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Optimal Design of Building for Urban Wind Energy Utilization

机译:城市风能利用建筑优化设计

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The article deals with numerical and experimental investigation of wind flow in roof area and optimal design of input parts,where is possible to use IRWES system(Integrated Roof Wind Energy System).Orientation of some high-rise objects is suitable for using wind power.In the first phase,the selected building was investigated using CFD simulation for creating space for three small wind turbines in the area of two technical floors.By using 3D print technology,model of the structure in scale 1:300 with rough facade was created.Experimental measurements were performed in Boundary Layer Wind Tunnel in Bratislava.Measurements were made for 3 reference wind speeds,which fulfilled flow similarity of prototype and model.We have compared the results of the numerical simulations and experimental measurements and obtained information on the average wind speeds at the VAWT site.Comparison of the mean wind velocity and external wind pressure coefficient obtained by CFD simulation and experimental measurements showed a good match.Considering the annual average wind speed at about 100m above sea level,we compared the wind acceleration at the turbine site.
机译:本文涉及屋顶区域风力流量的数值和实验研究,以及输入部件的最佳设计,可以使用IRWES系统(集成屋顶风能系统)。一些高层物体的型号适用于使用风力。在第一阶段,使用CFD仿真研究了所选建筑,用于在两个技术楼层面积中为三个小型风力涡轮机创造空间。通过3D打印技术,创建了具有粗糙外观的尺寸为1:300的结构模型。实验测量在布拉索拉夫的边界层风隧道中进行..进行3个参考风速,实现了原型和模型的流动相似性。我们已经比较了数值模拟和实验测量的结果,并获得了平均风速的信息在VAWT Site.Comperise的平均风速和外部风力压力系数通过CFD仿真和实验ME血浆表现出良好的匹配。我们将年平均风速在海拔约1000万左右,比较了涡轮机场的风速加速。

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