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Characteristics of the Drag Coefficient in the Roughness Sublayer over a Complex Urban Surface

机译:复杂城市表面粗糙度子层中阻力系数的特征

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摘要

The statistics of momentum exchange in the urban roughness sublayer are investigated. The analysis focuses on the characteristics of the dimensionless friction velocity, , which is defined as the square root of the drag coefficient. The turbulence observations were made at a height of 47 m above the ground on the 325-m meteorological tower, which is located in a very inhomogeneous urban area in Beijing. Under neutral conditions, the dependence of the drag coefficient on wind speed varies with wind direction. When the airflow is from the area of densely built-up buildings, the drag coefficient does not vary with wind speed, while when the airflow is from the area covered by vegetation, the drag coefficient appears to decrease with increasing wind speed. Also, the drag coefficient does not vary monotonically with the atmospheric stability. Both increasing stability and increasing instability lead to the decrease of the drag coefficient, implying that the roughness length and zero-plane displacement may vary in urban areas
机译:研究了城市粗糙度子层中动量交换的统计量。分析着重于无量纲摩擦速度的特性,它被定义为阻力系数的平方根。湍流观测是在位于北京一个非常不均匀的市区内的325米气象塔的地面上方47 m的高度上进行的。在中性条件下,阻力系数对风速的依赖性随风向而变化。当气流来自密集建筑的区域时,阻力系数不会随风速变化,而当气流来自植被覆盖的区域时,阻力系数会随着风速的增加而减小。而且,阻力系数不会随大气稳定性而单调变化。增加的稳定性和增加的不稳定性都会导致阻力系数的降低,这意味着在城市地区,粗糙度长度和零平面位移可能会发生变化

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