Spatiotemporal Variability of Soil Water Content and Its Influencing Factors on a Microscale Slope

Author:

Hu You12,Tang Chongjun12,Chen Xiaoan12,Zhao Ying3ORCID,He Hailong4ORCID,Li Min4,Zhang Jie12

Affiliation:

1. Jiangxi Academy of Water Science and Engineering, Nanchang 330029, China

2. Jiangxi Provincial Technology Innovation Center for Ecological Water Engineering in Poyang Lake Basin, Nanchang 330099, China

3. Key Laboratory of Coastal Ecohydrological Processes and Environmental Security, Ludong University, Yantai 264025, China

4. Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling 712100, China

Abstract

In order to enhance food security and promote sustainable agricultural development, there is extensive utilization of sloping land in China. However, soil and water loss are severe in sloping lands. Understanding the spatiotemporal variability of soil water content (θ) is therefore important for determining suitable soil and water conservation strategies. Nevertheless, there exists a dearth of current research that focuses on the spatiotemporal variability of θ in microscale sloping lands. This study used statistical and temporal stability (TS) analyses to explore the characteristics of the spatiotemporal variability of θ on slopes. Furthermore, this study aimed to quantify the impacts of soil depth, slope position, air temperature, and hydrological conditions on the TS of θ. The average θ increases with depth, and it follows a logarithmic increase above 1.3 m and a linear increase below 1.3 m. The spatial variability of θ is higher in shallow soils and wet seasons compared with deep soils and dry seasons. The temporal stability of θ is higher on the upper and lower slopes compared with the middle slope. Day-MRD is more effective at capturing the temporal stability of θ than all-MRD. The diurnal variation of the TS of θ on slopes is primarily influenced by soil depth, slope position, air temperature, and hydrological conditions. We found that soil depth had a greater impact on the TS of θ than the slope position and that air temperature has a greater influence than the hydrological conditions. This study accurately describes the spatiotemporal variability of θ at the microscale slope, which helps solve the problems of soil and water conservation and water resource management on slopes.

Funder

National Natural Science Foundation of China

Jiangxi Provincial Natural Science Foundation

Jiangxi Provincial Department of Water Resources Science and Technology Project

Jiangxi Province “Science and Technology + Water Conservancy” Joint Plan

Jiangxi Provincial Key Research and Development Program

“Soil and Water Conservation of Orchards in Southern Red Soil Region” Candidate Project of Jiangxi Province’s High-level and High-skilled Leading Talent Training Project

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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