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RANS simulations of terrain-disrupted turbulent airflow at Hong Kong International Airport

机译:在香港国际机场Rans模拟地形中断湍流气流

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摘要

During a tropical cyclone, windshear can occur at Hong Kong International Airport (HKIA) owing to interactions between strong winds and the complex topography of the neighboring Lantau Island. For aviation safety, it is crucial to understand how such interactions arise under realistic but controlled meteorological conditions. In this study, we numerically simulate the turbulent airflow over Lantau Island and HKIA using OpenFOAM, an open-source platform for computational fluid dynamics. We use the platform to solve the Reynolds-averaged Navier-Stokes equations via the finite volume method of discretization. We impose a neutrally stratified atmospheric boundary layer as the upwind condition, which is initialized with a logarithmic velocity profile in three different wind directions: southerly, southeasterly and easterly. For all three directions, we find multiple high-speed v-shaped jets emanating from the mountain gaps of Lantau Island, giving rise to headwind and crosswind variations along the glide paths of HKIA. However, we find that it is primarily the southerly and southeasterly winds that are the most conducive to windshear. For these two wind directions, we find that windshear is most likely to occur along the glide paths of the two existing runways because these are the closest to Lantau Island itself. The third runway, which is currently under construction, is the least likely to suffer from windshear. By showing how airflow disturbances arise from the complex topography of Lantau Island, this study contributes to safer and more efficient flight operations at HKIA. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在热带旋风内,由于强风与邻近的大屿山的复杂地形之间的相互作用,在香港国际机场(HKIA)可能发生卷心印。对于航空安全,了解在现实但受控气象条件下出现这种相互作用是至关重要的。在这项研究中,我们使用OpenFoam来计算大屿山和香港海岸的湍流气流,这是一个用于计算流体动力学的开源平台。我们使用平台来解决reynolds平均的Navier-Stokes方程,通过分离子的有限体积方法。我们将中性分层的大气边界层施加为上风状态,其用三种不同的风向的对数速度曲线初始化:南部,东南和东部。对于所有三个方向,我们发现多种高速V形射流从大屿山山间隙发出,从香港佳拓的滑行路径产生逆风和横向变化。然而,我们发现它主要是南方和东南风,最有利于缠绕。对于这两个风向,我们发现沿着两条现有跑道的滑行路径最有可能发生挡风眼,因为这些是最接近大屿山本身。目前正在建设的第三跑道最不可能遭受缠绕的可能性。通过展示如何从大屿山复杂地形出现的气流干扰,这项研究有助于在香港济亚更加安全和更有效的飞行业务。 (c)2019 Elsevier Ltd.保留所有权利。

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