括提高的传热系数,无泵和经济高效。给出了结垢分析和计算机仿真的初步结果,以证明基于流的技术在微冷却应用中的潜力。

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