[1]Zhang Fuqing,Wei Xiaojian,Xie Mingrui,et al.Multi-scale Nesting Analysis of Ecological Network in Nanchang City Based on Comprehensive Sources Identification[J].Research of Soil and Water Conservation,2024,31(04):408-418.[doi:10.13869/j.cnki.rswc.2024.04.020]
Copy

Multi-scale Nesting Analysis of Ecological Network in Nanchang City Based on Comprehensive Sources Identification

References:
[1]Bathiany S, Dakos V, Scheffer M, et al. Climate models predict increasing temperature variability in poor countries[J]. Science Advances, 2018,4(5):eaar5809.
[2]Bennett A F. Habitat corridors and the conservation of small mammals in a fragmented forest environment[J]. Landscape Ecology, 1990,4(2):109-122.
[3]陈竹安,马彬彬,危小建,等.基于MSPA和MCR模型的南昌市生态网络构建与优化[J].水土保持通报,2021,41(6):139-147.
Chen Z A, Ma B B, Wei X J, et al. Construction and optimization of ecological network of Nanchang City based on MSPA and MCR model[J]. Bulletin of Soil and Water Conservation, 2021,41(6):139-147.
[4]傅强,顾朝林.基于生态网络的生态安全格局评价[J].应用生态学报,2017,28(3):1021-1029.
Fu Q, Gu C L. Delineation of ecological security pattern based on ecological network[J]. Chinese Journal of Applied Ecology, 2017,28(3):1021-1029.
[5]彭建,吕丹娜,董建权,等.过程耦合与空间集成:国土空间生态修复的景观生态学认知[J].自然资源学报,2020,35(1):3-13.
Peng J, Lyu D N, Dong J Q, et al. Processes coupling and spatial integration:Characterizing ecological restoration of territorial space in view of landscape ecology[J]. Journal of Natural Resources, 2020,35(1):3-13.
[6]彭建,李慧蕾,刘焱序,等.雄安新区生态安全格局识别与优化策略[J].地理学报,2018,73(4):701-710.
Peng J, Li H L, Liu Y X, et al. Identification and optimization of ecological security pattern in Xiong'an New Area[J]. Acta Geographica Sinica, 2018,73(4):701-710.
[7]周小丹,胡秀艳,王君櫹,等.江苏省土地生态网络规划中源地的选取研究[J].长江流域资源与环境,2020,29(8):1746-1756.
Zhou X D, Hu X Y, Wang J X, et al. Study on the selection of source sites in the land ecological network planning of Jiangsu Province[J]. Resources and Environment in the Yangtze Basin, 2020,29(8):1746-1756.
[8]陈艳,马月伟,潘健峰,等.顾及石漠化敏感性的山地型城市生态网络构建:以云南省曲靖市为例[J].生态学报,2023,43(17):7060-7071.
Chen Y, Ma Y W, Pan J F, et al. Ecological network construction of mountainous cities considering rocky desertification sensitivity:A case study of Qujing City, Yunnan Province[J]. Acta Ecologica Sinica, 2023,43(17):7060-7071.
[9]武子豪,张金懿,帕茹克·吾斯曼江,等.县域生态网络构建与优化研究:以河北省曲周县为例[J].中国农业大学学报,2022,27(7):221-234.
Wu Z H, Zhang J Y, Wusimanjiang P, et al. Construction and optimization of county ecological network:A case study of Quzhou County in Hebei Province[J]. Journal of China Agricultural University, 2022,27(7):221-234.
[10]郭熠栋.武汉市多尺度绿色网络规划研究[D].武汉:华中科技大学,2019.
Guo Y D. Research on Multi-Scale Green Network Planning in Wuhan[D]. Wuhan:Huazhong University of Science and Technology, 2019.
[11]刘思.芜湖市多尺度生境网络构建研究[D].南京:东南大学,2017.
Liu S. The Study of Multi-Scale Habitat Network Planning of Wuhu City[D]. Nanjing:Southeast University, 2017.
[12]朱捷,苏杰,尹海伟,等.基于源地综合识别与多尺度嵌套的徐州生态网络构建[J].自然资源学报,2020,35(8):1986-2001.
Zhu J, Su J, Yin H W, et al. Construction of Xuzhou ecological network based on comprehensive sources identification and multi-scale nesting[J]. Journal of Natural Resources, 2020,35(8):1986-2001.
[13]Dong J Q, Peng J, Xu Z H, et al. Integrating regional and interregional approaches to identify ecological security patterns[J]. Landscape Ecology, 2021,36(7):2151-2164.
[14]魏文飞,包玉,王志泰,等.喀斯特多山城市生境质量对土地利用变化的时空响应:以贵阳市为例[J].生态学报,2023,43(10):3920-3935.
Wei W F, Bao Y, Wang Z T, et al. Spatio-temporal responses of urban environment quality to land use change in mountainous cities of Karst areas[J]. Acta Ecologica Sinica, 2023,43(10):3920-3935.
[15]王欠鑫,曹巍,黄麟.青藏高原生态系统功能稳定性演化特征及分区[J].地理学报,2023,78(5):1104-1118.
Wang Q X, Cao W, Huang L. Evolutionary characteristics and zoning of ecosystem functional stability on the Qinghai-Tibet Plateau[J]. Acta Geographica Sinica, 2023,78(5):1104-1118.
[16]徐静,杨桂山,许晨,等.湖库水源地流域生态系统服务权衡与多目标优化:以天目湖流域为例[J].长江流域资源与环境,2023,32(1):62-70.
Xu J, Yang G S, Xu C, et al. Trade-offs and multi-objective optimization among ecosystem services in headwater catchments:A case study in Tianmu lake catchment[J]. Resources and Environment in the Yangtze Basin, 2023,32(1):62-70.
[17]毛永发,周启刚,王陶,等.耦合PLUS-InVEST-Geodector模型的三峡库区碳储量时空变化及其定量归因[J].长江流域资源与环境,2023,32(5):1042-1057.
Mao Y F, Zhou Q G, Wang T, et al. Spatial-temporal variation of carbon storage and its quantitative attribution in the Three Gorges Reservoir Area coupled with PLUS-InVEST Geodector model[J]. Resources and Environment in the Yangtze Basin, 2023,32(5):1042-1057.
[18]Hardt R A, Forman R T T. Boundary form effects on woody colonization of reclaimed surface mines[J]. Ecology, 1989,70(5):1252-1260.
[19]Forman R T T. Some general principles of landscape and regional ecology[J]. Landscape Ecology, 1995,10(3):133-142.
[20]Saura S, Estreguil C, Mouton C, et al. Network analysis to assess landscape connectivity trends:Application to European forests(1990—2000)[J]. Ecological Indicators, 2011,11(2):407-416.
[21]王雪然,万荣荣,潘佩佩.太湖流域生态安全格局构建与调控:基于空间形态学-最小累积阻力模型[J].生态学报,2022,42(5):1968-1980.
Wang X R, Wan R R, Pan P P. Construction and adjustment of ecological security pattern based on MSPA-MCR Model in Taihu Lake Basin[J]. Acta Ecologica Sinica, 2022,42(5):1968-1980.
[22]史芳宁,刘世梁,安毅,等.城市化背景下景观破碎化及连接度动态变化研究:以昆明市为例[J].生态学报,2020,40(10):3303-3314.
Shi F N, Liu S L, An Y, et al. Changes of landscape fragmentation and connectivity with urbanization:A case study of Kunming City[J]. Acta Ecologica Sinica, 2020,40(10):3303-3314.
[23]凌子燕,蒋卫国,李金嵬,等.桂林市典型喀斯特区湿地生态网络研究[J].湿地科学,2022,20(6):739-746.
Ling Z Y, Jiang W G, Li J W, et al. Wetland ecological network of typical Karst area in Guilin City[J]. Wetland Science, 2022,20(6):739-746.
[24]李程蓉,陈天.缓解城市热环境的多层级“源-汇” 景观网络构建[J].生态学报,2023,43(8):3068-3078.
Li C R, Chen T. Construction of multi-level “source-sink” landscape network to alleviate urban thermal environment[J]. Acta Ecologica Sinica, 2023,43(8):3068-3078.
[25]Haddad N M, Brudvig L A, Clobert J, et al. Habitat fragmentation and its lasting impact on Earth's ecosystems[J]. Science Advances, 2015,1(2):e1500052.
[26]Santos J S, Leite C C C, Viana J C C, et al. Delimitation of ecological corridors in the Brazilian Atlantic Forest[J]. Ecological Indicators, 2018,88:414-424.
[27]魏家星,宋轶,王云才,等.基于空间优先级的快速城市化地区绿色基础设施网络构建:以南京市浦口区为例[J].生态学报,2019,39(4):1178-1188.
Wei J X, Song Y, Wang Y C, et al. Urban green infrastructure building for sustainability in areas of rapid urbanization based on evaluating spatial priority:A case study of Pukou in China[J]. Acta Ecologica Sinica, 2019,39(4):1178-1188.
[28]李欣鹏,李锦生,侯伟.区域生态网络精细化空间模拟及廊道优化研究:以汾河流域为例[J].地理与地理信息科学,2020,36(5):14-20,55.
Li X P, Li J S, Hou W. Research on refined simulation of regional ecological network and corridor optimization:A case study of Fenhe River Basin[J]. Geography and Geo-Information Science, 2020,36(5):14-20,55.
[29]宋利利,秦明周.整合电路理论的生态廊道及其重要性识别[J].应用生态学报,2016,27(10):3344-3352.
Song L L, Qin M Z. Identification of ecological corridors and its importance by integrating circuit theory[J]. Chinese Journal of Applied Ecology, 2016,27(10):3344-3352.
[30]黄丽萍,向芳芳,陈荣清.基于生态安全格局的县域国土空间生态保护修复关键区域识别:以抚州市宜黄县为例[J].环境工程技术学报,2023,13(4):1334-1344.
Huang L P, Xiang F F, Chen R Q. Identification of key areas for ecological protection and restoration of county territorial space based on ecological security pattern:A case study in Yihuang County of Fuzhou City[J]. Journal of Environmental Engineering Technology, 2023,13(4):1334-1344.
Similar References:

Memo

-

Last Update: 2024-06-30

Online:5859       Total Traffic Statistics:27357015

Website Copyright: Research of Soil and Water Conservation Shaanxi ICP No.11014090-10
Tel: 029-87012705 Address: Editorial Department of Research of Soil and Water Conservation, No. 26, Xinong Road, Yangling, Shaanxi Postcode: 712100