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Article

Dynamic Simulation of the Supply and Demand of Ecosystem Windbreak and Sand Fixation Service in the Wuding River Basin

1
College of Geomatics, Xi’an University of Science and Technology, Xi’an 710054, China
2
School of Land Engineering, Chang’an University, Xi’an 710054, China
3
School of Geography and Tourism, Shaanxi Normal University, Xi’an 710119, China
*
Author to whom correspondence should be addressed.
Land 2025, 14(1), 20; https://doi.org/10.3390/land14010020
Submission received: 27 November 2024 / Revised: 19 December 2024 / Accepted: 24 December 2024 / Published: 26 December 2024

Abstract

Wind erosion can cause land degradation and other harmful effects. Examining the ecosystem windbreak and sand fixation service (WSFS) from the perspectives of supply and demand plays a crucial role in the continuous regulation of regional wind erosion. Through the enhancement of the revised wind erosion equation (RWEQ) model, integrated with uncertainty analysis, scenario simulation, and environmental factors calculation, the dynamic simulation of the supply of ecosystem windbreak and sand fixation service (WSFSS) and the demand of ecosystem windbreak and sand fixation service (WSFSD) in the Wuding River Basin in China was achieved, and specifically, a simulation framework for WSFSD and WSFSS was constructed. The results show that: (1) the uncertainty analysis can calculate the upper and lower limits of the range of parameter x (downwind distance) in the RWEQ model, and changes in the parameter x can make the simulation results of WSFSS and WSFSD more reasonable; (2) In the past 20 years, the WSFSS has shown a spatial distribution pattern of high in the northwest and low in the southeast. In terms of time, the annual WSFSS has shown a fluctuating growth trend with a growth rate of 8.06 t/a. The monthly WSFSS has shown a rising-fluctuating-declining trend; (3) The rationality of WSFSD was indirectly verified through the setting of scenario simulation. In terms of time, across the 252 months under study (January 2000–December 2020), 85% of the months witnessed WSFSD within the range of 1.0–1.4 kg/m2 in the Wuding River Basin. At the same time, the WSFSD also presented seasonal variation patterns. The WSFSD was relatively high in spring (March–May) and relatively low in summer (July–September) each year.
Keywords: ecosystem windbreak and sand fixation service; the supply and demand of ecosystem windbreak and sand fixation service; RWEQ model; Wuding River Basin ecosystem windbreak and sand fixation service; the supply and demand of ecosystem windbreak and sand fixation service; RWEQ model; Wuding River Basin

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MDPI and ACS Style

Xiong, X.; Zhou, Z.; Wang, X.; Li, J. Dynamic Simulation of the Supply and Demand of Ecosystem Windbreak and Sand Fixation Service in the Wuding River Basin. Land 2025, 14, 20. https://doi.org/10.3390/land14010020

AMA Style

Xiong X, Zhou Z, Wang X, Li J. Dynamic Simulation of the Supply and Demand of Ecosystem Windbreak and Sand Fixation Service in the Wuding River Basin. Land. 2025; 14(1):20. https://doi.org/10.3390/land14010020

Chicago/Turabian Style

Xiong, Xuanchen, Zixiang Zhou, Xiaofeng Wang, and Jing Li. 2025. "Dynamic Simulation of the Supply and Demand of Ecosystem Windbreak and Sand Fixation Service in the Wuding River Basin" Land 14, no. 1: 20. https://doi.org/10.3390/land14010020

APA Style

Xiong, X., Zhou, Z., Wang, X., & Li, J. (2025). Dynamic Simulation of the Supply and Demand of Ecosystem Windbreak and Sand Fixation Service in the Wuding River Basin. Land, 14(1), 20. https://doi.org/10.3390/land14010020

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