Recent advances in hydrology studies under changing permafrost on the Qinghai-Xizang Plateau

IF 0.7 4区 地球科学 Q4 GEOGRAPHY, PHYSICAL
Lu Zhou , YuZhong Yang , DanDan Zhang , HeLin Yao
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Abstract

Due to the great influences of both climate warming and human activities, permafrost on the Qinghai-Xizang Plateau (QXP) has been undergoing considerable degradation. Continuous degradation of plateau permafrost dramatically modifies the regional water cycle and hydrological processes, affecting the hydrogeological conditions, and ground hydrothermal status in cold regions. Permafrost thawing impacts the ecological environment, engineering facilities, and carbon storage functions, releasing some major greenhouse gases and exacerbating climate change. Despite the utilization of advanced research methodologies to investigate the changing hydrological processes and the corresponding influencing factors in permafrost regions, there still exist knowledge gaps in multivariate data, quantitative analysis of permafrost degradation's impact on various water bodies, and systematic hydrological modeling on the QXP. This review summarizes the main research methods in permafrost hydrology and elaborates on the impacts of permafrost degradation on regional precipitation distribution patterns, changes in surface runoff, expansion of thermokarst lakes/ponds, and groundwater dynamics on the QXP. Then, we discuss the current inadequacies and future research priorities, including multiple methods, observation data, and spatial and temporal scales, to provide a reference for a comprehensive analysis of the hydrological and environmental effects of permafrost degradation on the QXP under a warming climate.
青藏高原冻土变化条件下水文研究的最新进展
由于气候变暖和人类活动的巨大影响,青藏高原的冻土正在发生严重退化。高原冻土的持续退化极大地改变了区域水循环和水文过程,影响了寒冷地区的水文地质条件和地下水热状况。冻土融化影响生态环境、工程设施和碳储存功能,释放一些主要温室气体,加剧气候变化。尽管采用了先进的研究方法来研究冻土地区不断变化的水文过程和相应的影响因素,但在多元数据、冻土退化对各种水体影响的定量分析以及 QXP 系统水文模型等方面仍存在知识空白。本综述总结了永久冻土水文学的主要研究方法,并详细阐述了永久冻土退化对 QXP 地区降水分布模式、地表径流变化、温带湖泊/池塘扩大以及地下水动态的影响。然后,从多种方法、观测数据、时空尺度等方面讨论了目前的不足和未来的研究重点,为全面分析气候变暖条件下永久冻土退化对青藏高原的水文和环境影响提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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