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Stencil Adaptation Properties Of A Weno Scheme In Direct Numerical Simulations Of Compressible Turbulence

机译:可压缩湍流直接数值模拟中Weno方案的模版自适应特性

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摘要

Weighted essentially non-oscillatory (WENO) methods can simultaneously provide the high order of accuracy, high bandwidth-resolving efficiency, and shock-capturing capability required for the detailed simulation of compressible turbulence. However, rigorous analysis of the actual versus theoretical error properties of these non-linear numerical methods is difficult. We use a bandwidth-optimized WENO scheme to conduct direct numerical simulations of two- and three-dimensional decaying isotropic turbulence, and we evaluate the performance of quantitative indicators of local WENO adaptation behavior within the resulting flow fields. One aspect of this assessment is the demarcation of shock-containing and smooth regions where the WENO method should, respectively, engage its adaptation mechanism and revert to its linear optimal stencil. Our results show that these indicators, when synthesized properly, can provide valuable quantitative information suitable for statistical characterization.
机译:加权的基本非振荡(WENO)方法可以同时提供详细的可压缩湍流模拟所需的高准确性,高带宽解析效率和震撼捕获能力。但是,很难对这些非线性数值方法的实际与理论误差特性进行严格的分析。我们使用带宽优化的WENO方案对二维和三维衰减各向同性湍流进行直接数值模拟,并评估由此产生的流场中局部WENO适应行为的定量指标的性能。评估的一个方面是划定包含震动的区域和平滑区域,在这些区域中,WENO方法应分别采用其自适应机制并恢复为线性最佳模板。我们的结果表明,如果适当地综合这些指标,可以提供适合统计表征的有价值的定量信息。

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