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Direct Numerical Simulation and Wall-Resolved Large Eddy Simulation in Nuclear Thermal Hydraulics

机译:核热工水力的直接数值模拟和壁解析大涡模拟

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摘要

The critical review discusses the most accurate methods for description of turbulent flows: the computationally very expensive direct numerical simulation (DNS) and slightly less accurate and slightly less expensive large eddy simulation (LES) methods. Both methods have found their way into nuclear thermal hydraulics as tools for studies of the fundamental mechanisms of turbulence and turbulent heat transfer. In the first section of this critical review, both methods are briefly introduced in parallel with the basic properties of the turbulent flows. The focus is on the DNS method, the so-called quasi-DNS approach, and the coarsest turbulence modeling approach discussed in this work, which is still on the very small-scale, wall-resolved LES. Other, coarser turbulence modeling approaches (such as wall-modeled LES, Reynolds Averaged Navier-Stokes (RANS)/LES hybrids, or RANS) are beyond the scope of the present work. Section Ⅱ answers the question: "How do the DNS and LES methods work? " A short discussion of the computational requirements, numerical approaches, and computational tools is included. Section Ⅲ is about the interpretation of the DNS and LES results and statistical uncertainties. Sections Ⅳ and Ⅴ give some examples of the DNS and wall-resolved LES results relevant for nuclear thermal hydraulics. The last section lists the conclusions and some of the challenges that might be tackled with the most accurate techniques like DNS and LES.
机译:严格的评论讨论了描述湍流的最准确方法:计算上非常昂贵的直接数值模拟(DNS)以及精度稍差而成本稍低的大涡流模拟(LES)方法。两种方法都已进入核热力学中,成为研究湍流和湍流传热基本机理的工具。在本文的第一部分中,简要介绍了这两种方法以及湍流的基本特性。重点是DNS方法(即所谓的准DNS方法)和本工作中讨论的最粗糙的湍流建模方法,该方法仍以非常小规模的壁解析LES为基础。其他更粗糙的湍流建模方法(例如壁建模的LES,雷诺平均Navier-Stokes(RANS)/ LES混合动力或RANS)不在本研究范围之内。第二部分回答了以下问题:“ DNS和LES方法如何工作?”包括对计算要求,数值方法和计算工具的简短讨论。第三节是关于DNS和LES结果的解释以及统计的不确定性。第四节和第五节提供了一些与核热工相关的DNS和壁解析LES结果的示例。最后一部分列出了结论和使用最精确的技术(例如DNS和LES)可以解决的一些挑战。

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