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首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Evaluation of Wray-Agarwal turbulence model for simulation of neutral and non-neutral atmospheric boundary layers
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Evaluation of Wray-Agarwal turbulence model for simulation of neutral and non-neutral atmospheric boundary layers

机译:中性和非中性大气边界层模拟的翻译 - 琼脂湍流模型评价

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摘要

Wray-Agarwal (WA) turbulence model is a one-equation eddy-viscosity model derived from a blended k - omega/k - epsilon formulation. The model performance is better than the commonly used Spalart-Allmaras one-equation model and comparable to shear stress transport (SST) model, for a wide range of canonical flows in aerodynamics. This study proposes a Monin-Obukhov similarity theory (MOST) consistent modification of the buoyancy production/destruction term in this model to simulate the atmospheric boundary layer under different stratifications. The rough wall function is also modified to be consistent with MOST. A benchmark case for testing the streamwise homogeneity evaluated the model performance. In the tests, the wind and turbulence profiles did not decay along the stretch due to the model consistency with MOST. Adoption of the model for urban flow and wind energy simulations requires further testing.
机译:Wray-Agarwal(WA)湍流模型是一种衍生自混纺K - Omega / K - ε-ε制剂的单一等式涡粘度模型。 模型性能优于常用的Spalart-Allmaras单方程模型,并且可与剪切应力传输(SST)模型相当,用于空气动力学中的各种规范流。 本研究提出了一种Monin-Obukhov相似性理论(大多数)在该模型中对浮力生产/破坏术语的一致修改,以模拟不同分层的大气边界层。 粗糙的墙壁功能也被修改为与大多数相一致。 用于测试Streamwise同质性的基准情况评估了模型性能。 在测试中,由于大多数模型一致性,风和湍流轮廓并未沿着延伸衰减。 采用城市流量和风能模拟模型需要进一步测试。

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