Response of soil moisture to prewinter conditions and rainfall events at different distances to gully banks in the Mollisol region of China

IF 2.8 3区 地球科学 Q2 GEOGRAPHY, PHYSICAL Earth Surface Processes and Landforms Pub Date : 2024-02-25 DOI:10.1002/esp.5803
Yanru Wen, Bao Liu, Qiangyi Yu, Yanyan Xu, Litao Lin, Bin Zhang, Ting-Yong Li, Wenbin Wu, Qian Song
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Abstract

Soil moisture patterns are crucial factors in gully bank erosion and may significantly vary depending on the water conditions before winter freezing. Rainfall events can evoke different moisture responses throughout the soil profile of gullies. However, the relative importance of prewinter conditions and rainfall events to the soil moisture responses of gully banks in seasonally frozen regions remains unclear. In this study, a field infiltration experiment of a gully bank with four prewinter soil moisture regimes and three replicates was conducted in October 2017 in the Mollisol region of China. We aimed to elucidate the temporal variations in moisture responses under different prewinter water treatments at various distances to the gully bank after three representative rainfall events in 2018. The response magnitude (∆s) varied widely and was largest in the intermediate layers (30–50 cm) for wetter prewinter regimes (i.e., HI and MED) but was larger in the upper soil layers (0–30 cm) for drier prewinter regimes (i.e., CK and LO). In contrast to the findings of other studies, we found that the relative influences of prewinter conditions and rainfall events on the soil moisture responses varied with soil depth and distance to the gully edge. The soil moisture response increased with rainfall depth, and the effect of prewinter conditions dominated until the end of the rainy season (August). The most important explanatory variables for the response magnitude (∆s) were rainfall events (46%), soil depth (10%), and prewinter conditions (7%). This study increases the understanding of the heterogeneity in soil moisture responses and the relationship to rainfall events under different prewinter conditions on gully banks in the Mollisol region. Understanding subsurface hydrological processes and identifying the relative importance of prewinter conditions and rainfall are beneficial for building gully bank erosion models for seasonally frozen regions.

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中国软土地层地区不同距离沟岸的土壤水分对冬前条件和降雨事件的响应
土壤湿度模式是沟岸侵蚀的关键因素,并可能因冬季结冰前的水情而发生显著变化。降雨事件会对沟谷土壤剖面产生不同的湿度反应。然而,冬前条件和降雨事件对季节性冰冻地区沟岸土壤湿度反应的相对重要性仍不清楚。在本研究中,我们于 2017 年 10 月在中国的莫里溶胶地区进行了一次沟岸田间渗透实验,实验采用了四种冬前土壤水分制度和三个重复。我们旨在阐明 2018 年三次具有代表性的降雨事件后,不同冬前水处理下不同距离沟岸的水分响应的时间变化。反应幅度(Δs)差异很大,在较湿的冬前机制(即HI和MED)下,中间土层(30-50厘米)的反应幅度最大,但在较干的冬前机制(即CK和LO)下,上部土层(0-30厘米)的反应幅度较大。与其他研究结果不同的是,我们发现冬前条件和降雨事件对土壤水分响应的相对影响随土壤深度和与沟谷边缘的距离而变化。土壤水分响应随降雨深度的增加而增加,冬前条件的影响在雨季结束(8 月)前一直占主导地位。对响应大小(Δs)最重要的解释变量是降雨事件(46%)、土壤深度(10%)和冬前条件(7%)。这项研究加深了人们对土壤水分响应的异质性以及不同冬前条件下沟岸降雨事件与土壤水分响应关系的理解。了解地下水文过程并确定冬前条件和降雨的相对重要性,有利于为季节性冰冻地区建立沟岸侵蚀模型。
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来源期刊
Earth Surface Processes and Landforms
Earth Surface Processes and Landforms 地学-地球科学综合
CiteScore
6.40
自引率
12.10%
发文量
215
审稿时长
4 months
期刊介绍: Earth Surface Processes and Landforms is an interdisciplinary international journal concerned with: the interactions between surface processes and landforms and landscapes; that lead to physical, chemical and biological changes; and which in turn create; current landscapes and the geological record of past landscapes. Its focus is core to both physical geographical and geological communities, and also the wider geosciences
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