Journal of Geo-information Science, Volume. 22, Issue 3, 482(2020)
[1] [1] 伍光和, 蔡运龙. 综合自然地理学.第2版[M]. 北京: 高等教育出版社, 2004. [ Wu GH, Cai YL. Comprehensive physical geography[M]. Beijing: Higher Education Press, 2004. ] [ Wu G H, Cai Y L. Comprehensive physical geography[M]. Beijing: Higher Education Press, 2004. ]
[2] [2] 黄秉维. 现代自然地理[M]. 北京: 科学出版社, 2004. [ Huang BW. Modern physical geography[M]. Beijing: Science Press, 2004. ] [ Huang B W. Modern physical geography[M]. Beijing: Science Press, 2004. ]
[3] [3] 程东亚, 李旭东. 喀斯特地区植被覆盖度变化及地形与人口效应研究[J]. 地球信息科学学报, 2019,21(8):1227-1239. [ Cheng DY, Li XD. Vegetation coverage change in a karst area and effects of terrain and population[J]. Journal of Geo-information Science, 2019,21(8):1227-1239. ] [ Cheng D Y, Li X D. Vegetation coverage change in a karst area and effects of terrain and population[J]. Journal of Geo-information Science, 2019,21(8):1227-1239. ]
[4] [4] 汤国安, 李发源, 刘学军. 数字高程模型教程[M]. 北京: 科学出版社, 2010. [ Tang GA, Li FY, Liu XJ. Digital elevation model course[M]. Beijing: Science Press, 2010. ] [ Tang G A, Li F Y, Liu X J. Digital elevation model course[M]. Beijing: Science Press, 2010. ]
[5] et alUncertainty modelling and analysis of volume calculations based on a regular grid digital elevation model (DEM)[J]. Computers & Geosciences, 114, 117-129(2018).
[6] [6] 薛凯凯, 熊礼阳, 祝士杰, 等. 基于DEM的黄土崾岘提取及其地形特征分析[J]. 地球信息科学学报, 2018,20(12):1710-1720. [ Xue KK, XiongLY, Zhu SJ, et al. Extraction of loess dissected saddle and its terrain analysis by using digital elevation models[J]. Journal of Geoinformation Science, 2018,20(12):1710-1720. ] [ Xue K K, Xiong LY, Zhu S J, et al. Extraction of loess dissected saddle and its terrain analysis by using digital elevation models[J]. Journal of Geoinformation Science, 2018,20(12):1710-1720. ]
[7] [7] 宋朝枢. 神农架自然保护区科学考察集[M]. 北京: 中国林业出版社, 1999. [ Song CS. Scientific Investigation Collection of Shennongjia Nature Reserve[M]. Beijing: China Forestry Publishing House, 1999. ] [ Song C S. Scientific Investigation Collection of Shennongjia Nature Reserve[M]. Beijing: China Forestry Publishing House, 1999. ]
[8] [8] 沈茂才. 中国秦岭生物多样性的研究和保护[M]. 北京: 科学出版社, 2010. [ Shen MC. Research and conservation of biodiversity in the Qinling mountains of China[M]. Beijing: Science Press, 2010. ] [ Shen M C. Research and conservation of biodiversity in the Qinling mountains of China[M]. Beijing: Science Press, 2010. ]
[9] [9] 廖明尧. 神农架地区自然资源综合调查报告[M]. 北京: 中国林业出版社, 2015. [ Liao MY. Integrated investigation report on the natural resources in the Shennongjia region[M]. Beijing: China Forestry Press, 2015. ] [ Liao M Y. Integrated investigation report on the natural resources in the Shennongjia region[M]. Beijing: China Forestry Press, 2015. ]
[10] [10] 马旭东, 张苏峻, 苏志尧, 等. 车八岭山地常绿阔叶林群落结构特征与微地形条件的关系[J]. 生态学报, 2010,30(19):5151-5160. [ Ma XD, Zhang SJ, Su ZR, et al. Community structure in relation to microtopography in a montane evergreen broadleaved forest in Chebaling National Nature Reserve[J]. Acta Ecologica Sinica, 2010,30(19):5151-5160. ] [ Ma X D, Zhang S J, Su Z R, et al. Community structure in relation to microtopography in a montane evergreen broadleaved forest in Chebaling National Nature Reserve[J]. Acta Ecologica Sinica, 2010,30(19):5151-5160. ]
[11] [11] 张容, 董廷发, 邓晓保, 等. 西双版纳20公顷样地热带森林植被数量分类与排序[J]. 生态学杂志, 2018,37(2):347-352. [ ZhangR, Dong TF, Deng XB, et al. Vegetation numerical classification and ordination of a 20-hectare tropical forest plot in Xishuangbanna, southwest Yunnan[J]. Chinese Journal of Ecology, 2018,37(2):347-352. ] [ Zhang R, Dong T F, Deng X B, et al. Vegetation numerical classification and ordination of a 20-hectare tropical forest plot in Xishuangbanna, southwest Yunnan[J]. Chinese Journal of Ecology, 2018,37(2):347-352. ]
[12] [12] 张梅玲, 徐睿择. 定南县岭北矿区植被覆盖与地形因子关系分析[J]. 地理信息世界, 2018,25(4):50-55. [ Zhang ML, Xu RZ. Analysis on the relationship between vegetation coverage and landform factors in Lingbei mining area, Dingnan county[J]. Geomatics World, 2018,25(4):50-55. ] [ Zhang M L, Xu R Z. Analysis on the relationship between vegetation coverage and landform factors in Lingbei mining area, Dingnan county[J]. Geomatics World, 2018,25(4):50-55. ]
[13] [13] 赵鹏, 屈建军, 徐先英, 等. 长江源区沙化高寒草地植被群落特征及其与地形因子的关系[J]. 生态学报, 2019,39(3):1030-1040. [ ZhaoP, Qu JJ, Xu XY, et al. Study on the characteristics of sandy alpine grasslands and its relationship between plant distribution and microtopography in the source regions of Yangtze River[J]. Acta Ecologica Sinica, 2019,39(3):1030-1040. ] [ Zhao P, Qu J J, Xu X Y, et al. Study on the characteristics of sandy alpine grasslands and its relationship between plant distribution and microtopography in the source regions of Yangtze River[J]. Acta Ecologica Sinica, 2019,39(3):1030-1040. ]
[14] [14] 李亚飞, 刘高焕. 大香格里拉地区植被空间分布的环境特征[J]. 自然资源学报, 2011,26(8):1353-1363. [ Li YF, Liu GH. Environmental characteristics of vegetation spatial distribution in grand Shangri-la Region[J]. Journal of Natural Resources, 2011,26(8):1353-1363. ] [ Li Y F, Liu G H. Environmental characteristics of vegetation spatial distribution in grand Shangri-la Region[J]. Journal of Natural Resources, 2011,26(8):1353-1363. ]
[15] et alTopography as a driver of local terrestrial vascular plant diversity patterns[J]. Nordic Journal of Botany, 31, 129-144(2013).
[17] The patterns and causes of elevational diversity gradients[J]. Ecography, 35, 1-3(2012).
[20] [20] 张金屯. 数量生态学[M]. 北京: 科学出版社, 2004. [ Zhang JT. Numerical ecology[M]. Beijing: Science Press, 2004. ] [ Zhang J T. Numerical ecology[M]. Beijing: Science Press, 2004. ]
[21] On the use of principal component analysis (PCA) for evaluating interannual vegetation anomalies from spot/vegetation ndvi temporal series[J]. Ecological Modelling, 194, 429-434(2006).
[23] [23] 张东方, 张琴, 郭杰, 等. 基于MaxEnt模型的当归全球生态适宜区和生态特征研究[J]. 生态学报, 2017,37(15):5111-5120. [ Zhang DF, ZhangQ, GuoJ, et al. Research on the global ecological suitability and characteristics of regions with Angelica sinensis based on the maxent model[J]. Acta Ecologica Sinica, 2017,37(15):5111-5120. ] [ Zhang D F, Zhang Q, Guo J, et al. Research on the global ecological suitability and characteristics of regions with Angelica sinensis based on the maxent model[J]. Acta Ecologica Sinica, 2017,37(15):5111-5120. ]
[24] Maximum entropy modeling of species geographic distributions[J]. Ecological Modelling, 190, 231-259(2006).
[26] Using maximum entropy modeling for landslide susceptibility mapping with multiple geoenvironmental data sets[J]. Environmental Earth Sciences, 73, 937-949(2015).
[27] et alMaxent modeling for predicting the potential distribution of medicinal plant, Justicia adhatoda L. in Lesser Himalayan foothills[J]. Ecological Engineering, 51, 83-87(2013).
[28] [28] 丁军军. 神农架森林土壤微生物沿海拔分布格局及形成机制[D]. 北京:清华大学, 2016. [ Ding JJ. Biogeographical patterns and mechanisms of forest soil microbial community along an elevation gradient in Shennongjia National Nature Reserve[D]. Beijing: Tsinghua University, 2016. ] [ Ding J J. Biogeographical patterns and mechanisms of forest soil microbial community along an elevation gradient in Shennongjia National Nature Reserve[D]. Beijing: Tsinghua University, 2016. ]
[29] [29] 中国科学院《中国植被图》编辑委员会. 中华人民共和国植被图(1:100万)[M]. 北京: 地质出版社, 2007. [ Editorial committee of vegetation map of China, CAS. Vegetation map of the People's Republic of China (1:1 000 000) [M]. Beijing: Geological Publishing House, 2007. ] [ Editorial committee of vegetation map of China, CAS. Vegetation map of the People's Republic of China (1:1 000 000) [M]. Beijing: Geological Publishing House, 2007. ]
[30] [30] 刘爱利. 基于1:100万DEM的我国地形地貌特征研究[D]. 西安:西北大学, 2004. [ Liu AL. A research on the geomorphologic characterization of China based on the 1:1 000 000 DEM[D]. Xian: Northwest University, 2004. ] [ Liu A L. A research on the geomorphologic characterization of China based on the 1:1 000 000 DEM[D].Xian: Northwest University, 2004. ]
[31] [31] 井学辉, 曹磊, 郭仲军, 等. 阿尔泰山小东沟林区植被随地形分布规律[J]. 应用与环境生物学报, 2015,21(3):152-158. [ Jing XH, CaoL, Guo ZJ, et al. Distribution of vegetation types with topography in the Xiaodonggou forest region of Altai mountains, northwest China[J]. Chinese Journal of Applied and Environmental Biology, 2015,21(3):152-158. ] [ Jing X H, Cao L, Guo Z J, et al. Distribution of vegetation types with topography in the Xiaodonggou forest region of Altai mountains, northwest China[J]. Chinese Journal of Applied and Environmental Biology, 2015,21(3):152-158. ]
[33] Impact of DEM accuracy and resolution on topographic indices[J]. Environmental Modelling& Software, 25, 1086-1098(2010).
[34] [34] 杨帆. 基于DEM形态分析的湖南丘陵地形景观策略研究[D]. 长沙:湖南大学, 2015. [ YangF. Research on landscape strategy of Hunan Province hilly terrain based on morphological analysis in DEM[D]. Changsha: Hunan University, 2015. ] [ Yang F. Research on landscape strategy of Hunan Province hilly terrain based on morphological analysis in DEM[D]. Changsha: Hunan University, 2015. ]
[35] Runoff development and soil erosion in a wet tropical montane setting under coffee cultivation[J]. Land Degradation and Development, 28, 936-945(2016).
[36] et alEffects of tillage practice sand slope on runoff and erosion of soil from the Loess Plateau, China, subjected to simulated rainfall[J]. Soil & Tillage Research, 166, 147-156(2017).
[37] [37] 王毅, 郭跃. 喀斯特地貌区植被覆盖与地形因子的空间关系分析——以贵州普定县为例[J]. 长江流域资源与环境, 2018,27(1):157-167. [ WangY, GuoY. Analysis of spatial correlation between vegetation coverage and terrain factors in Karst landform: Taking puding area in Guizhou for example[J]. Resources and Environment in the Yangtze Basin, 2018,27(1):157-167. ] [ Wang Y, Guo Y. Analysis of spatial correlation between vegetation coverage and terrain factors in Karst landform: Taking puding area in Guizhou for example[J]. Resources and Environment in the Yangtze Basin, 2018,27(1):157-167. ]
[38] [38] 胡俊忠, 张镱锂, 于海彬. 基于MaxEnt模型和GIS的青藏高原紫花针茅分布格局模拟[J]. 应用生态学报, 2015,26(2):505-511. [ Hu JZ, Zhang YL, Yu HB. Simulation of stipa purpurea distribution pattern on Tibetan plateau based on maxent model and GIS[J]. Chinese Journal of Applied Ecology, 2015,26(2):505-511. ] [ Hu J Z, Zhang Y L, Yu H B. Simulation of stipa purpurea distribution pattern on Tibetan plateau based on maxent model and GIS[J]. Chinese Journal of Applied Ecology, 2015,26(2):505-511. ]
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Xinghang ZHANG, Baiping ZHANG, Jing WANG, Yonghui YAO, Fuqin YU.
Received: Sep. 27, 2019
Accepted: --
Published Online: Sep. 16, 2020
The Author Email: ZHANG Baiping (zhangbp@lreis.ac.cn)