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Numerical modeling of flow structures over various flat-topped stockpiles height: Implications on dust emissions

机译:各种平顶堆高上流动结构的数值模拟:对粉尘排放的影响

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Fugitive dust emissions from open stock yards for bulk materials, such as coal or ores, can represent a significant part of overall estimated atmospheric emission on industrial site, as example on steel plant sites. Stockpile topography is known to modify the near field uptake force of the wind through changes of the mean flow. Various studies have shown that aeolian erosion strongly occurs on the stockpile crest, so it appears relevant to carry out a study to analyze the effect on the dust emissions of the stockpile clipping. Three-dimensional numerical simulations were done with the aim of simulating wind flow over different flat-topped pile scenarios, corresponding to a constant material volume. Various wind flow directions were tested to determine its impact on particle emissions. Data obtained from Computational Fluid Dynamics simulations were then integrated in order to estimate the effect of the clipping on the stockpiles dust emission rates by using the EPA's emission factors method. Results provide evidence to suggest that clipping stockpiles does not reduce dust emissions. This study provides to industrial operators some informations on the best geometrical pile characteristics in order to limit particles emissions.
机译:散装物料(例如煤或矿石)的露天堆场散逸的粉尘排放可能占工业现场(例如钢铁厂现场)总体大气排放估算的很大一部分。已知堆形地形通过平均流量的变化来改变风的近场吸收力。各种研究表明,在lian顶上强烈发生风蚀,因此进行研究以分析clipping剪对粉尘排放的影响似乎很重要。进行了三维数值模拟,目的是模拟在不同的平顶桩情况下的风流,对应于恒定的物料体积。测试了各种风向,以确定其对粒子排放的影响。然后将从计算流体动力学仿真中获得的数据进行整合,以便使用EPA的排放因子方法估算削波对库存粉尘排放率的影响。结果提供了证据表明修剪库存不会减少粉尘排放。这项研究为工业经营者提供了一些有关最佳几何绒头特性的信息,以限制颗粒物的排放。

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