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Land use and cover change and influencing factor analysis in the Shiyang River Basin,China
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作者 ZHAO Yaxuan CAO Bo +4 位作者 SHA Linwei CHENG Jinquan ZHAO Xuanru guan weijin PAN Baotian 《Journal of Arid Land》 SCIE CSCD 2024年第2期246-265,共20页
Land use and cover change(LUCC)is the most direct manifestation of the interaction between anthropological activities and the natural environment on Earth's surface,with significant impacts on the environment and ... Land use and cover change(LUCC)is the most direct manifestation of the interaction between anthropological activities and the natural environment on Earth's surface,with significant impacts on the environment and social economy.Rapid economic development and climate change have resulted in significant changes in land use and cover.The Shiyang River Basin,located in the eastern part of the Hexi Corridor in China,has undergone significant climate change and LUCC over the past few decades.In this study,we used the random forest classification to obtain the land use and cover datasets of the Shiyang River Basin in 1991,1995,2000,2005,2010,2015,and 2020 based on Landsat images.We validated the land use and cover data in 2015 from the random forest classification results(this study),the high-resolution dataset of annual global land cover from 2000 to 2015(AGLC-2000-2015),the global 30 m land cover classification with a fine classification system(GLC_FCS30),and the first Landsat-derived annual China Land Cover Dataset(CLCD)against ground-truth classification results to evaluate the accuracy of the classification results in this study.Furthermore,we explored and compared the spatiotemporal patterns of LUCC in the upper,middle,and lower reaches of the Shiyang River Basin over the past 30 years,and employed the random forest importance ranking method to analyze the influencing factors of LUCC based on natural(evapotranspiration,precipitation,temperature,and surface soil moisture)and anthropogenic(nighttime light,gross domestic product(GDP),and population)factors.The results indicated that the random forest classification results for land use and cover in the Shiyang River Basin in 2015 outperformed the AGLC-2000-2015,GLC_FCS30,and CLCD datasets in both overall and partial validations.Moreover,the classification results in this study exhibited a high level of agreement with the ground truth features.From 1991 to 2020,the area of bare land exhibited a decreasing trend,with changes primarily occurring in the middle and lower reaches of the basin.The area of grassland initially decreased and then increased,with changes occurring mainly in the upper and middle reaches of the basin.In contrast,the area of cropland initially increased and then decreased,with changes occurring in the middle and lower reaches.The LUCC was influenced by both natural and anthropogenic factors.Climatic factors and population contributed significantly to LUCC,and the importance values of evapotranspiration,precipitation,temperature,and population were 22.12%,32.41%,21.89%,and 19.65%,respectively.Moreover,policy interventions also played an important role.Land use and cover in the Shiyang River Basin exhibited fluctuating changes over the past 30 years,with the ecological environment improving in the last 10 years.This suggests that governance efforts in the study area have had some effects,and the government can continue to move in this direction in the future.The findings can provide crucial insights for related research and regional sustainable development in the Shiyang River Basin and other similar arid and semi-arid areas. 展开更多
关键词 land use and cover classification land use and cover change(LUCC) climate change random forest accuracy assessment three-dimensional sampling method Shiyang River Basin
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冰川运动速度研究:方法、变化、问题与展望 被引量:8
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作者 管伟瑾 曹泊 潘保田 《冰川冻土》 CSCD 北大核心 2020年第4期1101-1114,共14页
冰川运动将积累区获得的物质输送到消融区,维持着冰川的动态平衡。近年来,随着气候变化,全球大部分冰川面临着剧烈的退缩,而冰川运动变化则较为复杂,引起了学者们的广泛关注。文章系统总结了近年来冰川运动速度的提取方法、冰川运动速... 冰川运动将积累区获得的物质输送到消融区,维持着冰川的动态平衡。近年来,随着气候变化,全球大部分冰川面临着剧烈的退缩,而冰川运动变化则较为复杂,引起了学者们的广泛关注。文章系统总结了近年来冰川运动速度的提取方法、冰川运动速度时空分布与变化及其影响因素的相关研究进展。另外,还探讨了目前冰川运动速度研究中存在的问题和未来的发展趋势。结果表明:基于测杆的方法能够获得精度较高的测量数据,但存在时间和空间上的局限性;基于遥感数据自动化提取的方法应用广泛,但影像之间的配准以及海量数据的计算是当前阶段制约冰川运动速度研究的主要问题;近年来,无人机和地基合成孔径雷达的应用为冰川运动速度研究提供了高精度的数据支撑,但二者在冰川运动研究中的应用还不够广泛。冰川运动速度的分布及其变化在空间上存在明显差异,冰川厚度的变化可能是全球大部分冰川运动速度变化的主要原因,但在单个冰川系统上,冰川运动速度变化较为复杂,其原因还需要进一步探讨。遥感数据的不断丰富,云计算平台的使用,物联网、无人机和地基合成孔径雷达等技术的不断普及,以及星、空、地协同观测的出现将会极大促进未来冰川运动速度研究的发展。此外,冰川动力学过程也将备受关注,成为未来冰川运动研究的热点问题。 展开更多
关键词 冰川运动速度 运动速度提取方法 运动速度变化
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