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Hot-spot cooling using microliter liquid drops

机译:使用微升液滴进行热点冷却

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摘要

In this paper, a new concept is developed for cooling integrated circuits (IC) in the electronic and computer industries. Microliter liquid drops are employed in combination with the electrowetting phenomenon to form a thermal conductance regulating interface (TCRI) between the heat-sink and the cooling target. An experimental setup was arranged in which a mercury drop could be attached to/detached from the surface of a hot-spot and, hence, influence its temperature. In addition, an in-house numerical code was developed to further investigate various parameters of the cooling system. The Navier-Stokes and energy equations were solved in a 2D/axisymmetric domain and the volume-of-fluid (VOF) technique was used to track the deformation of the free surface of the drops under the effect of the electrowetting phenomenon. Finally, as a sample case, a 4 x 4 array of mercury drops was considered to form a TCRI between a cooling target with non-uniform heat flux and a heat-sink. It was shown that the TCRI can be used to effectively suppress hot-spots on the surface of the cooling target. Various parameters of the cooling system were also examined. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在本文中,开发了一种用于冷却电子和计算机行业中的集成电路(IC)的新概念。微升液滴与电润湿现象结合使用,在散热器和冷却目标之间形成热导调节界面(TCRI)。安排了一个实验装置,其中汞滴可能附着到热点表面或从热点表面脱离,因此会影响其温度。此外,还开发了内部数字代码以进一步研究冷却系统的各种参数。在二维/轴对称域中求解了Navier-Stokes和能量方程,并使用了流体体积(VOF)技术来跟踪在电润湿现象的作用下液滴自由表面的变形。最后,作为示例,考虑使用4 x 4的汞滴阵列在热通量不均匀的冷却目标和散热器之间形成TCRI。结果表明,TCRI可以有效地抑制冷却目标表面上的热点。还检查了冷却系统的各种参数。 (C)2014 Elsevier Ltd.保留所有权利。

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