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Implementation of a height function method to alleviate spurious currents in CFD modelling of annular flow in microchannels

机译:在微通道环形流的CFD建模中实现减轻杂散电流的高度函数方法的实现

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摘要

The use of the continuum surface force (CSF) model in surface tension modelling using the volume of fluid (VOF) method is known to introduce unphysical velocities, called parasitic or spurious currents arising mostly from poor calculation of interface curvature. In this paper, a modified 2-D axisymmetric height function (HF) method is proposed and implemented in parallelised computations. The default CSF method in the commercial software ANSYS Fluent 15.0 is replaced using User-Defined Functions (UDFs) of ANSYS Fluent and the improvements obtained are evaluated in test cases with stationary and moving interfaces. The application of the HF method to annular flow modelling has shown massive improvements in interface modelling and potential for research on annular flow hydrodynamics and heat transfer.
机译:已知在使用流体体积(VOF)方法进行表面张力建模的过程中使用连续表面力(CSF)模型会引入非物理速度,称为寄生或杂散电流,这主要是由于对界面曲率的不良计算而引起的。本文提出了一种改进的二维轴对称高度函数(HF)方法,并在并行计算中实现。商业软件ANSYS Fluent 15.0中的默认CSF方法已被ANSYS Fluent的用户定义功能(UDF)取代,并在固定和移动界面的测试案例中评估了所获得的改进。 HF方法在环流建模中的应用已显示出界面建模方面的巨大改进,并在研究环流流体动力学和传热方面具有潜力。

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