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A simple and efficient procedure for the numerical simulation of wind fields in complex terrain

机译:复杂地形中风场数值模拟的简单有效程序

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In spite of recent progress in the prognostic numerical simulation of the atmospheric boundary layer, the explicit simulation of turbulent flows in actual complex terrain is generally still very complicated and time consuming for many environmental applications. In an attempt to develop simpler and more efficient application oriented techniques, although less refined, we propose a multi-step procedure for simulating wind fields. Once obtained the necessary meteorological input, the mass-consistent modelling technique is used to perform high-resolution mean wind flow simulations taking into account recent developments in the atmospheric boundary-layer theory. Besides, a procedure based on a generalisation of the local logarithmic law-of-the-wall over complex terrain is used to estimate the effective parameters characterising the simulated wind profiles. Turbulence intensities and spectral properties are then calculated through the estimated effective parameters, in particular through the effective friction velocity parameter. Finally, time series of the instantaneous velocity field are simulated by the Monte Carlo technique. Two applications of the proposed approach are discussed briefly: the first one is related to a coastal area in southern Italy (the Messina Straits), where the construction of the world’s longest central span bridge is being planned; the second one corresponds to the flow in a mountainous area in northern Italy (the Albenga Airport).
机译:尽管在大气边界层的预测数值模拟方面取得了最新进展,但是对于许多环境应用而言,在实际复杂地形中对湍流的显式模拟通常仍然非常复杂且耗时。为了尝试开发更简单,更高效的面向应用程序的技术(尽管不够完善),我们提出了模拟风场的多步骤过程。考虑到大气边界层理论的最新发展,一旦获得了必要的气象输入,就可以使用质量一致的建模技术来执行高分辨率平均风流模拟。此外,使用基于复杂地形上局部对数壁垒定律的推广的过程来估计表征模拟风廓线的有效参数。然后通过估计的有效参数,特别是通过有效摩擦速度参数来计算湍流强度和光谱特性。最后,利用蒙特卡洛技术对瞬时速度场的时间序列进行了仿真。简要讨论了该方法的两个应用:第一个与意大利南部沿海地区(墨西拿海峡)有关,该地区正在计划建造世界上最长的中跨桥。第二个对应于意大利北部山区(阿尔本加机场)的流量。

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