首页> 外文会议>Australasian fluid mechanics conference;AFMC >NUMERICAL SIMULATION OF VISCOELASTIC FLOW DUE TO A ROTATING DISC ENCLOSED IN A CYLINDRICAL CASING
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NUMERICAL SIMULATION OF VISCOELASTIC FLOW DUE TO A ROTATING DISC ENCLOSED IN A CYLINDRICAL CASING

机译:圆柱壳内旋转盘引起的粘弹流动的数值模拟

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Numerical simulations by a finite-difference method have been made for viscoelastic flows due to a rotating disc enclosed in a cylindrical casing. The Giesekus model was used as a constitutive equation. We could simulate some typical secondary flow patterns for viscoelastic fluids; e.g., a secondary flow (C.T. Hill, 1972) of which the circulation direction at a low Reynolds number is reversed compared with that for a Newtonian fluid and a double-cell flow structure which Escudier et al. (1996) observed at a relatively high Reynolds number. The secondary flow patterns are characterized by the elasticity number (=Weissenberg number / Reynolds number) from low to high Reynolds numbers.
机译:通过将旋转圆盘封闭在圆柱形壳体中,对粘弹性流动进行了有限差分方法的数值模拟。 Giesekus模型用作本构方程。我们可以模拟粘弹性流体的一些典型的二次流动模式。例如,次级流(C.T. Hill,1972年)与Escudier等人的牛顿流体和双室流结构相比,在低雷诺数下的循环方向是相反的。 (1996年)在一个相对较高的雷诺数下观察到。次要流动模式的特征是从低雷诺数到高雷诺数的弹性数(=魏森伯格数/雷诺数)。

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