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Spatio-Temporal Modelling of Dust Transport over Surface Mining Areas and Neighbouring Residential Zones

机译:露天矿区及邻近居民区粉尘运移的时空模型

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Projects focusing on spatio-temporal modelling of the living environment need to manage a wide range of terrain measurements, existing spatial data, time series, results of spatial analysis and inputs/outputs from numerical simulations. Thus, GISs are often used to manage data from remote sensors, to provide advanced spatial analysis and to integrate numerical models. In order to demonstrate the integration of spatial data, time series and methods in the framework of the GIS, we present a case study focused on the modelling of dust transport over a surface coal mining area, exploring spatial data from 3D laser scanners, GPS measurements, aerial images, time series of meteorological observations, inputs/outputs form numerical models and existing geographic resources. To achieve this, digital terrain models, layers including GPS thematic mapping, and scenes with simulation of wind flows are created to visualize and interpret coal dust transport over the mine area and a neighbouring residential zone. A temporary coal storage and sorting site, located near the residential zone, is one of the dominant sources of emissions. Using numerical simulations, the possible effects of wind flows are observed over the surface, modified by natural objects and man-made obstacles. The coal dust drifts with the wind in the direction of the residential zone and is partially deposited in this area. The simultaneous display of the digital map layers together with the location of the dominant emission source, wind flows and protected areas enables a risk assessment of the dust deposition in the area of interest to be performed. In order to obtain a more accurate simulation of wind flows over the temporary storage and sorting site, 3D laser scanning and GPS thematic mapping are used to create a more detailed digital terrain model. Thus, visualization of wind flows over the area of interest combined with 3D map layers enables the exploration of the processes of coal dust deposition at a local scale. In general, this project could be used as a template for dust-transport modelling which couples spatial data focused on the construction of digital terrain models and thematic mapping with data generated by numerical simulations based on Reynolds averaged Navier-Stokes equations.
机译:专注于居住环境时空建模的项目需要管理广泛的地形测量,现有空间数据,时间序列,空间分析结果以及数值模拟的输入/输出。因此,GIS通常用于管理来自远程传感器的数据,以提供高级空间分析并集成数值模型。为了证明在GIS框架中空间数据,时间序列和方法的集成,我们提供了一个案例研究,重点研究了露天煤矿开采区域的粉尘运移建模,探索来自3D激光扫描仪的空间数据,GPS测量,航空影像,气象观测的时间序列,输入/输出形成数值模型和现有的地理资源。为此,创建了数字地形模型,包括GPS专题地图的图层以及模拟风流的场景,以可视化和解释矿区和邻近居民区上的煤尘运输。位于居民区附近的临时煤炭储存和分拣场是主要的排放源之一。使用数值模拟,可以观察到风在表面上的可能影响,并受到自然物体和人造障碍物的影响。煤尘随风向居住区方向漂移,并部分沉积在该区域中。同时显示数字地图图层以及主要排放源,风向和受保护区域的位置,可以对感兴趣区域中的粉尘沉积进行风险评估。为了获得对临时存储和分类站点上的风流的更准确的模拟,使用3D激光扫描和GPS专题映射来创建更详细的数字地形模型。因此,将感兴趣区域上的风流可视化并结合3D地图图层,可以在局部范围内探索煤尘沉积过程。通常,该项目可以用作尘埃运输模型的模板,该模型将专注于数字地形模型和主题映射的空间数据与基于雷诺平均Navier-Stokes方程的数值模拟生成的数据结合起来。

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