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Thermal Wave Applications in Flow Fields With Steady Velocity Profile

机译:稳态速度场在流场中的热波应用

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This study explores the use of a thermal wave approach for flow field measurement applications, such as flow diagnostics near surfaces and in microfluidic systems. The basic mathematical characteristics of the governing equations of heat convection, with periodic heating boundary conditions in steady flow, are discussed and the validity of applying the complex combination method to this problem is illustrated. A scaling analysis of a two-dimensional thermal wave configuration with a linear velocity profile is performed to provide important insights into this type of heat transfer phenomena. A two-dimensional conjugate heat transfer model is developed and solved numerically with a finite difference method to demonstrate an example of imposing a thermal wave onto a flow field. The simulation results show that the temperature signal, especially the phase information, can be used for the measurement of flow properties near the surface, such as the wall shear stress.
机译:这项研究探索了将热波方法用于流场测量应用,例如表面附近和微流体系统中的流诊断。讨论了稳态对流中具有周期性加热边界条件的热对流控制方程的基本数学特征,并说明了将复杂组合方法应用于此问题的有效性。对具有线性速度分布的二维热波配置进行了定标分析,以提供对此类传热现象的重要见解。建立了二维共轭传热模型,并利用有限差分法对其进行了数值求解,以演示将热波施加到流场上的示例。仿真结果表明,温度信号,尤其是相位信息,可用于测量表面附近的流动特性,例如壁面剪应力。

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