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Dispersion of TSP and PM_(10) emissions from quarries in complex terrain

机译:复杂地形采石场中TSP和PM_(10)排放的扩散

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摘要

This study evaluates AERMOD and CALPUFF dispersion calculations of paniculate matter emissions from stone quarries in two mountainous regions against TSP and PM_(10) measurements, using both observational and WRF-modeled meteorological data. Due to different model parameterization, AERMOD dispersion predictions were in better agreement with the measured concentrations than those obtained by CALPUFF. As expected, the smaller the distance between the meteorological station, the source (quarry) and the receptors, the better the predictions of both AERMOD and CALPUFF. In contrast, using in-situ wind field obtained by runs of the WRF meteorological model for the complex terrain study area provided, in general, less accurate dispersion estimates than when using (even remote) meteorological observations. In particular, using the three-dimensional WRF-modeled wind field within CALPUFF did not provide any advantage over using the two-dimensional wind field, which is the common procedure of AERMOD and CALPUFF. Dry deposition was more significant for ambient concentration estimation in AERMOD than in CALPUFF.
机译:这项研究使用观测和WRF建模的气象数据,针对TSP和PM_(10)测量值评估了两个山区采石场的颗粒物排放的AERMOD和CALPUFF弥散计算。由于模型参数设置不同,因此与通过CALPUFF获得的浓度相比,AERMOD色散预测与实测浓度具有更好的一致性。正如预期的那样,气象站,源(采石场)与接收器之间的距离越小,AERMOD和CALPUFF的预测就越好。相比之下,使用WRF气象模型运行得到的复杂地形研究区域的原位风场通常提供的色散估计值不如使用(甚至是远程)气象观测时准确。特别是,在CALPUFF中使用三维WRF建模的风场与使用二维风场相比没有任何优势,而二维风场是AERMOD和CALPUFF的通用过程。对于AERMOD中的环境浓度估计,干法沉积比在CALPUFF中更重要。

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