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Cooling Enhancements in Thin Films Supported by Flexible Complex Seals in the Presence of Ultrafine Suspensions

机译:存在超细悬浮液的情况下柔性复合密封件支撑薄膜的冷却增强

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摘要

Flow and heat transfer inside thin films supported by flexible soft seals having voids of a stagnant fluid possessing a large coefficient of volumetric thermal expansion β_T are studied in the presence of suspended ultrafine particles. The study is conducted under periodically varying thermal load conditions. The governing continuity, momentum and energy equations are non-dimensionalized and reduced to simpler forms. The deformation of the seal is related to the internal pressure and lower plate's temperature based on the theory of linear elasticity and a linearized model for thermal expansion. It is found that enhancements in the cooling are achieved by an increase in the volumetric thermal expansion coefficient, thermal load, thermal dispersion effects, softness of the supporting seals and the thermal capacitance of the coolant fluid. Further, thermal dispersion effects are found to increase the stability of the thin film. The noise in the thermal load is found to affect the amplitude of the thin film thickness, Nusselt number and the lower plate temperature however it has a negligible effect on their mean values.
机译:在悬浮的超细颗粒的存在下,研究了由柔性软密封支撑的薄膜内部的流动和传热,该柔性软密封具有具有大的体积热膨胀系数β_T的停滞流体的空隙。该研究是在周期性变化的热负荷条件下进行的。控制连续性,动量和能量方程是无量纲的,并简化为更简单的形式。根据线性弹性理论和热膨胀线性模型,密封件的变形与内部压力和下部板的温度有关。发现通过增加体积热膨胀系数,热负荷,热分散效应,支撑密封的柔软性和冷却剂流体的热容量来实现冷却的增强。此外,发现热分散效应增加了薄膜的稳定性。发现热负荷中的噪声会影响薄膜厚度的幅值,努塞尔数和下板温度,但对它们的平均值的影响可忽略不计。

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