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Advanced turbulence models and boundary conditions for flows around different configurations of ground-mounted buildings

机译:高级湍流模型和边界条件,不同配置地面建筑物的不同配置

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摘要

When dealing with Atmospheric Boundary Layer (ABL) simulations, commercial computational fluid dynamics (CFD) acquires a strategic resonance. Thanks to its good compromise between accuracy of results and calculation time, RANS still represents a valid alternative to more resource-demanding methods. However, focusing on the models' performances in urban studies, LES generally outmatches RANS results, even if the former is at least one order of magnitude more expensive. Consequently, the present work aims to propose a variety of approaches meant to solve some of the major problems linked to RANS simulations and to further improve its accuracy in typical urban contexts. All of these models are capable of switching from an undisturbed flux formulation to a disturbed one through a local deviation or a marker function. For undisturbed flows, a comprehensive approach is adopted, solving the issue of the erroneous stream-wise gradients affecting the turbulent profiles. Around obstacles, Non-Linear Eddy-Viscosity closures are adopted, due to their prominent capability in capturing the anisotropy of turbulence. The purpose of this work is then to propose a new Building Influence Area concept and to offer more affordable alternatives to LES simulations without sacrificing a good grade of accuracy.
机译:在处理大气边界层(ABL)模拟时,商业计算流体动力学(CFD)获取战略共鸣。由于结果和计算时间的准确性之间的良好妥协,RAN仍然代表了更多资源苛刻方法的有效替代方案。然而,关注城市研究的模型的表现,即使前者至少是昂贵的数量级,即使前者的数量级,也是一般的跑步。因此,目前的工作旨在提出各种方法,该方法可以解决与Rans模拟相关的一些主要问题,并进一步提高典型城市环境中的准确性。所有这些模型都能够通过局部偏差或标记功能从未受干扰的磁通配方切换到干扰的通量。为了不受干扰的流动,采用了全面的方法,解决了影响湍流型材的错误流明智梯度的问题。由于它们在捕获湍流各向异性方面,采用了障碍物,采用了非线性涡流粘度闭合。然后,这项工作的目的是提出一个新的建筑物影响面积概念,并提供更实惠的替代方案,而不会牺牲良好的准确度。

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