不同土壤类型WEPP模型中初始土壤水分对细沟可蚀性和临界剪应力因子的影响

IF 7.3 1区 农林科学 Q1 ENVIRONMENTAL SCIENCES
Fikret Ari , Selen Deviren Saygin , Cagla Temiz , Sefika Arslan , Mehmet Altay Unal , Gunay Erpul , Dennis C. Flanagan
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引用次数: 0

摘要

细沟侵蚀是农业地区的一个重要问题,它与土壤初始水分条件有着复杂的联系,影响着集中流侵蚀过程的发展。然而,了解其在不同土壤湿度条件下的动态仍然具有挑战性。本研究旨在评估不同土壤湿度水平对水侵蚀预测项目(WEPP)模型中细沟可蚀性参数的影响,并评估不同土壤类型的土壤凝聚力。通过室内实验,研究了在初始干燥、饱和和排水三种土壤水分情况下,随着地表入流速率的增加,沟槽可蚀性(Kr)和临界水力剪切应力(τcr)。此外,我们还研究了由自动土壤凝聚力测量仪获得的土壤凝聚力在预测不同土壤质地的Kr和τcr方面的效率。我们的分析涵盖了代表9个质地类别的20种土壤,揭示了土壤基本性质、黏聚参数和WEPP模型细沟可蚀性之间的显著相关性。值得注意的是,初始土壤水分条件对可蚀性电位有实质性影响。淤泥含量较高的土壤在Nash-Sutcliffe模型效率方面表现出更好的拟合性,特别是在初始干燥和饱和条件下。然而,对最初排水土壤的预测结果不太吻合,强调了土壤性质和水文条件之间复杂的相互作用。总之,我们的研究结果强调了表土水动力学在细沟可蚀性中的关键作用。我们提出土壤黏聚力是一个有价值的预测因子,补充了土壤内部的摩擦力,并增强了浅水条件下细沟可蚀性的模拟,特别是在下一代基于过程的建模方法中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of initial soil moisture on rill erodibility and critical shear stress factors in the WEPP model across diverse soil types
Rill erosion, a significant issue in agricultural regions, is intricately linked to initial soil moisture conditions, affecting the development of concentrated flow erosion processes. However, understanding its dynamics amidst varying soil moisture conditions remain challenging. This study aimed to assess the impact of different soil moisture levels on rill erodibility parameters in the Water Erosion Prediction Project (WEPP) model and to evaluate soil cohesion across a spectrum of soils. Through laboratory experiments employing a small V-shaped rill channel, we investigated rill erodibility (Kr) and critical hydraulic shear stress (τcr), under three soil moisture scenarios: initially dry, saturated, and drainage, with incremental surface inflow rates. Additionally, we examined the efficiency of soil cohesion obtained from an Automated Soil Cohesion Measurement Apparatus in predicting Kr and τcr across various soil textures. Our analysis encompassed twenty soils representing nine texture classes, revealing significant correlations between basic soil properties, cohesion parameters, and WEPP model rill erodibility. Notably, initial soil moisture conditions exerted substantial influence on erodibility potentials. Soils with higher silt contents demonstrated better fits in terms of Nash-Sutcliffe model efficiency, particularly under initially dry and saturated conditions. However, predictions for initially drained soils yielded poor fits, emphasizing the intricate interplay between soil properties and hydrological conditions. In conclusion, our findings emphasize the critical role of topsoil water dynamics in rill erodibility. We propose that soil cohesion serves as a valuable predictor, complementing friction forces within the soil and enhancing simulations of rill erodibility under shallow flow conditions in rills, particularly in next-generation process-based modeling approaches.
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来源期刊
International Soil and Water Conservation Research
International Soil and Water Conservation Research Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
12.00
自引率
3.10%
发文量
171
审稿时长
49 days
期刊介绍: The International Soil and Water Conservation Research (ISWCR), the official journal of World Association of Soil and Water Conservation (WASWAC) http://www.waswac.org, is a multidisciplinary journal of soil and water conservation research, practice, policy, and perspectives. It aims to disseminate new knowledge and promote the practice of soil and water conservation. The scope of International Soil and Water Conservation Research includes research, strategies, and technologies for prediction, prevention, and protection of soil and water resources. It deals with identification, characterization, and modeling; dynamic monitoring and evaluation; assessment and management of conservation practice and creation and implementation of quality standards. Examples of appropriate topical areas include (but are not limited to): • Conservation models, tools, and technologies • Conservation agricultural • Soil health resources, indicators, assessment, and management • Land degradation • Sustainable development • Soil erosion and its control • Soil erosion processes • Water resources assessment and management • Watershed management • Soil erosion models • Literature review on topics related soil and water conservation research
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