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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Rayleigh-Taylor mixing: direct numerical simulation and implicit large eddy simulation
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Rayleigh-Taylor mixing: direct numerical simulation and implicit large eddy simulation

机译:Rayleigh-Taylor混合:直接数值模拟和隐式大涡模拟

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摘要

Previous research into three-dimensional numerical simulation of self-similar mixing due to Rayleigh-Taylor instability is summarized. A range of numerical approaches has been used: direct numerical simulation, implicit large eddy simulation and large eddy simulation with an explicit model for sub-grid-scale dissipation. However, few papers have made direct comparisons between the various approaches. The main purpose of the current paper is to give comparisons of direct numerical simulations and implicit large eddy simulations using the same computational framework. Results are shown for four test cases: (i) single-mode Rayleigh-Taylor instability, (ii) self-similar Rayleigh-Taylor mixing, (iii) three-layer mixing and (iv) a tilted-rig Rayleigh-Taylor experiment. It is found that both approaches give similar results for the high-Reynolds number behavior. Direct numerical simulation is needed to assess the influence of finite Reynolds number.
机译:总结了以瑞利 - 泰勒不稳定性引起的自相似混合的三维数值模拟的研究。 已经使用了一系列数值方法:直接数值模拟,隐式大涡模拟和大型涡模,具有用于子网格尺度耗散的显式模型。 但是,很少有论文在各种方法之间进行了直接的比较。 目前纸张的主要目的是使用相同的计算框架进行直接数值模拟和隐式大涡模拟的比较。 结果显示为四个测试用例:(i)单模瑞利 - 泰勒不稳定,(ii)自相似的瑞利 - 泰勒混合,(iii)三层混合和(iv)倾斜式瑞利泰勒实验。 发现两种方法都为高雷诺数行为提供了类似的结果。 需要直接数值模拟来评估有限雷诺数的影响。

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