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Computer- and lidar-aided monitoring of industrial sources aerosol polluted zones in a city

机译:计算机和激光雷达辅助的城市工业源气溶胶污染区监测

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Abstract: Instantaneous air pollution fields in towns have mosaic structure and to measure its probability function one needs a measuring network with a great number of sensors. The problem cannot be solved purely by means of computer simulations because of the turbulent character of the air flows among buildings. In this paper we studied this problem by using lidar measurements and computer simulations simultaneously. The lidar data was used for the model parameterization. To simulate the atmosphere transport of the pollution puffs over city buildings we developed the special computer trajectory model. It takes into account the processes of plume widening while spreading over obstacles. The method is easily adjusted on the base of a plume geometrical and transparency lidar measurements. It uses the approximation of a quasipotential flow. The model accounts the widening of a plume flowing around buildings through effects of air volumes scattering on the potentials that represent building configurations. This method was used to study air polluted zones from one of Moscow's heat power stations. !15
机译:摘要:城镇的瞬时空气污染场具有镶嵌结构,要测量其概率函数,需要一个带有大量传感器的测量网络。由于建筑物之间气流的湍流特性,不能仅通过计算机模拟来解决该问题。在本文中,我们通过同时使用激光雷达测量和计算机仿真研究了此问题。激光雷达数据用于模型参数化。为了模拟污染抽吸物在城市建筑物上的大气传输,我们开发了特殊的计算机轨迹模型。它考虑到了在障碍物上方扩散时羽流扩大的过程。该方法可在羽流几何和透明激光雷达测量的基础上轻松进行调整。它使用了一个准势流的近似值。该模型说明了风量散布对代表建筑物构型的电势的影响,导致建筑物周围流动的羽流变宽。该方法用于研究莫斯科热电厂之一的空气污染区。 !15

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