RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2023, Vol. 32 >> Issue (8): 1724-1735.doi: 10.11870/cjlyzyyhj202308015

Previous Articles     Next Articles

Construction and Optimization of Ecological Security Pattern in Three-River-Source National Park Based on Ecological Sensitivity and Landscape Connectivity

HU Xi-wu1,2,JIA Tian-chao1   

  1. (1. School of Economics and Management, Qinghai MinZu University, Xining 810007, China;2. Institute for Carbon Peaking and Carbon Neutrality, Tianjin University-Qinghai MinZu University, Xining 810007, China)
  • Online:2023-08-20 Published:2023-08-23

Abstract: The function of the national ecological security barrier in Three-River-Source National Park is prominent, so it is of great significance to construct and optimize its ecological security pattern. Based on the land use and remote sensing data in 2020, and the morphological pattern spatial analysis method (MSPA), we constructed the ecological sensitivity evaluation system. In addition, we extracted the important ecological corridors and potential ecological corridors to form the ecological security pattern of Three-River-Source National Park. The functions of the ecological security pattern were optimized using the minimum cumulative resistance model and the gravity model. The results are as follows: (1) The ecological source area of Three-River-Source National Park was 26 833 km2, accounting for 21.80% of the total area. (2) A total of 9 important ecological corridors (536.62 km) and 55 potential ecological corridors (6 080.15 km) were extracted, among which 45 potential ecological corridors (5 124.17 km) and 8 important ecological corridors (522.10 km) were extracted from the Yangtze River Source Park and Lancang River Source Park. Meanwhile, 10 potential ecological corridors (955.98 km) and 1 important ecological corridor (14.52 km) were extracted from Huangheyuan Park. (3) Optimization of the ecological functions of Three-River-Source National Park results in a core protection area (39 613.58 km2), an ecological conservation area (67 261.84 km2), a recreation exhibition area (10 143.44 km2) and a traditional utilization area (6 081.34 km2), accounting for 32.18%, 54.64%, 8.24%, and 4.94% respectively. The results provided reference value for the spatial planning of Three-River-Source National Park and future function optimization of national ecological security barriers.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] GUAN Xingliang1, HU Shilin2, LIN Xueqin3, LU Shasha4. DYNAMIC PATTERN OF URBAN LAND EXPANSION AND ITS MECHANISM IN WUHAN URBAN AGGLOMERATION[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2014, 23(11): 1493 .
[2] YAO Lin, SHEN Jing, WEN Xinlong, GAO Chao. Impact of Various Parameterization Schemes in WRF Model on Wind Simulation at the mountain Wind Power Station of Jiangxi Province[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1380 .
[3] SUN Huihui, ZHANG Xinping, LUO Zidong, SHANG ChengPeng, HE Xinguang, RAO Zhiguo. Analyses on Characteristics of Extreme Precipitation Indices in the #br# Yangtze River Basin in the Past 53 Years#br#[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(08): 1879 .
[4] . Analysis on the Trend and Influencing Factors of PM2.5 in China Based on Multi-source Remote Sensing Data[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, , (): 0 .
[5] . Analysis of the impact of natural disasters on agricultural insurance——Based on the microscopic survey data in HuBei province[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, , (): 0 .
[6] WANG Kai, WANG Yujie, WANG Bin, ZHANG Shouhong, WANG Yunqi, WANG Chenfeng. Study on Soil Detachment Rate on a YellowSoil Hillslope[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(09): 2114 -2121 .
[7] FANG Lin, , WU Fengping, WANG Xinhua, YU Yantuan.  

Analysis of Agricultural Water Efficiency Measurement and Improvement Potential Based on Meta Frontier SBM Model [J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(10): 2293 -2304 .

[8] LV Le-ting, WANG Xiao-rui, SUN Cai-zhi, ZHANG Jie. Study on the Spatiotemporal Variations of Blue and Green Water Resources in Xi River Basin Using the SWAT Model[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(01): 39 -47 .
[9] LI Yan, MA Bai-sheng, YANG Xuan. Impact of Two Types of ENSO Events on the Extreme Precipitation in Eastern China[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(02): 469 -482 .
[10] KE Hang, WANG Xiao-jun, YIN Yi-xing, LUO Zhi-wen, . Spatial and Temporal Characteristics of Extreme Precipitation and Drought in Hengshui City from 1961 to 2015[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2019, 28(04): 971 -980 .