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Provenance in drainage integration research: Case studies from the Phoenix metropolitan area, south-central Arizona

机译:排水整合研究中的来源:亚利桑那州南部凤凰城区的案例研究

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Studies of the evolution of drainage systems in extensional settings like the Basin and Range Province of western North America benefit from well drilling as a means of acquiring valuable insight. Cuttings from two wells drilled into sediments of the Phoenix metropolitan region, Arizona, USA, offer new insights into the drainage history of the Salt and Verde river drainage basins. Analyses of detrital zircons with U-Pb dating reveal a different signature for Ancestral Salt River Deposits (ASRD) as compared to the underlying basin fill. Trace element, Sr-87/Sr-86 ratios, and electron microprobe analyses of basalt fragments in the basal deposits of the ASRD in two different wells from Mesa, Arizona, show matches for outcrop sources near Bartlett Dam in the Verde drainage and near Stewart Mountain Dam in the Salt drainage. This indicates that the Salt and Verde rivers were transporting these basalts when the Salt River first flowed into the metropolitan Phoenix area. We employed tephrochronology to determine that the 3.3-Ma Nomlaki tuff accumulated in closed-basin playa deposits located near the present-day junction of the Salt and Verde rivers, providing a maximum-limiting age for the integration of both rivers. Because the age of mountains crossed by the Salt and Verde rivers pre-date 3.3 Ma by tens of millions of years, we rule out antecedence and superimposition as possible mechanisms to explain these transverse drainages. Multiple lines of evidence presented here are inconsistent with drainage piracy from headward erosion for both drainages: (i) headward erosion would have eroded analyzed basalt clasts from outcrop positions prior to drainage integration, and yet these clasts only occur in the lowest deposits of the ASRD; (ii) headward erosion would not be expected to create transverse streams in two distinct river drainages at the same time, and yet basalt clasts eroded from outcrops in the Salt and Verde rivers arrived together in the basal layer of the ASRD deposits, within the temporal resolution of 3 m sampling interval for well cuttings; (iii) headward erosion of the Verde River from the Nomlaki Tuff (providing maximum age of river integration at 3.3 Ma) to the breached Verde Formation-depositing lake at 2.5 Ma would require an extraordinarily fast rate of 12 cm/yr across multiple bedrock uplands; and (iv) Mescal Limestone clasts on the highest Salt River strath terrace cannot be explained by headward erosion. However, all analyzed evidence are consistent with the process of lake overflow. Based on our findings and the use of geomorphic criteria (Douglass et al., 2009), we conclude that lake overflow is the most likely cause of drainage integration of both the Salt River and the Verde River. (C) 2020 Elsevier B.V. All rights reserved.
机译:河北省盆地和范围省的拓展环境中排水系统演变的研究受益于钻井作为获取有价值的洞察力。来自美国亚利桑那州凤凰城大都会区沉积物的两台井的切割,对盐和佛得角排水盆地的排水史提供了新的见解。与U-PB约会的碎屑锆型分析揭示了祖先盐河沉积物(ASRD)的不同签名,相比底座填充物。来自Mesa,Asizona的两种不同井的ASRD基底沉积物中玄武岩碎片的痕量元素,SR-87 / SR-86比率和电子微探针分析,展示了Verde排水和斯图尔特附近的巴特利特大坝附近的露头来源的比赛在盐排水的山坝。这表明盐河首次流入大都市凤凰地区时盐和佛得角正在运输这些沼泽。我们使用Tephrochronologrogrologrogrologrogrolog方法,以确定3.3-MA Nomlaki Tuff在盐和佛得角河流当前交界处的封闭盆地Playa沉积物中累积,为两个河流集成的最大限制年龄。由于山脉的年龄被盐和佛得角横渡于数百万年的盐和verde河流,因此我们排除了解释这些横向排水的可能机制的止致和叠加。这里提出的多条证据与来自两种排水的前向侵蚀的排水盗版:(i)前向侵蚀将在排水集成之前从露出位置侵蚀分析的玄武岩泥浆,但这些含水物仅发生在ASRD的最低沉积物中; (ii)预计前部侵蚀将在两个不同的河流引流中同时产生横向流,但盐和威尔河中的露头侵蚀的玄武岩裂纹在颞叶内的基底层中抵达分辨率为3米采样间隔进行井切屑; (iii)从Nomlaki Tuff(3.3 mA提供最大河流整合的河流整合)向违规佛得角形成湖泊的前后侵蚀,在2.5 mA中需要跨越多个基岩的非常快速的> 12厘米/年的速度高地; (iv)最高盐河跑步架上的Mescal LimeStone Clasts不能通过前进的侵蚀来解释。然而,所有分析的证据都与湖泊溢出的过程一致。基于我们的研究结果和地貌标准的使用(Douglass等,2009),我们得出结论,湖泊溢出是盐河和佛得角的排水整合最有可能的原因。 (c)2020 Elsevier B.v.保留所有权利。

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