[an error occurred while processing this directive] 世界地质 2020, 39(2) 452-461 DOI:   10.3969/j.issn.1004-5589.2020.02.021  ISSN: 1004-5589 CN: 22-1111/P

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本文关键词相关文章
四平市
景观格局演变
驱动力
逻辑回归
本文作者相关文章
马萍
王冬艳
PubMed
Article by Ma P
Article by Wang D
基于逻辑回归模型的四平市景观格局演变及其驱动力分析
马萍, 王冬艳
吉林大学地球科学学院, 长春 130061
摘要: 为研究近30 a来四平市景观格局的演变并分析其主要驱动力。笔者选取1990、2000、2010和2018年Landsat TM/ETM遥感解译数据,从类型和景观水平方面分析四平市近30 a来的景观格局指数和景观类型转移、演变趋势,采用Logistic回归模型揭示四平市景观格局演变的主要驱动力。结果表明:①四平市景观格局中耕地所占面积最大,为主要优势基质景观类型,对维持区域生态系统稳定起决定性作用,其次分别为林地景观、水域景观、城镇景观和草地景观;②近30 a来四平市景观破碎化程度增加,景观形状整体上趋于简单化,景观连接性和多样性增加,但景观均匀度下降;③ 1990—2018年林地向耕地和草地转化,草地主要转移为林地、耕地和未利用地,土地整体呈现逐年退化的趋势;④近30 a来四平市景观格局演变受自然因子(坡度、高程、距河流距离和距道路距离)和人为因子(人口和GDP)综合的作用。
关键词 四平市   景观格局演变   驱动力   逻辑回归  
Analysis of landscape pattern evolution and its driving force in Siping City based on logistic regression model
MA Ping, WANG Dong-yan
College of Earth Sciences, Jilin University, Changchun 130061, China
Abstract: In order to study the landscape pattern evolution of Siping in recent 30 years and analyze its main driving force, Landsat TM/ETM remote sensing interpretation data of 1990, 2000, 2010 and 2018 were selected to analyze the landscape pattern index, landscape type transfer and evolution trend of Siping City in the past 30 years in terms of type and landscape level. Logistic regression model was used to reveal the main driving force of landscape pattern evolution in Siping. The results show that:① The cultivated land occupies the largest area in the landscape pattern of Siping, which is the main dominant substrates landscape type and plays a decisive role in maintaining the stability of the regional ecosystem,the rest of part is the landscape of forest, water, town and grassland.② In the past 30 years, the landscape fragmentation in Siping has increased, the overall landscape shape tends to be simplified, and the landscape connectivity and diversity have increased, but the landscape uniformity has decreased.③ From 1990 to 2018, forest land was transformed into cultivated land and grassland, and grassland was mainly transferred to forest land, cultivated land and unused land. The land as a whole showed a trend of degradation year by year.④ In the past 30 years, the landscape pattern evolution of Siping has been influenced by natural factors (slope, elevation and distance from river and road) and human factors (population and GDP).
Keywords: Siping City   landscape pattern evolution   driving force   logistic regression  
收稿日期 2019-12-16 修回日期 2020-03-07 网络版发布日期  
DOI: 10.3969/j.issn.1004-5589.2020.02.021
基金项目:

吉林省自然科学基金项目(20170101076JC)与吉林省发展改革委员会项目(2017C028-2)联合资助。

通讯作者: 王冬艳(1967-),女,教授,主要从事土地资源管理与评价等方面的研究。E-mail:wang_dy@jlu.edu.cn
作者简介:
作者Email: wang_dy@jlu.edu.cn

参考文献:
[1] Tratalos J, Fuller R A, Warren P H, et al. Urban form, biodiversity potential and ecosystem services[J]. Landscape and Urban Planning, 2007, 83(4):308-317.
[2] Grimm N B, Faeth S H, Golubiewski N E, et al. Global change and the ecology of cities[J]. Science, 2008, 319(5864):756-760.
[3] 陈利顶,孙然好,刘海莲.城市景观格局演变的生态环境效应研究进展[J].生态学报,2013,33(4):1042-1050. CHEN Li-ding, SUN Ran-hao, LIU Hai-lian. Eco-environmental effects of urban landscape pattern changes:progresses, problems, and perspectives[J]. Acta Ecologica Sinica, 2013, 33(4):1042-1050.
[4] Lovell S T, Johnston D M. Creating multifunctional landscapes:how can the field of ecology inform the design of the landscape?[J]. Frontiers in Ecology and the Environment, 2009, 7(4):212-220.
[5] Liu Y B, Yao C S, Wang G X, et al. An integrated sustainable development approach to modeling the eco-environmental effects from urbanization[J]. Ecological Indicators, 2011,11(6):1599-1608.
[6] 曾辉,江子瀛,喻红,等.深圳市龙华地区快速城市化过程中的景观结构研究Ⅲ农业用地结构及异质性分析[J].北京大学学报(自然科学版),2000,36(2):221-230. ZENG Hui, JIANG Zi-ying, YU Hong, et al. Landscape structure study of Longhua area in Shenzhen City during the fast urbanization process Ⅲ structure and heterogeneity analysis of farmland[J]. Acta Scientiarum Naturalium Universitatis Pekinensis, 2000,36(2):221-230.
[7] 岳文泽,徐建华,徐丽华.基于遥感影像的城市土地利用生态环境效应研究:以城市热环境和植被指数为例[J].生态学报,2006,26(5):1450-1460. YUE Wen-ze, XU Jian-hua, XU Li-hua. An analysis on eco-environmental effect of urban land use based on remote sensing images:a case study of urban thermal environment and NDVI[J]. Acta Ecologica Sinica, 2006, 26(5):1450-1460.
[8] Strohbach M W, Haase D. Above-ground carbon storage by urban trees in Leipzig, Germany:analysis of patterns in a European city[J]. Landscape and Urban Planning, 2012, 104(1):95-104.
[9] 孙天成,刘婷婷,褚琳,等.三峡库区典型流域"源" "汇"景观格局时空变化对侵蚀产沙的影响[J].生态学报,2019,39(20):7476-7492. SUN Tian-cheng, LIU Ting-ting, CHU Lin, et al. Effects of temporal and spatial variations in source-sink landscape patterns on soil erosion and sediment yield from typical watershed in the Three Gorges Reservoir area, China[J]. Acta Ecologica Sinica, 2019, 39(20):7476-7492.
[10] 邵蕊,田建茹,李伟娜,等.基于无人机影像的自然-人工复合生态系统景观格局定量分析[J].林业资源管理,2019,41(3):151-156. SHAO Rui,TIAN Jian-ru,LI Wei-na, et al. Quantitative analysis on landscape patterns of natural-artificial complex ecosystem based on UAV image[J]. Forest Resources Management, 2019, 41(3):151-156.
[11] 邓清,欧朝蓉,邓志华,等.勐海县景观格局变化及驱动因素分析[J].西南林业大学学报(自然科学),2019,39(5):118-126. DENG Qing, OU Chao-rong, DENG Zhi-hua, et al. Changes of landscape pattern and driving factors in Menghai[J]. Journal of Southwest Forestry University (Natural Sciences), 2019, 39(5):118-126.
[12] 闫晓露,钟敬秋,韩增林,等.近40年辽东湾北部围垦区内外滨海湿地景观演替特征及驱动力分析[J].地理科学,2019,39(7):1155-1165. YAN Xiao-lu, ZHONG Jing-qiu, HAN Zeng-lin, et al. Driving forces analysis and landscape succession features of coastal wetland both outside and inside reclamation areas in the northern Liaodong Bay, China in recent 40 years[J]. Scientia Geographica Sinica, 2019, 39(7):1155-1165.
[13] 黄犁,徐丽萍.玛纳斯河流域绿洲时空演变及其景观格局变化[J].干旱区研究,2019,36(5):1261-1269. HUANG Li, XU Li-ping. Spatiotemporal evolution of the oasis and change of landscape pattern in the Manas River Basin[J]. Arid Zone Research, 2019, 36(5):1261-1269.
[14] 吴茂全,胡蒙蒙,汪涛,等.基于生态安全格局与多尺度景观连通性的城市生态源地识别[J].生态学报,2019,39(13):4720-4731. WU Mao-quan, HU Meng-meng, WANG Tao, et al. Recognition of urban ecological source area based on ecological security pattern and multi-scale landscape connectivity[J]. Acta Ecologica Sinica,2019,39(13):4720-4731.
[15] 张婷婷,郑喜珅.基于生态足迹的四平市土地生态安全评价研究[J].上海国土资源,2016,37(2):17-20. ZHANG Ting-ting, ZHENG Xi-shen. Evaluation of land ecological security in Siping based on ecological footprint[J]. Shanghai Land & Resources, 2016,37(2):17-20.
[16] 陈鹏,张立峰,孙滢悦,等. 1997-2005年四平市生态足迹计算与分析研究[J].农业灾害研究,2015,5(10):47-49. CHEN Peng, ZHANG Li-feng, SUN Ying-yue, et al. Calculation and analysis on ecological footprint of Siping City in 1997-2005[J]. Journal of Agricultural Catastrophology,2015,5(10):47-49.
[17] 李艾玉,刘吉平,于佳,等.近30年四平市土地利用时空变化及生态环境效应[J].浙江农业科学,2014,56(7):1082-1087. LI Ai-yu, LIU Ji-ping, YU Jia, et al. Spatial and temporal changes of land use and ecological and environmental effects in Siping nearly thirty years[J]. Journal of Zhejiang Agricultural Sciences, 2014, 56(7):1082-1087.
[18] 刘骏杰,陈璟如,来燕妮,等.基于景观格局和连接度评价的生态网络方法优化与应用[J].应用生态学报,2019,30(9):3108-3118. LIU Jun-jie, CHEN Jing-ru, LAI Yan-ni, et al. Improvement and application for ecological networks using landscape pattern and connectivity methods[J]. Chinese Journal of Applied Ecology, 2019, 30(9):3108-3118.
[19] 地理空间数据云.Landsat TM/ETM数据集[DB/OL].[2019-01-18].http://www.gscloud.cn/search#dlv. Geospatial Data Cloud. Landsat TM/ETM data set[DB/OL].[2019-01-18].http://www.gscloud.cn/search#dlv.
[20] 岳健,张雪梅.关于我国土地利用分类问题的讨论[J].干旱区地理,2003,26(1):78-88. YUE Jian, ZHANG Xue-mei. A discussion on the classification of land use in China[J]. Arid Land Geography, 2003,26(1):78-88.
[21] 中国气象数据网.地面资料[DB/OL].[2019-03-22]. https://data.cma.cn/data/.html. The China Meteorological Data Service Center. Surface[DB/OL].[2019-03-22]. https://data.cma.cn/data/.html.
[22] 吉林省统计局.四平市统计年鉴[DB/OL].[2019-04-10].http://tjj.jl.gov.cn. Statistic Bureau of Jilin. Siping statistical yearbook[DB/OL].[2019-04-10]. http://tjj.jl.gov.cn.
[23] 傅伯杰,陈利顶,马克明,等.景观生态学原理及应用[M].北京:科学出版社,2001:7-8. FU Bo-jie, CHEN Li-ding, MA Ke-ming, et al. Principles and applications of landscape ecology[M]. Beijing:Science Press, 2001:7-8.
[24] 邬建国.景观生态学:格局、过程、尺度与等级[M].北京:高等教育出版社,2000:96-153. WU Jian-guo. Landscape ecology:pattern, process, scale and hierarchy[M]. Beijing:Higher Education Press, 2000:96-153.
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