Changes in landscape pattern and ecological service value as land use evolves in the Manas River Basin

Author:

Du Yongjun12,He Xinlin13,Li Xiaolong13,Li Xiaoqian12,Gu Xinchen4,Yang Guang12,Li Wanjing12,Wu Yage12,Qiu Jun5

Affiliation:

1. College of Water & Architectural Engineering, Shihezi University , Shihezi , 832000 , China

2. Xinjiang Production & Construction Group Key Laboratory of Modern Water-Saving Irrigation , Shihezi , 832000 , China

3. Key Laboratory of Modern Water-Saving Irrigation of Xinjiang Production & Construction Group , Shihezi , 832000 , China

4. State Key Laboratory of Hydraulic Engineering Simulation and Safety, School of Civil Engineering, Tianjin University , Tianjin , 300072 , China

5. State Key Laboratory of Water and Sediment Science and Water Conservancy and Hydropower Engineering (Tsinghua University) , Beijing , 100000 , China

Abstract

Abstract The Manas River Basin is located in the inland arid area of China. It has a unique natural environment that contains a mountain, oasis, and desert complex ecosystem. Changes in land use type have had significant impacts on the social, economic, and ecological environment in the basin. Based on the remote sensing interpretation data of land use types from 1980 to 2020 in the Manas River Basin, using ArcGIS 10.2 and Fragstats 4.2 and other software to study the temporal and spatial evolution of land use, landscape pattern, and ecological service value (ESV) in the Manas River Basin, several key results were obtained. (1) Unused land accounted for the largest proportion of the total area at about 44%, and the smallest proportion was construction land at 1%, the construction land and farmland areas increased significantly to 82.16 and 34.87%, while the woodland and grassland area decreased to 15.06 and 14.34%, respectively. (2) Between 1980 and 2020, the inflows and outflows of the quantitative transfer tracks for farmland, grassland, and unused land were highly dominant, but the frequent conversion among various types of land led to the transfer tracks becoming more diversified. (3) From 1980 to 2020 the complexity and fragmentation of landscape in the basin decreased, and the heterogeneity, differences, and connectivity of the landscape increased. (4) The ESV of the Manas River Basin had a tendency to initially decrease and then increase, which increased from 237.27 × 108 yuan in 1980 to 238.10 × 108 yuan in 2020. The above research results can not only provide a basis for the ecological improvement of the Manas River Basin but also provide a reference for the study of other basins/regions in arid areas.

Publisher

Walter de Gruyter GmbH

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

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