根据卫星数据分析人类活动对北里海地区荒漠化进程的影响

IF 0.9 4区 地球科学 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Izvestiya Atmospheric and Oceanic Physics Pub Date : 2023-12-01 DOI:10.1134/s0001433823090177
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引用次数: 0

摘要

摘要 牧场负载是干旱地区植被和土壤覆盖状况动态变化的关键人为因素之一。本研究的目的是利用空间遥感数据、地理信息技术和统计数据确定乔尔耶泽姆利地区牧草负荷的空间分布。这项工作对 1984-1986 年和 2020 年的畜牧场、羊圈和其他牲畜集中地进行了测绘。这两个时期的特点都是沙漠化进程激增,露天沙地和塌陷地面积急剧增加。研究确定了放牧期间不同负荷的牧场面积;还确定了流动沙地的空间分布模式,这取决于成土岩石和与畜牧场的距离。与 1984-1986 年相比,近年来沙质土壤上的农场密度有所增加,这导致了过度放牧、植被破坏和风化过程的启动。约 80% 的牧场超过了允许放牧的标准,90% 的牧场位于牲畜集中地周围 3 公里的区域内。研究结果可用于调节该地区的牧草负荷,防止地貌荒漠化。
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Analysis of Anthropogenic Influence on Desertification Processes in the Northern Caspian Region According to Satellite Data

Abstract

Pasture loads are one of the key anthropogenic factors in the dynamics of the state of vegetation and soil cover of arid landscapes. The purpose of this study is to establish the spatial distribution of pasture loads in the Chyornye Zemli region using remote sensing data from space, geoinformation technologies, and statistical data. Mapping of livestock farms, sheepfolds, and other places of concentration of livestock for 1984–1986 and 2020 is carried out in this work. Both periods are characterized by a surge in desertification processes and a sharp increase in the areas of open sands and deflated lands. The areas of pastures with different loads during cattle grazing are established; patterns of spatial distribution of mobile sands depending on soil-forming rocks and distance from livestock farms are also determined. In recent years, compared with 1984–1986, the density of farms on sandy soils has increased, which has led to overgrazing, the destruction of vegetation, and the activation of Aeolian processes. Approximately 80% of pastures exceeded the permissible grazing standards, and 90% of pastures are located in a 3-km zone around the places of concentration of livestock. The results can be used to regulate pasture loads in the region to prevent the desertification of landscapes.

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来源期刊
CiteScore
1.40
自引率
28.60%
发文量
56
审稿时长
6-12 weeks
期刊介绍: Izvestiya, Atmospheric and Oceanic Physics is a journal that publishes original scientific research and review articles on vital issues in the physics of the Earth’s atmosphere and hydrosphere and climate theory. The journal presents results of recent studies of physical processes in the atmosphere and ocean that control climate, weather, and their changes. These studies have possible practical applications. The journal also gives room to the discussion of results obtained in theoretical and experimental studies in various fields of oceanic and atmospheric physics, such as the dynamics of gas and water media, interaction of the atmosphere with the ocean and land surfaces, turbulence theory, heat balance and radiation processes, remote sensing and optics of both media, natural and man-induced climate changes, and the state of the atmosphere and ocean. The journal publishes papers on research techniques used in both media, current scientific information on domestic and foreign events in the physics of the atmosphere and ocean.
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