RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN >> 2025, Vol. 34 >> Issue (12): 2829-.doi: 10.11870/cjlyzyyhj202512017

Previous Articles     Next Articles

Changes of NDVI in the Upper Yangtze River and Influence on Water-sand Process in the Three Gorges Reservoir

LI Ming-yue1,2, PAN Hong-zhong1,2, CHEN Peng1,2, MA Yi-ming3, YAO Hua-ming1,2,3   

  1. (1.Hubei Provincial Key Laboratory of Oil and Gas Geochemistry and Environment, Yangtze University, Wuhan 430100, China; 2.College of Resources and Environment, Yangtze University,Wuhan 430100, China; 3.China Yangtze Power Co., Lt, Yichang 430100 )
  • Online:2025-12-20 Published:2025-12-25

Abstract: The vegetation coverage in the upper reaches of the Yangtze River is crucial for maintaining the ecological balance of the region.The vegetation cover may also significantly impact the inflow and sediment transport processes of the Three Gorges Reservoir.In this study, the methods of Sen+Mann-Kendall trend analysis and partial correlation analysis were used.The data were based on the 250m resolution Normalized Difference Vegetation Index (MOD13Q1 NDVI), annual runoff, sediment load, land use, and meteorological data from the upper reaches of the Yangtze River.This research investigated the spatiotemporal variation characteristics and the driving factors of NDVI in various sub-basins of the upper Yangtze River (including the Jinsha River Basin, Min-Tuo River Basin, Jialing River Basin, Three Gorges Reservoir Area Basin, and Wu River Basin), as well as their impact on the water and sediment inflow processes into the Three Gorges Reservoir.The research findings indicated that: (1) From 2001 to 2022, NDVI exhibited a fluctuating upward trend, with a continuous improvement of vegetation coverage, and a spatial pattern of lower values in the west and higher values in the east.(2) From 2006 to 2022, the runoff did not show a significant upward trend overall, while the sediment load decreased significantly.During this period, the annual runoff in the Three Gorges Reservoir area exhibited a significant upward trend, whereas the sediment load in the Jinsha River Basin decreased notably.(3) The areas driven by land use factors accounted for approximately 43% of the entire study region, followed by precipitation of about 34%.Moreover, NDVI and precipitation exhibited a positive correlation in most basins, with 20% of the area passing the significance test at p < 0.05.(4) Precipitation significantly influenced runoff, and vegetation in most basins showed a negative correlation with sediment load.In the future, vegetation cover should be enhanced, which would help reduce sediment loss.However, the impact of vegetation restoration on the hydrological cycle requires further research.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] ZHANG Xin, CHEN Zhigang . Economic Growth Incentive, Local Officials’ Characteristics and Urban Industrial Pollution:#br# A Case Study of the Yangtze River Delta[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1314 .
[2] GUO Zheng, , DONG Ping, , LU Yuqi, , , HUANG Qunfang, MA Yinyi. Analysis on the Evolution and Influence Factors of Yangtze River delta container port system[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1340 .
[3] LAN Xi, LIU Xiaoqiong, GUO Yan, CHEN Kunlun . Comprehensive Evaluation of Urban Water Environmental Carrying Capacity in Wuhan Under the Context of the Yangtze River Economic Belt Strategic[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1345 .
[4] LUO Nengsheng, WANG Yuze, PENG Yu, LI Jianming. EcoEfficiency of Urban Agglomeration in the Middle Yangtze River Basin: Spatial Analysis and Synergetic Promotion Mechanism[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1349 .
[5] LIU Gang, , LIU Kunlin, WANG Weiqian, ZHAO Shuang. Analysis of Immigrants’ Satisfaction Degree in Water Quality#br# —— Empirical Research of Ordinal Logistic Regression[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1355 .
[6] Xiaofeng, , LIU Dingshuo, . Coupling Mechanism of County Traffic Accessibility and Spatial Poverty Based on 3D Theory and SEM: A Case Study in Mountains Border Regions of Western Yunnan[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1360 .
[7] ZHANG Dapeng, CAO Weidong, , YAO Zhaozhao, YUE Yang, REN Yawen. Study on the Distribution Characteristics and Evolution of Logistics Enterprises in Shanghai Metropolitan Area[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1365 .
[8] SHE Ying, , LIU Yaobing. Historical Context and Enlightenment of Domestic and Foreign Green Development Regime[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1370 .
[9] HOU Wenjia, CHEN Changqing, QIAO Hui, SUN Xinsu, ZHOU Shudong. TemporalSpatial Characteristics of Rape Freezing Injury in the Lower Reaches of the Yangtze River During 1980-2009[J]. RESOURCES AND ENVIRONMENT IN THE YANGTZE BASIN, 2018, 27(07): 1375 .
[10] 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 .