改进利用GIS技术评估土壤侵蚀的方法

A. Assylbekova, Z. Mukaliyev, N. Zhengissova
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无论哈萨克斯坦当局如何宣传该国的石油和天然气“丰富”,它过去是,现在仍然是一个农业国,因此它的主要资源是土地。不幸的是,目前由于违反农业技术、不遵守水制度、缺乏土地复垦资金、农业文化水平低、农业教育薄弱和自然因素的影响,该国三分之二的领土上的土壤侵蚀加剧。土壤是取之不尽、用之不竭的自然资源,在全球粮食生产中发挥着重要作用。据估计,有26亿人受到土壤退化和荒漠化的影响,这意味着100多个国家受到地球表面33%以上面积的影响。除非采取新的措施,否则到2050年,人均耕地和肥沃土地总量将仅为1960年的四分之一。利用地理信息系统(GIS)、地球遥感(ERS)和光谱指数(SI)对Semey试验场区域的土壤侵蚀倾向性进行了评价。在这些方法的基础上,开发了研究区SI图、结合gis技术和遥感的土壤侵蚀评估图,并提出了土壤侵蚀评估模型。
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Improving approaches to assessing soil erosion using GIS technologies
Regardless of how much the Kazakhstan authorities advertise the country’s oil and gas “abundance”, it was and remains an agrarian country, and thus its main resource is land. Unfortunately, nowadays because of violation of agricultural technology, non-observance of water regime, lack of funds for land reclamation, low culture of farming, weak agricultural education and influence of natural factors, soil erosion is aggravated on two thirds of the territory of the country. Soil is an inexhaustible natural resource that plays an important role in global food production. It is estimated that 2.6 billion people suffer from soil degradation and desertification this means that over one hundred countries suffer from over 33% of the Earth’s surface. Unless new approaches are implemented, the total arable and fertile land per capita in 2050 will be only a quarter of what it was in 1960. The article aims to assess the soil erosion propensity of the Semey test site territory using Geographic Information System (GIS), Earth Remote Sensing (ERS), and Spectral Indices (SI). In the course of these studies, the SI maps of the study area, soil erosion assessment maps combined with GIS-technology and remote sensing of the studied mathematical models and proposed a model for assessing soil erosion were developed on the basis of these methods.
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