Numerical Simulation of Turbulent Flows using the SST-SAS Model

Mauro Grioni, Sergio Elaskar, Pascal Bruel, A. Mirasso
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Abstract

Turbulent flows play a crucial role in various engineering and scientific applications, and the accurate prediction of these flows remains a challenging task. This review explores the application of the Shear Stress Transport Scale-Adaptive Simulation (SST-SAS) turbulence model for solving incompressible turbulent flows, with a specific focus on unsteady wakes behind bluff bodies. Providing a concise overview of the model’s formulation and its advantages, this article highlights the efficacy of the SST-SAS model in simulating the intricate dynamics in different configurations of circular cylinders. The present study affirms that the SST-SAS model can be considered a highly viable alternative for simulating unsteady flows around bluff bodies due to the good predictive quality of the resulting simulations.
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利用 SST-SAS 模型对湍流进行数值模拟
湍流在各种工程和科学应用中发挥着至关重要的作用,而对这些流动的精确预测仍然是一项具有挑战性的任务。这篇综述探讨了剪应力传输尺度自适应模拟(SST-SAS)湍流模型在求解不可压缩湍流中的应用,特别关注崖体后方的非稳定湍流。本文简明扼要地概述了该模型的公式及其优势,重点介绍了 SST-SAS 模型在模拟圆柱体不同构型的复杂动力学过程中的功效。本研究证实,由于 SST-SAS 模型的模拟结果具有良好的预测质量,因此可被视为模拟崖体周围非稳定流的一种非常可行的替代方法。
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