Shaukat Usman, Giljarhus Knut Erik Teigen
Department of Mechanical and Structural Engineering and Materials Science, University of Stavanger, Stavanger, Norway.
Data Brief. 2024 Apr 23;54:110467. doi: 10.1016/j.dib.2024.110467. eCollection 2024 Jun.
This data article provides high-quality turbulent inflow boundary data with a high spatial and temporal resolution of a very rough atmospheric boundary layer (ABL) wind tunnel, which can be applied as the large eddy simulation (LES) inflow condition on the Michelstadt test cases. A high-quality LES of the WOTAN wind tunnel of the Environmental Wind Tunnel Laboratory (EWTL) was conducted using OpenFOAM software, and data is stored at a plane at frequency at the end of the roughness elements. This data serves as the turbulent inflow boundary condition, offering computational fluid dynamics (CFD) researchers a cost-effective means to simulate the benchmark Michelstadt test cases for LES validation. This data will be utilized to perform high-quality LES, which are pivotal in bridging the research gap in understanding the intricate nature of wind dynamics in a realistic urban environment.
本文提供了高质量的湍流流入边界数据,该数据来自一个非常粗糙的大气边界层(ABL)风洞,具有高空间和时间分辨率,可作为米夏尔斯塔特测试案例的大涡模拟(LES)流入条件。利用OpenFOAM软件对环境风洞实验室(EWTL)的沃坦风洞进行了高质量的LES模拟,并将数据存储在粗糙度元件末端某一频率的平面上。该数据作为湍流流入边界条件,为计算流体动力学(CFD)研究人员提供了一种经济高效的方法,用于模拟LES验证的基准米夏尔斯塔特测试案例。这些数据将用于进行高质量的LES模拟,这对于弥合理解现实城市环境中风动力学复杂性质的研究差距至关重要。