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Aerodynamic roughness variation with vegetation: analysis in a suburban neighbourhood and a city park

机译:空气动力学粗糙度随植被的变化:郊区和城市公园的分析

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摘要

Local aerodynamic roughness parameters (zero-plane displacement, z (d) , and aerodynamic roughness length, z (0) ) are determined for an urban park and a suburban neighbourhood with a new morphometric parameterisation that includes vegetation. Inter-seasonal analysis at the urban park demonstrates z (d) determined with two anemometric methods is responsive to vegetation state and is 1-4 m greater during leaf-on periods. The seasonal change and directional variability in the magnitude of z (d) is reproduced by the morphometric methods, which also indicate z (0) can be more than halved during leaf-on periods. In the suburban neighbourhood during leaf-on, the anemometric and morphometric methods have similar directional variability for both z (d) and z (0) . Wind speeds at approximately 3 times the average roughness-element height are estimated most accurately when using a morphometric method which considers roughness-element height variability. Inclusion of vegetation in the morphometric parameterisation improves wind-speed estimation in all cases. Results indicate that the influence of both vegetation and roughness-element height variability are important for accurate determination of local aerodynamic parameters and the associated wind-speed estimates.
机译:确定具有新的形态参数化(包括植被)的城市公园和郊区附近的局部空气动力学粗糙度参数(零平面位移z(d)和空气动力学粗糙度长度z(0))。在城市公园的季节间分析表明,用两种风速测定方法确定的z(d)对植被状态有响应,并且在叶上期大于1-4 m。 z(d)量级的季节性变化和方向变化是通过形态计量学方法再现的,这也表明z(0)在叶上期间可以减半。在郊区,在上叶子期间,风速和形态计量方法对z(d)和z(0)都具有相似的方向变异性。当使用考虑粗糙度元素高度可变性的形态计量方法时,最准确地估计大约平均粗糙度元素高度3倍的风速。在所有情况下,在形态参数化中包括植被都会改善风速估计。结果表明,植被和粗糙度元素高度可变性的影响对于精确确定局部空气动力学参数和相关的风速估计很重要。

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