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Effect of Vertical Wind Shear on Concentration Fluctuation Statistics in a Point Source Plume

机译:垂直风切变对点源羽流中浓度波动统计的影响

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Measurements of concentration fluctuation intensity, intermittency factor, and integral time scale were made in a water channel for a plume dispersing in a well-developed, rough surface, neutrally stable, boundary layer, and in grid-generated turbulence with no mean velocity shear. The water-channel simulations apply to full-scale atmospheric plumes with very short averaging times, on the order of 1–4 min, because plume meandering was suppressed by the water-channel side walls. High spatial and temporal resolution vertical and crosswind profiles of fluctuations in the plume were obtained using a linescan camera laser-induced dye tracer fluorescence technique. A semi-empirical algebraic mean velocity shear history model was developed to predict these concentration statistics. This shear history concentration fluctuation model requires only a minimal set of parameters to be known: atmospheric stability, surface roughness, vertical velocity profile, and vertical and crosswind plume spreads. The universal shear history parameter used was the mean velocity shear normalized by surface friction velocity, plume travel time, and local mean wind speed. The reference height at which this non-dimensional shear history was calculated was important, because both the source and the receptor positions influence the history of particles passing through the receptor position.
机译:浓度波动强度,间歇性因子和积分时间标度的测量是在水流中进行的,以使烟流散布在发达的,粗糙的表面,中性稳定的边界层中,以及在没有平均速度剪切的网格产生的湍流中。水道模拟适用于平均时间非常短的全尺寸大气羽流,数量级为1-4分钟,因为水道侧壁抑制了羽流弯曲。使用linecan相机激光诱导的染料示踪荧光技术获得了羽流波动的高时空分辨率垂直和侧风剖面。建立了半经验代数平均速度切变历史模型来预测这些浓度统计数据。该剪切历史浓度波动模型仅需要知道极少的一组参数:大气稳定性,表面粗糙度,垂直速度分布以及垂直和逆风羽状扩散。使用的通用剪切历史参数是通过表面摩擦速度,羽流传播时间和局部平均风速标准化的平均速度剪切。计算该无量纲剪切历史的参考高度很重要,因为源和受体位置都会影响通过受体位置的粒子的历史。

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