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潞安矿区景观尺度的土地质量定量评价初探
引用本文:李保杰, 渠爱雪, 纪亚洲. 基于最佳分析粒度的矿区景观格局分析[J]. 武汉大学学报 ( 信息科学版), 2016, 41(7): 939-945. DOI: 10.13203/j.whugis20140269
作者姓名:李保杰  渠爱雪  纪亚洲
作者单位:1.江苏师范大学城市与环境学院, 江苏 徐州, 221116
基金项目:国家自然科学基金(41101158);江苏省高校自然科学研究(14KJB170004,13KJB170003);江省社科应用研究精品工程(14SWC-117);徐州市哲学社会科学研究课题(14XSZ-053);徐州市科技情报研究计划;江苏高校优势学科建设工程。
摘    要:以徐州市贾汪矿区1983年、1993年、2003年和2013年4期Landsat影像为数据源,综合景观格局指数粒度效应和信息损失评价法,确定了贾汪矿区景观格局指数的最佳分析粒度为60 m。在该粒度下,基于景观水平和斑块水平对区域景观格局演化进行分析。结果表明,在景观水平上,2003年以前,区域景观格局在煤炭资源的开采、城市化等的驱动下,景观格局呈破碎化、异质化和连通性降低的趋势;2003年以后,由于矿区土地复垦项目的实施、城乡统筹发展和区域连片发展,使区域景观格局呈连续化、均衡化和连通性增大的趋势。在景观类型尺度上,耕地、建设用地和水域随时间的变化最为活跃,1983~2003年间,耕地、水域受煤炭资源开采等活动的影响,斑块趋于破碎化,连通性降低,而建设用地在城市化发展的驱动下,变得更为复杂;2003~2013年间,耕地、水域和建设用地呈现高连通性、斑块规则化的趋势。

关 键 词:矿区  景观格局变化  最佳分析粒度
收稿时间:2015-03-20

Preliminary Study on Landscape-scale Land Quality Quantitative Assessment in Lu'an Mining Area
LI Baojie, QU Aixue, JI Yazhou. Landscape Pattern Analysis for Mining Area Based on Optimal Grain Size[J]. Geomatics and Information Science of Wuhan University, 2016, 41(7): 939-945. DOI: 10.13203/j.whugis20140269
Authors:LI Baojie  QU Aixue  JI Yazhou
Affiliation:1.College of Urban and Environmental Science, Jiangsu Normal University, Xuzhou 221116, China
Abstract:The 60 m was determined as the optimal grain size for landscape pattern analysis with the methods of landscape index grain effect analysis and data loss assessment based on the Landsat images in 1983, 1993, 2003 and 2013 in Jiawang mining area. Landscape pattern change including patch level index and landscape level index was analyzed in this paper based on the optimal grain size. The results show that the regional landscape pattern including landscape level index showed the trends of gradual fragmentation, heterogeneity and connectivity downward driven by exploiting coal resources and urbanization before 2003, while the landscape pattern including landscape level index showed trends of continuous, equalization and connectivity index showed the trends of increase driven by the implementation of mine land reclamation projects, balancing urban and rural development as well as regional development since 2003. Farmland, construction land and water landscape patches changed actively with the time. The landscape pattern including patch level index showed trends of fragmentation, connectivity decreased driven by coal mining and other activities which changed more complex driven by urbanization during the period of 1983-2003.Construction land and water landscape patches showed the trends of high connectivity, patch regularization during the period of 2003-2013.
Keywords:mining  landscape pattern change  optimal grain size
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