COUPLING CELLULAR AUTOMATA WITH MEDALUS ASSESSMENT FOR THE DESERTIFICATION ISSUE

A. Koné, Allyx Fontaine, S. Yacoubi
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引用次数: 1

Abstract

Desertification is one of the major problems affecting our environment in the 21st century. Indeed, it threatens more than 1.5 million people worldwide and affects a quarter of the land in less than 100 countries, it spreads over half a billion hectares per year and reduces the surface water and groundwater. Thus, according to a report by the Food and Agriculture Organisation written in 1993, the direct and visible impacts of desertification are the damage on crops, on livestock, on the electricity productivity, etc. Indirect impacts are lack of food production, poverty, social upheaval, rural exodus to cities. In this paper, our work consists in modelling the degradation process of land whose advanced level leads to the desertification. The first step consists in assessing the degradation of land with the MEDALUS model developed by the MEDALUS project of the commission of the European Union. This model assesses desertification by its sensitivity index which is the geometric mean of four quality factor indexes of soil, vegetation, climate and management (land use). This assessment method uses the major part of the parameters influencing the land degradation process. The second step is to model the land degradation process using cellular automata (CA) approach. For that purpose, the study area will be divided into a regular grid of cells. Initially, each cell has a state (desertification sensitivity index) whose evolution at each discrete time step depends on the states of its neighbours through a built transition function. As a result, this study allows to introduce a dynamical process in MEDALUS model. Indeed, from an initial configuration of an area, the model can predict its evolution over time and space according to a continuous state transition function that extend the classical CA approach and fit to the MEDALUS model parameters.
沙漠化问题元胞自动机与奖章评价的耦合
荒漠化是21世纪影响我们环境的主要问题之一。事实上,它威胁着全世界150多万人,影响着不到100个国家四分之一的土地,它每年蔓延超过5亿公顷,并减少地表水和地下水。因此,根据联合国粮农组织1993年撰写的一份报告,沙漠化的直接和明显影响是对作物、牲畜、电力生产力等的损害。间接影响是粮食生产不足、贫困、社会动荡、农村人口向城市迁移。在本文中,我们的工作是模拟土地的退化过程,其先进水平导致荒漠化。第一步是利用欧洲联盟委员会MEDALUS项目开发的MEDALUS模型评估土地退化情况。该模型通过土壤、植被、气候和土地利用等4个质量因子的几何平均值来评价沙漠化的敏感性指数。该评价方法利用了影响土地退化过程的主要参数。第二步是利用元胞自动机(CA)方法建立土地退化过程模型。为此,研究区域将被划分为一个规则的网格单元。最初,每个细胞都有一个状态(沙漠化敏感性指数),其在每个离散时间步长的演变取决于其邻居的状态,通过构建过渡函数。因此,本研究允许在MEDALUS模型中引入一个动态过程。事实上,从一个区域的初始配置,该模型可以根据一个连续的状态转移函数来预测其随时间和空间的演变,该函数扩展了经典的CA方法并适合MEDALUS模型参数。
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