人类活动强烈地区非平稳水文干旱识别方法

IF 4.7 2区 地球科学 Q1 WATER RESOURCES
Minhua Ling , Jiawei Yao , Cuimei Lv , Erwei Zheng , Xingyu Chu
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引用次数: 0

摘要

研究区域为黄河流域中游。在人类活动强烈的地区,气候变化和人类活动的双重影响破坏了径流序列的平稳性。因此,迫切需要建立非稳态水文干旱识别方法。以往的研究很少涉及间接人类活动对非稳态水文干旱的影响。本研究综合考虑了气候变化、直接人类活动和间接人类活动(下垫面变化)对径流的影响。在此基础上,基于位置、尺度和形状的广义加性模型构建了非平稳标准化径流指数(NSRI),建立了人类活动强烈地区非平稳水文干旱识别方法。该研究揭示了1960年至2019年期间,人类活动强烈的湄公河三角洲主要子流域水文干旱特征的变化。结果表明,本文构建的非平稳水文干旱识别方法是可行的。与标准化径流指数相比,NSRI在识别跨时间尺度的水文干旱事件方面表现出优越的性能。在许多子流域,严重和极端干旱在不同时间尺度上的频率增加了,干旱严重程度和强度都有上升趋势。未来湄公河流域水文干旱的严重程度可能会进一步加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method for identifying non-stationary hydrological drought in regions with intense human activities

Study region

the middle reaches of the Yellow River Basin (MYRB).

Study focus

In regions with intense human activities, the stationarity of runoff sequences was disrupted due to the dual impacts of climate changing and human activities. Therefore, establishment of non-stationary hydrological drought identification methods is urgently required. Previous research infrequently addressed the influence of indirect human activities on the non-stationary hydrological drought. This study comprehensively considered the impacts of climate change, direct human activities, and indirect human activities (underlying surface alterations) on runoff. Consequently, a non-stationary standardized runoff index (NSRI) was constructed based on the Generalized Additive Models for Location, Scale, and Shape, establishing a method for identifying non-stationary hydrological droughts in regions with intense human activities.

New hydrological insights for the region

This study uncovered the variability in hydrological drought characteristics in the major sub-basins of the MYRB, where human activities are intense, from 1960–2019.The results demonstrate that the non-stationary hydrological drought identification method constructed in this paper is feasible. The NSRI exhibits superior performance in identifying hydrological drought events across multiple timescales compared with the Standardized Runoff Index. In many sub-basins, the frequency of severe and extreme droughts across various time scales increased, with upward trends measured in both drought severity and intensity. The severity of hydrological drought in the MYRB may further intensify in the future.
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来源期刊
Journal of Hydrology-Regional Studies
Journal of Hydrology-Regional Studies Earth and Planetary Sciences-Earth and Planetary Sciences (miscellaneous)
CiteScore
6.70
自引率
8.50%
发文量
284
审稿时长
60 days
期刊介绍: Journal of Hydrology: Regional Studies publishes original research papers enhancing the science of hydrology and aiming at region-specific problems, past and future conditions, analysis, review and solutions. The journal particularly welcomes research papers that deliver new insights into region-specific hydrological processes and responses to changing conditions, as well as contributions that incorporate interdisciplinarity and translational science.
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