半干旱环境中的径流生成:暴雨过程中的时间变化和先期土壤湿度的作用

IF 4 2区 环境科学与生态学 Q1 WATER RESOURCES Advances in Water Resources Pub Date : 2024-05-06 DOI:10.1016/j.advwatres.2024.104715
Shmuel Assouline , Shai Sela , Michael Dorman , Tal Svoray
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引用次数: 0

摘要

降雨强度和初始土壤水分是影响径流形成和累积的关键变量,因此也影响洪水事件的发生。我们利用具有不同平均值、标准偏差和偏度的暴雨降雨强度时间序列来模拟密封壤土剖面在不同初始土壤水分条件下的径流响应。我们发现,初始土壤湿度从湿到干会导致积水时间增加 300%,径流总量减少 350%。强降雨事件催化了径流的形成,而且随着降雨平均值、最大强度和方差的增加,径流会更早出现。事件内暴雨强度时间分布的方差越大,产生的径流就越多。更早的径流形成与负偏斜的暴雨结构相一致,但最大的累积径流来自于偏斜值接近零的暴雨。降雨增强与暴雨之间延长的干燥期相结合,可能会减少潜在的径流量。这些见解提高了我们对气候变异对洪水的预期影响的理解,也可能有助于生态系统健康评估,并增强地表过程的预测能力。
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Runoff generation in a semiarid environment: The role of rainstorm intra-event temporal variability and antecedent soil moisture

Rainfall intensity and antecedent soil moisture are key variables affecting the initiation and accumulation of runoff, and therefore, impact on the occurence flood events. We used time series of rainfall intensities characterizing rainstorms with different mean, standard deviation, and skewness to simulate runoff response of a sealed loamy soil profile under various initial soil moisture conditions. We found that shifting from wet to dry initial soil moisture leads to a 300 % increase in ponding time and a 350 % decrease in total runoff. Intense rainfall events catalyze runoff development and runoff occurs earlier with increasing mean, maximum intensity, and variance of rainfall. Higher variance in intra-event storm-intensity temporal distribution yields more runoff. Earlier runoff formation aligned with negatively skewed storm structures, but largest cumulative runoff resulted from storms displaying near-zero skewness values. The combination between rainfall intensification and extended dry periods between storms might reduce potential runoff. These insights improve our understanding of anticipated impacts of climate variations on floods and may also contribute to ecosystem health evaluations, and bolster predictive capabilities of surface processes.

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来源期刊
Advances in Water Resources
Advances in Water Resources 环境科学-水资源
CiteScore
9.40
自引率
6.40%
发文量
171
审稿时长
36 days
期刊介绍: Advances in Water Resources provides a forum for the presentation of fundamental scientific advances in the understanding of water resources systems. The scope of Advances in Water Resources includes any combination of theoretical, computational, and experimental approaches used to advance fundamental understanding of surface or subsurface water resources systems or the interaction of these systems with the atmosphere, geosphere, biosphere, and human societies. Manuscripts involving case studies that do not attempt to reach broader conclusions, research on engineering design, applied hydraulics, or water quality and treatment, as well as applications of existing knowledge that do not advance fundamental understanding of hydrological processes, are not appropriate for Advances in Water Resources. Examples of appropriate topical areas that will be considered include the following: • Surface and subsurface hydrology • Hydrometeorology • Environmental fluid dynamics • Ecohydrology and ecohydrodynamics • Multiphase transport phenomena in porous media • Fluid flow and species transport and reaction processes
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