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Wave-Modified Flux and Plume Dispersion in the Stable Boundary Layer

机译:稳定边界层中的波修正通量和羽流弥散

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摘要

The effects of a pressure jump and a following internal gravity wave on turbulence and plume diffusion in the stable planetary boundary layer are examined. The pressure jump was accompanied by a sudden increase in turbulence and plume dispersion. The effects of wave perturbations on turbulence statistics are analysed by calculating fluxes and variances with and without the wave signal for averaging times ranging from 1 to 30 min. The wave signals are obtained using a band-pass filter. It is shown that second-order turbulence quantities calculated without first subtracting the wave perturbations from the time are greater than those calculated when the wave signal is separated from the turbulence. Estimates of the vertical dispersion of an elevated tracer plume in the stable boundary layer are made using an elastic backscatter lidar. Plume dispersion observed 25 m downwind of the source increases rapidly with the arrival of the flow disturbances. Measured plume dispersion and plume centreline height correlate with the standard deviation of the vertical velocity but not with the wave signal.
机译:研究了压力跳跃和随后的内部重力波对稳定行星边界层中湍流和羽流扩散的影响。压力跳跃伴随着湍流和羽流扩散的突然增加。通过计算带有和不带有波动信号的通量和方差,平均时间为1到30分钟,从而分析波动对扰动统计量的影响。使用带通滤波器获得波信号。结果表明,未先从时间中减去波扰动而计算出的二阶湍流量大于将波信号与湍流分离时所计算出的二阶湍流量。使用弹性反向散射激光雷达估算了示踪剂羽在稳定边界层中的垂直扩散。随着流动扰动的到来,观测到的源头向下25 m处的羽流弥散迅速增加。测得的羽流弥散和羽流中心线高度与垂直速度的标准偏差相关,但与波信号无关。

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