通量限制器对平流扩散问题数值解误差的比较

Q4 Engineering
Adek Tasri
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引用次数: 0

摘要

流量限制器在数值模拟中被广泛用于防止具有强特性梯度的流动中的杂散振荡。然而,在没有强特性梯度的流动(如平流-扩散流)上应用通量限制器可能会产生误差。本文讨论了平流-扩散流求解中几种通量限制器引起的误差。还提出了一种将一维限制器应用于二维非结构网格的方法。通过将测试用例的有限体积解与参考解进行比较来测量误差。研究表明,有限流器的二阶有限体积的计算误差大于无限流器二阶有限容积的计算误差。然而,有磁通限制器的三阶有限体积的误差小于没有磁通限制器的二阶有限体积。在本研究中测试的通量限制器中,文卡塔克里希南的通量限制器产生的误差最大,其次是范里尔限制器、欧拉限制器和SMART限制器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Errors Caused by Flux Limiters on the Numerical Solution of Advection-Diffusion Problem
Flux limiters are widely used in numerical simulations to prevent spurious oscillation in the flow with strong property gradients. However, applying flux limiter on flow without strong property gradient such as advection-diffusion flow can cause errors. This article discusses the errors caused by several flux limiters in advection-diffusion flow solution. A method for applying one-dimensional limiters to two-dimensional unstructured mesh was also suggested. The error was measured by comparing the finite volume solution of a test case with a reference solution. The study shows that the calculation error of second-order finite volume with flux limiter was higher than that of second-order finite volume without limiter. However, the error of third-order finite volume with flux limiter is less than that of second-order without flux limiter. Among the flux limiters tested in this study, Venkatakrishnan’s flux limiter produces the highest error, followed by Van leer’s limiter, EULER and SMART limiter.
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来源期刊
Nigerian Journal of Technological Development
Nigerian Journal of Technological Development Engineering-Engineering (miscellaneous)
CiteScore
1.00
自引率
0.00%
发文量
40
审稿时长
24 weeks
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