Prediction of Transversal Flow in Non-Circular Tubes With a Higher Order Constitutive Equation

M. Letelier, D. Siginer, P. Merino, J. Stockle
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Abstract

In this paper we explore the potential of an explicit constitutive equation in predicting secondary flows in straight, non–circular tubes in steady and fully developed flow. We show that secondary flows appear at first order in k a constitutive parameter in the new constitutive structure when solving the field through an asymptotic approach. The structure of the transversal stream–function predicted by the new structure is the same as that obtained at third order in Weissenberg number with the Modified Phan–Thien–Tanner constitutive equation aside from constitutive constants. We present predictions of the velocity field and a comparison with the corresponding predictions of the MPTT model. These results are obtained using the analytical algorithm based on the shape factor concept coupled with asymptotic expansions developed and used previously by the authors to solve related problems.
用高阶本构方程预测非圆管内横向流动
在本文中,我们探讨了显式本构方程在预测稳定和充分发展的直非圆管内二次流中的潜力。用渐近方法求解该场时,我们证明了在新的本构结构中,二次流出现在本构参数k的一阶。除了本构常数外,新结构预测的横向流函数的结构与用修正的Phan-Thien-Tanner本构方程在Weissenberg数下得到的三阶流函数的结构相同。我们给出了速度场的预测,并与MPTT模型的相应预测进行了比较。这些结果是利用基于形状因子概念和渐近展开式的解析算法得到的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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