数据资源: 科信所期刊全文

基于MSPA模型的丘陵乡村绿色基础设施构建



编号 lyqk011085

中文标题 基于MSPA模型的丘陵乡村绿色基础设施构建

作者 倪雨淳  殷敏  魏家星 

作者单位 南京农业大学园艺学院 南京 210095

期刊名称 中国城市林业 

年份 2023 

卷号 21

期号 3

栏目名称 研究论文 

中文摘要 基于形态学空间格局分析方法(MSPA),结合南京市山景社区的建设实践,按照关键生境保护-土地资源整治-廊道布局优化的总体思路,从空间聚集形态的层面探讨丘陵乡村绿色基础设施网络构建的路径,为乡村地区生态空间格局的规划布局与产业提升的协同发展提供较新的思路,同时也为国内其他区域绿色基础设施网络构建优化提供理论和实证参考。

关键词 丘陵乡村  绿色基础设施  形态学空间格局分析  南京山景社区 

基金项目 国家自然科学基金(32001360);江苏省自然科学基金(BK20190545);中央高校基本科研业务费(130ZJ21195002)

英文标题 Green Infrastructure Construction in Hilly Rural Area Based on MSPA Model

作者英文名 Ni Yuchun, Yin Min, Wei Jiaxing

单位英文名 College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China

英文摘要 By using the morphological spatial pattern analysis method and in view of the development practice of Shanjing community in Nanjing, this study follows the general principle of key habitat protection-land resources remediation-corridor layout optimization and explores the path to the green infrastructure network construction in hilly rural area from the perspective of spatial aggregation pattern, in order to provide a new way for the coordinated development between ecological spatial pattern planning and industrial upgrading in rural areas and also to provide the theoretical and empirical reference for the construction and optimization of green infrastructure network in other regions of China.

英文关键词 hilly rural area;green infrastructure;morphological spatial pattern analysis;Shanjing Community, Nanjing City

起始页码 139

截止页码 145

投稿时间 2021/5/21

作者简介 倪雨淳(1998-),女,硕士,研究方向为风景园林规划与生态修复。E-mail:14316117@njau.edu.cn

通讯作者介绍 魏家星(1986-),男,博士,教授,研究方向为风景园林规划与生态修复。E-mail:weijx@njau.edu.cn

E-mail weijx@njau.edu.cn

DOI 10.12169/zgcsly.2021.05.21.0002

参考文献 [1] 王玉莹,沈春竹,金晓斌,等.基于MSPA和MCR模型的江苏省生态网络构建与优化[J].生态科学,2019,38(2):138-145.
[2] 张豆,渠丽萍,张桀滈.基于生态供需视角的生态安全格局构建与优化:以长三角地区为例[J].生态学报,2019,39(20):7525-7537.
[3] 马明,顾康康,李咏.基于生态安全格局的城乡生态空间布局与优化:以宣城市为例[J].中国农业资源与区划,2019,40(4):93-102.
[4] 邱瑶,常青,王静.基于MSPA的城市绿色基础设施网络规划:以深圳市为例[J].中国园林,2013,29(5):104-108.
[5] 刘颂,何蓓.基于MSPA的区域绿色基础设施构建:以苏锡常地区为例[J].风景园林,2017(8):98-104.
[6] 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.
[7] 王晶晶,尹海伟,孔繁花.多元价值目标导向的区域绿色基础设施网络规划:以古黄河周边区域为例[J].山东师范大学学报(自然科学版),2016,31(3):77-83.
[8] 陈竹安,况达,危小建,等.基于MSPA与MCR模型的余江县生态网络构建[J].长江流域资源与环境,2017,26(8):1199-1207.
[9] 许峰,尹海伟,孔繁花,等.基于MSPA与最小路径方法的巴中西部新城生态网络构建[J].生态学报,2015,35(19):6425-6434.
[10] WICKHAM J D,RIITTERS K H,WADE T G,et al.A national assessment of green infrastructure and change for the conterminous United States using morphological image processing[J].Landscape and Urban Planning,2010,94(3/4):186-195.
[11] 罗言云,李春容,谢于松,等.成都市中心城区城市公园景观连通性[J].生态学杂志,2020,39(11):3795-3807.
[12] 张梦嫚,吴秀芹.近20年白洋淀湿地水文连通性及空间形态演变[J].生态学报,2018(12):4205-4213.
[13] ROGAN J,WRIGHT T M,CARDILLE J,et al.Forest fragmentation in Massachusetts,USA:a town-level assessment using Morphological spatial pattern analysis and affinity propagation[J].Mapping Sciences and Remote Sensing,2016,53(4):506-519.
[14] PASCUAL-HORTAL L,SAURA S.Comparison and development of new graph-based landscape connectivity indices:towards the priorization of habitat patches and corridors for conservation[J].Landscape Ecology,2006,21(7):959-967.
[15] SAURA S,PASCUAL-HORTAL L.A new habitat availability index to integrate connectivity in landscape conservation planning:comparison with existing indices and application to a case study[J].Landscape and Urban Planning, 2007,83(2):91-103.
[16] SOILLE P,VOGT P.Morphological segmentation of binary patterns[J].Pattern Recognition Letters,2008,30(4):456-459.
[17] 李国煜,林丽群,伍世代,等.生态源地识别与生态安全格局构建研究:以福建省福清市为例[J].地域研究与开发,2018,37(3):20-125.
[18] 安超,沈清基.基于空间利用生态绩效的绿色基础设施网络构建方法[J].风景园林,2013(2):22-31.
[19] CAVALLARO M,ASPRONE D,LATORA V,et al.Assessment of urban ecosystem resilience through hybrid social-physical complex networks[J].Computer-Aided Civil and Infrastructure Engineering,2014,29(8):608-625.
[20] KNAAPEN J P,SCHEFFER M,HARMS B.Estimating habitat isolation in landscape planning[J].Landscape and Urban Planning,1992,23(1):1-16.
[21] LEONARD P B,DUFFY E B,BALDWIN R F,et al.Gflow:software for modelling circuit theory-based connectivity at any scale[J].Methods in Ecology and Evolution,2017,8(4):519-526.

PDF全文 浏览全文

相关图谱

扫描二维码