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Simulating Rainfall, Water Evaporation and Groundwater Flow in Three-Dimensional Satellite Images with Cellular Automata

机译:用元胞自动机模拟三维卫星影像中的降雨,水蒸发和地下水流动

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摘要

Remote sensing has been used in numerous environmental simulations with the aim of solving and improving many different kinds of problems, e.g., meteorology applications, soil quality studies, water resource exploration, and environmental protection. Besides, cellular automata have been widely used in the field of remote sensing for simulating natural phenomena over two-dimensional satellite images. However, simulations on Digital Elevation Models (DEM), or three-dimensional (3D) satellite images, are scarce. This paper presents a study of modeling and simulation of the weather phenomena of rainfall, water evaporation and groundwater flow in 3D satellite images through a new algorithm, developed by the authors, named RACA (Rainfall with Cellular Automata). The purpose of RACA is to obtain, from the simulation, numerical and 3D results related to the total cumulative flow and maximum level of water that allow us to make decisions on important issues such as analyzing how climate change will affect the water level in a particular area, estimating the future water supply of a population, establishing future construction projects and urban planning away from locations with high probability of flooding, or preventing the destruction of property and human life from future natural disasters in urban areas with probability of flooding.
机译:遥感已用于许多环境模拟中,目的是解决和改善许多不同种类的问题,例如气象应用,土壤质量研究,水资源勘探和环境保护。此外,元胞自动机已广泛用于遥感领域,以模拟二维卫星图像上的自然现象。但是,缺乏对数字高程模型(DEM)或三维(3D)卫星图像的仿真。本文通过作者开发的一种新算法RACA(具有元胞自动机的降雨),对3D卫星图像中的降雨,水蒸发和地下水流动的天气现象进行了建模和仿真研究。 RACA的目的是从模拟中获得与总累积流量和最大水位相关的数值和3D结果,使我们能够对重要问题做出决策,例如分析气候变化将如何影响特定水位。区域,估计未来人口的供水,在洪灾发生可能性高的地区以外的地方建立未来的建设项目和城市规划,或者在洪灾发生的可能性大的城市地区预防自然灾害对财产和人类生命的破坏。

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