首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Coupled CFD framework with mesoscale urban climate model: Application to microscale urban flows with weak synoptic forcing
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Coupled CFD framework with mesoscale urban climate model: Application to microscale urban flows with weak synoptic forcing

机译:耦合CFD框架与Mescrale城市气候模型:在微观透明突出强制弱化城市流动的应用

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摘要

A computational fluid dynamics (CFD) model was developed in the open-source CFD toolbox OpenFOAM for studying microscale urban flows during periods of weak synoptic forcing. The OpenFOAM model is coupled to the regional atmospheric model COSMO to provide boundary conditions for atmospheric variables. The urban canopy model DCEP is used to calculate surface energy balance and estimate the surface temperature boundary conditions. The proposed coupled model was tested for simulations of urban flows in a dense urban area of Zurich, Switzerland during a heatwave day and a day with strong background regional winds. It is shown that the coupled OpenFOAM model can qualitatively resolve small scale unsteady buoyant flows induced by heated buildings and water bodies. Comparing with the observation measurement, the coupled OpenFOAM model and COSMO can predict diurnal temperature with small errors for both sample days. For the wind speed and the wind direction, the errors of both models are higher on the heatwave day, due to the presence of unsteady buoyant flows. It is concluded that to obtain quantitatively accurate results, several improvements in transport models, surface fluxes, coupling strategies, etc. are needed. In addition, the results should be compared comprehensively with a well-located network of sensors.
机译:在弱概要强迫期间,在开源CFD工具箱OpenFoam中开发了计算流体动力学(CFD)模型,用于研究微观城市流程。 OpenFoam模型耦合到区域大气模型COSMO,为大气变量提供边界条件。城市树冠模型DCEP用于计算表面能量平衡并估计表面温度边界条件。在瑞士苏黎世密集的城市地区,瑞士在热风日期和强大的背景区域风的一天中测试了所提出的耦合模型。结果表明,耦合的OpenFoam模型可以定性地解析由加热的建筑物和水体引起的小规模不稳定的浮力流量。与观察测量相比,耦合的OpenFoam模型和COSMO可以预测对样品天的差异小的误差。对于风速和风向,由于存在不稳定的浮力流动,两种型号的误差更高。得出结论,为了获得定量准确的结果,需要几种运输模型,表面助熔剂,耦合策略等改进。此外,应与位于定位的传感器网络全面化进行结果。

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