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A Comparison Of Aerosol-Layer And Convective Boundary-Layer Structure Over A Mountain Range During Staaarte '97

机译:Staaarte '97期间山脉上气溶胶层和对流边界层结构的比较

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The temporal evolution and spatial structure of the aerosol layer (AL) height as observed with an airborne downlooking lidar over the Swiss Alps were investigated with a three-dimensional mesoscale numerical model and a particle dispersion model. Convective boundary-layer (CBL) heights were derived from the mesoscale model output, and the behaviour of surface-released particles was investigated with the particle dispersion model. While a previous investigation, using data from the same field study, equated the observed AL height with the CBL height, the results of the current investigation indicate that there is a considerable difference between AL and CBL heights caused by mixing and transport processes between the CBL and the free atmosphere. CBL heights show a more terrain-following behaviour and are lower than AL heights. We argue that processes causing the difference between AL and CBL heights are common over mountainous terrain and that the AL height is a length scale that needs to be considered in air pollution studies in mountainous terrain.
机译:利用三维中尺度数值模型和颗粒弥散模型研究了在瑞士阿尔卑斯山上空降射的激光雷达观测到的气溶胶层(AL)高度的时间演变和空间结构。对流边界层(CBL)的高度是从中尺度模型输出中得出的,并使用颗粒分散模型研究了表面释放颗粒的行为。虽然先前的调查使用了来自相同领域研究的数据,将观察到的AL高度与CBL高度相等,但当前调查的结果表明,由于CBL之间的混合和运输过程,AL和CBL高度之间存在相当大的差异和自由的气氛。 CBL高度显示出更多的地形跟随行为,并且低于AL高度。我们认为导致AL和CBL高度差异的过程在山区普遍存在,而AL高度是在山区地形空气污染研究中需要考虑的长度尺度。

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