Tectonically controlled drainage fragmentation in the southwestern Great Basin, USA

GSA Bulletin Pub Date : 2022-12-20 DOI:10.1130/b36563.1
B. Lutz, J. Knott, F. Phillips, M. Heizler, K.A. Heitkamp, Jr., E. Griffie, G. Axen, J. Calzia
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引用次数: 1

Abstract

The area now occupied by the Great Basin, western USA, contained paleo-fluvial systems that predated the modern-day endorheic (closed) basins. The areal extent of these paleo-fluvial systems within the southwestern Great Basin is known mainly from isolated remnants preserved in the modern mountain ranges. We document the age, extent, and tectonic disruption of Mio-Pliocene fluvial systems of the southwestern Great Basin. Synthesis of new field observations, geochemistry, and geochronology with existing studies defines two latest Miocene to Pliocene east-southeast flowing drainages that predated the modern endorheic basins. The drainage network was ultimately fragmented in Pliocene time (ca. 3.5-4 Ma). Fragmentation of the drainage network led to lake formation, drying of lakes, and the formation of isolated springs. The rapid environmental changes initiated by faulting and volcanism isolated previously interbreeding populations of spring-dwelling taxa and have caused divergent evolution since Pliocene time. Modern endemism within the region’s springs is thus a direct consequence of intraplate tectonism.
美国大盆地西南部构造控制的水系破碎化
美国西部现在被大盆地占据的地区,包含了比现代内陆(封闭)盆地更早的古河流系统。大盆地西南部这些古河流系统的面积范围主要是通过保存在现代山脉中的孤立残余物来确定的。我们记录了西南大盆地中新世-上新世河流系统的年龄、范围和构造破坏。将新的野外观测、地球化学和地质年代学与现有研究相结合,确定了两个最新的中新世至上新世东-东南流动流域,它们早于现代内海盆地。在上新世(约3.5-4 Ma),水系网络最终破碎。排水网络的破碎导致湖泊的形成、湖泊的干涸和孤立泉水的形成。自上新世以来,由断裂和火山活动引发的快速环境变化使以前在春季栖息的杂交种群被隔离,并引起了分化进化。因此,该地区泉水中的现代特有现象是板块内构造作用的直接结果。
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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