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The Effects of Inner- and Outer-Layer Turbulence in a Convective Boundary Layer on the Near-Neutral Inertial Sublayer Over an Urban-Like Surface

机译:城市样表面近中性惯性子层对流边界层内外湍流的影响

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A large-eddy simulation of the atmospheric boundary layer, large enough to contain both an urban surface layer and a convective mixed layer, was performed to investigate inner-layer and outer-layer scale motions. The objective was to determine the applicability of Monin-Obukhov similarity theory to inner-layer motions, to investigate the influence of outer-layer motions on surface-layer structure, as well as to assess the interaction of the two scales of motion. The urban surface roughness consistedof square-patterned cubic buildings of dimension H (40 m). A spatial filter was used to decompose the two scales in the inertial sublayer. The horizontal square filter of size 10H was effective in separating the inner-layer (surface-layer height approx approx2H) and outer-layer scales (boundary-layer height delta approx approx 30H), where the Reynolds stress contribution of the inner layer dominates in the logarithmic layer (depth 2H). Similarity coefficients for velocity fluctuations were successfullydetermined for inner-layer motions in the surface layer, proving the robustness of Monin-Obukhov similarity for surface-layer turbulence. The inner-layer structures exhibit streaky structures that have similar streamwise length but narrower spanwise width relative to the streamwise velocity fluctuation field, consistent with observations from an outdoor scale model. The outer-layer motions to some extent influence the location of ejections and sweeps through updraft and downdraft motions, respectively,thus, disturbing the homogeneity and similarity of inner-layer motions. Although the horizontal averages of the variances and covariance of motions reveal that the Reynolds stresses are dominated by inner-layer structures, the localized influence of theinteraction of outer-layer horizontal and inner-layer vertical motions on the Reynolds stress is not insignificant.
机译:对大气边界层进行大涡模拟,其大小足以容纳城市表层和对流混合层,以研究内层和外层尺度运动。目的是确定Monin-Obukhov相似性理论对内层运动的适用性,研究外层运动对表面层结构的影响,以及评估两个运动尺度的相互作用。城市表面粗糙度由尺寸为H(40 m)的正方形立体立方体建筑组成。使用空间滤波器分解惯性子层中的两个比例。尺寸为10H的水平方形滤波器可有效地分离内层(表层高度约2H)和外层垢(边界层高度差约30H),其中内层的雷诺应力贡献占主导地位。对数层(深度2H)。成功确定了表层内层运动的速度波动相似系数,证明了Monin-Obukhov相似性对表层湍流的鲁棒性。内层结构呈现出条纹状结构,该条纹状结构相对于流向速度波动场具有类似的流向长度,但跨展向宽度较窄,这与室外比例模型的观察结果一致。外层运动在一定程度上影响弹射的位置,并分别通过上,下气流运动,从而扰乱了内层运动的同质性和相似性。尽管运动的方差和协方差的水平平均值表明雷诺应力受内层结构的支配,但是外层水平运动和内层垂直运动的相互作用对雷诺应力的局部影响并不显着。

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