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A Closure for Isotropic Turbulence Based on Extended Scale Similarity Theory in Physical Space
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The closure of a turbulence field is a longstanding fundamental problem, while most closure models are introduced in spectral space. Inspired by Chou's quasi-normal closure method in spectral space, we propose an analytical closure model for isotropic turbulence based on the extended scale similarity theory of the velocity structure function in physical space. The assumptions and certain approximations are justified with direct numerical simulation. The asymptotic scaling properties are reproduced by this new closure method, in comparison to the classical Batchelor model. 相似文献
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亚格子建模是大涡模拟中的核心问题之一.理性亚格子建模的初衷是为尽量去除建模过程中的经验和唯象的成分,让建模过程中的每一步都在物理和数学上有迹可循.根据理性亚格子建模的理论已经发展出一系列不依赖经验常数和唯象模型的亚格子模型,但在实际问题中的效果却仍有不足,从而引发了近年来对亚格子建模思想本身的反思.本文回顾已有的研究和新的进展,目标是对未来的大涡模拟给出理性且自洽的理论指导. 相似文献
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