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Reduced-order urban wind interference

机译:减少城市风的干扰

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A novel approach is demonstrated to approximate the effects of complex urban interference on the wind-induced surface pressure of tall buildings. This is achieved by decomposition of the domain into two components: the obstruction model (OM) of the static large-scale urban context, for which a single computational fluid dynamics (CFD) simulation is run; and the principal model (PM) of the isolated tall building under design, for which repeatable reduced-order model (ROM) predictions can be made. The ROM is generated with an artificial neural network (ANN), using a set of feature vectors comprising an input of local shape descriptors and a range of wind speeds from a training geometry, and an output response of pressure. For testing, the OM CFD simulation provides the flow boundary condition wind speeds to the PM ROM prediction. The result is vertex-resolution surface pressure data for the PM mesh, intended for use within generative design exploration and optimisation. It is found that the mean absolute prediction error is around 5.0% (sigma: 7.8%) with an on-line process time of 390s, 27 times faster than conventional CFD simulation; considering full process time, only 3.2 design iterations are required for the ROM time to match CFD. Existing work in the literature focuses solely on creating generalised rules relating global configuration parameters and a global interference factor (IF). The work presented here is therefore a significantly alternative approach, with the advantages of increased geometric flexibility, output resolution, speed, and accuracy.
机译:展示了一种新颖的方法来近似复杂的城市干扰对高层建筑的风致表面压力的影响。这是通过将域分解为两个部分来实现的:静态大型城市环境的阻塞模型(OM),对其进行单个计算流体动力学(CFD)仿真;以及正在设计中的隔离高层建筑的主要模型(PM),可以对其进行可重复的降阶模型(ROM)预测。 ROM是通过人工神经网络(ANN)使用一组特征向量生成的,这些特征向量包括局部形状描述符的输入和来自训练几何体的一定范围的风速以及压力的输出响应。为了进行测试,OM CFD模拟为PM ROM预测提供了流动边界条件风速。结果是PM网格的顶点分辨率表面压力数据,旨在用于生成设计探索和优化。结果发现,平均绝对预测误差约为5.0%(sigma:7.8%),在线处理时间为390s,比常规CFD仿真快27倍;考虑到完整的处理时间,ROM时间只需要3.2个设计迭代即可匹配CFD。文献中的现有工作仅专注于创建有关全局配置参数和全局干扰因子(IF)的通用规则。因此,此处介绍的工作是一种可替代的方法,具有增加的几何灵活性,输出分辨率,速度和准确性的优点。

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