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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >A pseudo-spectral numerical scheme for the simulation of steady and oscillating wall-bounded flows
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A pseudo-spectral numerical scheme for the simulation of steady and oscillating wall-bounded flows

机译:拟谱数值格式,用于模拟稳定的和振荡的边界壁流

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摘要

The objective of the present work is to present and validate a pseudo-spectral numerical scheme based on a variational formulation for the solution of three-dimensional, time-dependent wall-bounded forced and natural convective flows. One of the novel aspects of this numerical scheme is the use of resealed Legendre-Lagrangian interpolants to represent the velocity and temperature in one direction. These interpolants were obtained by dividing the Legendre Lagrangian interpolants of same order by the square root of the corresponding weight used for Gauss-Lobatto quadrature. Results from two specific problems are presented as part of the validation process: Rayleigh-Bgnard convection and steady and unsteady channel flow driven by an external oscillating streamwise pressure gradient.
机译:本工作的目的是提出和验证一种基于变分公式的伪谱数值方案,用于求解三维,时间相关的有壁边界的强迫对流和自然对流。该数值方案的新颖方面之一是使用重新密封的勒让德-拉格朗日插值来表示一个方向上的速度和温度。这些插值是通过将相同阶的Legendre Lagrangian插值除以用于Gauss-Lobatto正交的相应权重的平方根而获得的。作为验证过程的一部分,提出了来自两个特定问题的结果:瑞利-巴格纳德对流以及由外部振荡的流向压力梯度驱动的稳定和不稳定通道流动。

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