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SOME CONSEQUENCES OF MATERIAL FRAME INDIFFERENCE ON ENGINEERING FLOW CALCULATIONS

机译:工程流计算中材料框架差异的一些后果

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摘要

The principle of material frame indifference (MFI) is a fundamental and controversial principle of continuum mechanics which has been invoked to derive recent nonlinear algebraic models for stresses of viscoelastic liquids (Mompean, Thompson, and Souza Mendes [2003]) and for Newtonian turbulent fluids (Rumsey, Gatski, and Morrison [2000]). The purpose of the present study is to identify regions of a flow field where MFI should be considered. Such regions are identified by computing the angular velocity of the principal directions of the rate-of-deformation tensor in order to obtain a Euclidean objective vor-ticity tensor. The method is applied to the planar flow through an abrupt 4:1 contraction. The main results are: (ⅰ) MFI should be taken into account in regions characterized by the transition between two different viscometric kinematics and significant velocities (ⅱ) MFI can be safely ignored in regions of pure viscometric behavior as well as in recirculation regions.
机译:物质框架无关性原理(MFI)是连续介质力学的基本原理和有争议的原理,已被引用以得出关于粘弹性液体(Mompean,Thompson和Souza Mendes [2003])和牛顿湍流流体的非线性非线性代数模型。 (Rumsey,Gatski和Morrison [2000])。本研究的目的是确定应考虑MFI的流场区域。通过计算变形率张量的主方向​​的角速度来识别这样的区域,以获得欧几里得的客观涡度张量。该方法通过突然的4:1收缩应用于平面流。主要结果是:(ⅰ)在以两种不同粘度运动学之间的过渡和显着速度为特征的区域,应考虑MFI(ⅱ)在纯粘度行为区域以及再循环区域中,可以安全地忽略MFI。

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