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CFD modelling of pressure and shear rate in torsionally vibrating structures using ANSYS CFX and COMSOL Multiphysics

机译:CFD模型使用ANSYS CFX和COMSOL Multiphysics的扭转振动结构压力和剪切速率建模

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摘要

This paper discusses numerical methodologies to simulate micro vibrations on a nontrivial torsionally oscillating structure. The torsional structure is the tip of a viscosity-density sensor using micro vibrations to measure the fluid properties. A 2D transient simulation of the fluid domain surrounding the tip of the sensor has been conducted in ANSYS CFX and COMSOL Multiphysics software. ANSYS CFX uses a frame of reference to induce the micro vibration whereas a moving wall approach is used in COMSOL Multiphysics for the full Navier-Stokes equation as well as their linearized form. The shear rate and pressure amplitude have been compared between the different numerical approaches. The obtained results show good agreement for both pressure and shear rate amplitudes in all models.
机译:本文讨论了在非扭转扭转结构上模拟微振动的数值方法。 扭转结构是使用微振动来测量流体性质的粘度密度传感器的尖端。 在ANSYS CFX和COMSOL多体软件中进行了围绕传感器尖端的流体域的2D瞬态仿真。 ANSYS CFX使用参考框架来诱导微振动,而移动的墙壁方法用于全Navier-Stokes方程的COMSOL多发性以及它们的线性化形式。 在不同的数值方法之间比较了剪切速率和压力幅度。 所获得的结果表明所有模型中的压力和剪切速率幅度良好。

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