美国加利福尼亚州英约县大盆地西部深泉河谷上新世-更新世海相同位素5a和4期水文与洪积湖

IF 1.7 3区 地球科学 Q3 GEOGRAPHY, PHYSICAL Quaternary Research Pub Date : 2023-06-01 DOI:10.1017/qua.2023.20
J. Knott, S. Mahan, J. Bright, L. Langer, Adam Ramirez, Kyle R. McCarty, Anna L. Garcia
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引用次数: 0

摘要

摘要Deep Springs Valley(DSV)是White山脉和Inyo山脉之间的一个水文孤立的山谷,通常被排除在区域古水文和古气候学之外。先前的研究表明,在更新世毕晓普塔夫火山爆发(0.772 Ma)后的某个时候,深泉断层对深泉山脊(非正式名称)的抬升击败了穿过DSV的溪流,并在水文上孤立了山谷。在这里,我们提出了温压纪年和碎屑计数,重申了更新世上新世-更新世水文的中断和DSV的形成。古生物学和红外激发发光(IRSL)日期表明,约83-61 ka或更新世晚期海洋同位素第5a阶段(MIS 5a;约82 ka峰值)和第4阶段(MIS 4;约71-57 ka),淡水湖淹没了深泉谷。雨水深泉湖的年龄与欧文斯山谷和哥伦布盐沼的雨水湖相吻合,并记录了MIS 5a和MIS 4期间北美洲西南部更大的有效降水量。此外,我们假设Deep Springs湖是一个平衡的填充湖,在MIS 5a和MIS 4期间通过士兵通道的风隙溢流到尤里卡山谷。DSV水文对深泉黑蟾蜍(Anaxyrus exsul)的扩散和特有性有影响。
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Pliocene–Pleistocene hydrology and pluvial lake during Marine Isotope Stages 5a and 4, Deep Springs Valley, western Great Basin, Inyo County, California
Abstract Deep Springs Valley (DSV) is a hydrologically isolated valley between the White and Inyo mountains that is commonly excluded from regional paleohydrology and paleoclimatology. Previous studies showed that uplift of Deep Springs ridge (informal name) by the Deep Springs fault defeated streams crossing DSV and hydrologically isolated the valley sometime after eruption of the Pleistocene Bishop Tuff (0.772 Ma). Here, we present tephrochronology and clast counts that reaffirms interruption of the Pliocene–Pleistocene hydrology and formation of DSV during the Pleistocene. Paleontology and infrared stimulated luminescence (IRSL) dates indicate a freshwater lake inundated Deep Springs Valley from ca. 83–61 ka or during Late Pleistocene Marine Isotope Stages 5a (MIS 5a; ca. 82 ka peak) and 4 (MIS 4; ca. 71–57 ka). The age of pluvial Deep Springs Lake coincides with pluvial lakes in Owens Valley and Columbus Salt Marsh and documents greater effective precipitation in southwestern North America during MIS 5a and MIS 4. In addition, we hypothesize that Deep Springs Lake was a balanced-fill lake that overflowed into Eureka Valley via the Soldier Pass wind gap during MIS 5a and MIS 4. DSV hydrology has implications for dispersal and endemism of the Deep Springs black toad (Anaxyrus exsul).
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来源期刊
Quaternary Research
Quaternary Research 地学-地球科学综合
CiteScore
4.70
自引率
8.70%
发文量
57
审稿时长
3 months
期刊介绍: Quaternary Research is an international journal devoted to the advancement of the interdisciplinary understanding of the Quaternary Period. We aim to publish articles of broad interest with relevance to more than one discipline, and that constitute a significant new contribution to Quaternary science. The journal’s scope is global, building on its nearly 50-year history in advancing the understanding of earth and human history through interdisciplinary study of the last 2.6 million years.
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