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CFD modeling of wind flows in complex terrain taking into account the atmospheric stability - (PPT)

机译:考虑到大气稳定性的复杂地形中的风力模型 - (PPT)

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Computational Fluid Dynamics (CFD) models are more and more frequently used for wind resource assessment, especially in complex terrain. One of the problems is still to take into account properly the thermal stability. In this study, CFD simulations have been compared with in-situ measurements on a complex site, with and without taking into account stability. A detailed analysis is provided on a stable situation. The measurement has been obtained during a campaign organized by EDF-R&D and EDF-Energies Nouvelles which took place in the south of France and lasted about one year. Three masts (one 80 m height and two 50 m height) were equipped with cup anemometers and vanes. The 80 m mast was also equipped with 4 sonic anemometers and 4 temperature sensors. One sodar provided measurements up to about 600 m. The open source CFD model Code_Saturne was used to solve numerically the 3D Reynolds Averaged Navier Stokes equations (RANS) using the turbulence model "standard k-ε". The used mesh had 3.3 million cells. A mesoscale model prediction of wind regime provided the boundary conditions to the CFD model. The thermal stability is accounted for using potential temperature. The first results show an improvement in the numerical simulation if the thermal stratification is taken into account. The atmospheric stability should be taken into account to assess accurately wind resource. However, it can be difficult to define an appropriate methodology to impose the initial and boundary conditions for the thermal variable in complex terrain.
机译:计算流体动力学(CFD)模型越来越常用用于风力资源评估,特别是在复杂的地形中。其中一个问题仍然要考虑热稳定性。在这项研究中,CFD模拟已经与在复杂的位点上的原位测量进行了比较,而不考虑稳定性。详细分析是在稳定的情况下提供的。在由EDF-R&D和EDF-Energies Nouvelles组织的广告系列中获得了测量,该活动在法国南部发生并持续了一年。三个桅杆(高80米和两个50米高)配备了杯形风光仪和叶片。 80米桅杆还配备了4个声音风化仪和4个温度传感器。一个SODAR提供的测量高达约600米。使用湍流模型“标准k-ε”,使用开源CFD模型代码_Saturne用于数控求解3D雷诺瓦尔斯平均revier stokes方程(Rans)。二手网格具有330万个细胞。风力制度的Mescle模型预测为CFD模型提供了边界条件。使用潜在温度算是热稳定性。如果考虑了热分层,则第一个结果显示了数值模拟的改进。应考虑到大气稳定性以评估准确的风力资源。然而,难以定义适当的方法,以施加复杂地形中的热变量的初始和边界条件。

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