解读地貌演变过程中构造和气候力量对水文连通性的相互作用

IF 2.6 Q2 WATER RESOURCES Frontiers in Water Pub Date : 2024-03-15 DOI:10.3389/frwa.2024.1255883
Kyungdoe Han, John L. Wilson
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引用次数: 0

摘要

气候与构造之间错综复杂的相互作用深刻地塑造了超过 1000 万年的地貌。活跃的构造过程和气候的变化破坏了既有的排水系统,导致流域的破碎或合并。这些活动导致地表水文连通性发生巨大变化,从而凸显了这些构造和气候力量对地貌和水文演变的深远影响。水文景观的这种变化对水生物种的进化有着直接的影响。当水生栖息地之间的联系发生重新配置时,就会引起物种分布和适应性反应的变化。这些发现强调了构造和气候的作用,它们不仅塑造了自然景观,还引导着这些依靠水文联系动态变化的水生生态系统中的生物进化进程。尽管这些相互作用非常重要,但学术文献却很少研究水文连通性在构造或造山带时间尺度上的变化。本研究旨在弥合这一差距,通过模拟一个类似于美国格兰德河裂谷的大陆裂谷系统,探讨各种构造-气候情景下水文连通性在较长时期内的变化。多个大湖所在的裂谷盆地因活跃的构造延伸而形成,又因构造延伸和裂谷后的气候变化而进一步成型。这项研究的重点是流域间河流断裂和节理点的产生等现象,并根据流速、流距和捕获的排水区等溪流网络特征收集了一系列时间序列的连通性指标。我们预计,从这项研究中获得的启示将有助于我们更好地理解构造和气候过程对水文连通性的持久影响以及水生物种的后续演化。
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Deciphering the interplay between tectonic and climatic forces on hydrologic connectivity in the evolving landscapes
The intricate interplay between climate and tectonics profoundly shapes landscapes over time frames surpassing 10 million years. Active tectonic processes and climatic shifts unsettle established drainage systems, instigating fragmentation or amalgamation of watersheds. These activities yield substantial transformation in surface hydrologic connectivity, thereby underlining the profound influence of these tectonic and climatic forces on the evolution of both landscape and hydrology. Such transformations within the hydrological landscape have direct implications for the evolution of aquatic species. As connections among aquatic habitats undergo reconfiguration, they incite shifts in species distribution and adaptive responses. These findings underscore the role of tectonics and climate in not only sculpting the physical landscape but also steering the course of biological evolution within these dynamically changing aquatic ecosystems relying on hydrologic connections. Despite the significance of these interactions, scholarly literature seldom examines alterations in hydrologic connectivity over tectonic, or orogen-scale, timescales. This study aims to bridge this gap, exploring changes in hydrologic connectivity over extended periods by simulating a continental rift system akin to the Rio Grande Rift, USA, subject to various tectonoclimatic scenarios. Multiple rift basins hosting large lakes, brought into existence by active tectonic extension, are further molded by tectonic extension and post-rift climatic changes. The study focuses on phenomena such as interbasin river breakthroughs and knickpoint generation, assembling a time-series of connectivity metrics based on stream network characteristics such as flow rate, flow distance, and captured drainage areas. We anticipate that the insights gleaned from this study will enhance our comprehension of the enduring impact of tectonic and climate processes on hydrologic connectivity and the subsequent evolution of aquatic species.
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来源期刊
Frontiers in Water
Frontiers in Water WATER RESOURCES-
CiteScore
4.00
自引率
6.90%
发文量
224
审稿时长
13 weeks
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