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Wind field simulation over complex terrain under different inflow wind directions

机译:不同进风方向下复杂地形的风场模拟

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Accurate numerical simulation of wind field over complex terrain is an important prerequisite for wind resource assessment In this study, numerical simulation of wind field over complex terrain was further carried out by taking the complex terrain around Siu Ho Wan station in Hong Kong as an example. By artificially expanding the original digital model data, Gambit and ICEM CFD software were used to create high-precision complex terrain model with high-quality meshing The equilibrium atmospheric boundary layer simulation based on RANS turbulence model was carried out in a flat terrain domain, and the approximate inflow boundary conditions for the wind field simulation over complex terrain were established. Based on this, numerical simulations of wind field over complex terrain under different inflow wind directions were carried out The numerical results were compared with the wind tunnel test and field measurement data for land and sea fetches. The results show that the numerical results are in good agreement with the wind tunnel data and the field measurement data which can verify the accuracy and reliability of the numerical simulation. The near ground wind field over complex terrain is complex and affected obviously by the terrain, and the wind field characteristics should be fully understood by numerical simulation when carrying out engineering application on it.
机译:在复杂地形上进行准确的风场数值模拟是评估风资源的重要前提。在本研究中,以香港小河湾站周围的复杂地形为例,进一步对复杂地形的风场进行了数值模拟。通过人为地扩展原始数字模型数据,使用Gambit和ICEM CFD软件创建具有高质量网格划分的高精度复杂地形模型。在平坦地形域中基于RANS湍流模型进行了平衡大气边界层模拟,并且建立了复杂地形风场模拟的近似入流边界条件。在此基础上,对复杂地形在不同进风风向下的风场进行了数值模拟,并与风洞试验和海陆实测数据进行了比较。结果表明,数值结果与风洞数据和现场测量数据吻合良好,可以验证数值模拟的准确性和可靠性。复杂地形上的近地面风场复杂,受地形影响明显,在工程上应用时应通过数值模拟充分理解风场特征。

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