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2003-2022年宁夏不同生态分区土壤水分时空变化及其影响机制

杨秋琳 米丽娜 刘玉忠 邱思涵

水土保持通报2025,Vol.45Issue(2):102-113,12.
水土保持通报2025,Vol.45Issue(2):102-113,12.DOI:10.13961/j.cnki.stbctb.2025.02.012

2003-2022年宁夏不同生态分区土壤水分时空变化及其影响机制

Spatiotemporal variation of soil moisture in different ecological regions of Ningxia and their influencing mechanisms from 2003 to 2022

杨秋琳 1米丽娜 2刘玉忠 3邱思涵2

作者信息

  • 1. 宁夏大学土木与水利工程学院,宁夏银川 750021
  • 2. 宁夏大学生态环境学院,宁夏银川 750021||西北土地退化与生态恢复国家重点实验室培育基地,宁夏银川 750021
  • 3. 宁夏回族自治区惠农渠管理处,宁夏石嘴山 753001
  • 折叠

摘要

Abstract

[Objective]Temporal and spatial changes in soil water in different ecological zones of the Ningxia H ui Autonomous Region and their influencing mechanisms were explored to provide a scientific basis for ecological construction and water resource management in this region.[Methods]Taking the Ningxia Hui Autonomous Region as the research area,based on remote sensing inversion data of soil moisture,meteorology,vegetation cover NDVI,and land use from 2003 to 2022,trend analysis,the mutation test,Hurts index,and parameter optimal geographic detector were used to explore the temporal and spatial changes of soil moisture and their influencing mechanism.[Results]① From 2003 to 2022,annual soil moisture in Ningxia showed a significant upward trend,with 68.99%of the region experiencing increases and 31.01%experiencing decreases.Regionally,soil moisture declined slightly in the Northern Yellow River irrigation area(-0.022%/a),increased modestly in the central arid zone(+0.030%/a),and increased significantly in the southern mountainous area(+0.107%/a),with a significant change in 2012.Spatially,soil moisture was high in the north and south and low in the center,with multi-year averages ranked as follows:Northern Yellow River irrigation area(11.40%)>southern mountainous area(10.70%)>central arid zone(8.40%).② Hurst index predictions suggested that 49.09%,60.43%,and 62.91%of the northern,central,and southern regions,respectively,are likely to experience declining soil moisture,highlighting the risks of salinization and drought in the north and center.③ Geographic detector analysis identified NDVI and topography as the primary drivers of soil moisture distribution,with an increasing influence of precipitation over time.[Conclusion]Soil moisture trends in Ningxia from 2003 to 2022 displayed regional heterogeneity and complexity,and future changes are expected to follow similar patterns.NDVI,topography,and precipitation collectively shaped the soil moisture dynamics.These factors must be integrated into soil resource management strategies to support ecological and water resource optimization in the region.

关键词

土壤水分/时空变化/影响因子/最优参数地理探测器/宁夏回族自治区

Key words

soil moisture/spatiotemporal changes/influencing factors/optimal parameters for geographic exploration/Ningxia Hui Autonomous Region

分类

农业科技

引用本文复制引用

杨秋琳,米丽娜,刘玉忠,邱思涵..2003-2022年宁夏不同生态分区土壤水分时空变化及其影响机制[J].水土保持通报,2025,45(2):102-113,12.

基金项目

国家自然科学基金项目"银川平原地下水浅埋灌区农业节水影响地下水盐迁移协同优化模拟与调控"(52160025) (52160025)

宁夏重点研发计划"银川绿洲水盐循环模拟及农业节水控盐协同调控技术研发"(2021BEG03016) (2021BEG03016)

国家重点研发计划"黄河上游河套平原节水控盐产能提升技术模式与应用"(2021YFD1900604-02) (2021YFD1900604-02)

国家自然科学基金联合基金项目(U24A20615) (U24A20615)

水土保持通报

OA北大核心

1000-288X

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