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首页> 外文期刊>Numerical Heat Transfer, Part B. Fundamentals: An International Journal of Computation and Methodology >B-EXPRESS: A new bounded extremum-preserving strategy for convective schemes
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B-EXPRESS: A new bounded extremum-preserving strategy for convective schemes

机译:B-EXPRESS:对流方案的一种新的有界极值保全策略

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The indiscriminate application of the convective boundedness criterion (CBC) in all flow regions results in a new and subtle error that leads to a significant reduction in accuracy at locations where physical extrema (maxima or minima),vith sleep profiles are present. In this article, a new Bounded EXtremum-PREServing Strategy (B-EXPRESS) that addresses this issue is presented. The B-EXPRESS is a two-stage procedure in which an extremum recognition algorithm (ERA) is first applied to a solution converged to a set level to flag locations at which enforcing the CBC leads to extrema attenuation. Then, in the second stage, an unbounded scheme is used at the flagged locations, while a bounded scheme is used elsewhere. The new strategy is applied to the SMART (a third-order-bounded scheme) and BSEVENTH (a seventh-order-bounded scheme) schemes to yield two new schemes denoted by B-EXPRESS-3 and B-EXPRESS-7, respectively. These schemes are tested by solving four problems of pure convection in an oblique velocity field of sinusoidal, elliptic, triangular, and box profiles. Results obtained reveal that the B-EXPRESS-3 greatly reduces the rate of attenuation in the levels of the profiles and is as accurate as the BSEVENTH scheme, which, on average, requires 540% more CPU time than the B-EXPRESS-3 scheme. Moreover, the B-EXPRESS-7 scheme computations do not show any observable attenuation in the levels of the profiles while marginally increasing the CPU effort (3.43% on average) over the BSEVENTH scheme. [References: 11]
机译:在所有流动区域中均不加区别地使用对流有界准则(CBC)会导致一个新的细微误差,从而导致在存在极度体力(最大值或最小值)和睡眠分布的位置,准确性显着降低。本文中,提出了解决此问题的新的有界极值-PREServing策略(B-EXPRESS)。 B-EXPRESS是一个两阶段过程,其中,将极值识别算法(ERA)首先应用于收敛到设置级别的解决方案,以标记执行CBC导致极值衰减的位置。然后,在第二阶段中,在标记的位置使用无界方案,而在其他位置使用有界方案。将该新策略应用于SMART(三阶有界方案)和BSEVENTH(七阶有界方案)方案,以分别产生两个由B-EXPRESS-3和B-EXPRESS-7表示的新方案。通过解决正弦,椭圆,三角形和箱形轮廓的斜速度场中的四个纯对流问题,对这些方案进行了测试。获得的结果表明,B-EXPRESS-3大大降低了配置文件级别的衰减率,并且与BSEVENTH方案一样准确,该方案平均比B-EXPRESS-3方案多540%的CPU时间。 。此外,B-EXPRESS-7方案计算未显示概要文件级别上的任何可观察到的衰减,同时与BSEVENTH方案相比略微增加了CPU工作量(平均为3.43%)。 [参考:11]

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