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Analysis of oscillatory flow disturbances and thermal characteristics inside fluidic cells due to fluid leakage and wall slip conditions

机译:分析由于流体泄漏和壁滑引起的流体单元内部的振荡流扰动和热特性

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The effects of both fluid leakage and wall slip conditions are studied analytically and numerically oil the fluctuation rate ill the flow inside non-isothermal disturbed thin films supported by soft seals within a fluidic cell. Flow disturbances due to internal pressure pulsations and external squeezing are considered in this work. The main controlling parameters are found to be the dimensionless leakage parameter, softness of the seal, squeezing number, dimensionless slip parameter, the thermal squeezing parameter and the power law index. Accordingly, their influences on the fluctuation rate and heat transfer characteristics inside disturbed thin films are determined and discussed. It is found that an increase in the dimensionless leakage parameter, softness of the seal-upper plate assembly and the wall slip parameter result in more cooling and an increase in the fluctuation level in the flow. However, an increase in the squeezing number and the fluid power index decrease flow fluctuations. Finally, a suggested design to alleviate a number of problems in fluidic cells is presented. (C) 2003 Elsevier Ltd. All rights reserved.
机译:对流体泄漏和壁面滑移条件的影响进行了分析研究,并在数值上研究了由流体室中的软密封支撑的非等温干扰薄膜内部流动引起的波动率。这项工作考虑了由于内部压力脉动和外部挤压而引起的流动扰动。发现主要的控制参数是无量纲的泄漏参数,密封的柔软性,挤压次数,无量纲的滑动参数,热挤压参数和幂律指数。因此,确定并讨论了它们对受扰薄膜内部的波动率和传热特性的影响。已经发现,无因次泄漏参数的增加,密封上板组件的柔软性和壁滑动参数的增加导致更多的冷却并增加了流量的波动水平。然而,挤压次数和流体动力指数的增加减小了流量波动。最后,提出了减轻流体池中许多问题的建议设计。 (C)2003 Elsevier Ltd.保留所有权利。

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