首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Sediment storage and transport in Pancho Rico Valley during and after the Pleistocene-Holocene transition, Coast Ranges of central California (Monterey County)
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Sediment storage and transport in Pancho Rico Valley during and after the Pleistocene-Holocene transition, Coast Ranges of central California (Monterey County)

机译:中新世-全新世过渡期间和之后,潘乔里科河谷的沉积物存储和运输,加利福尼亚中部海岸地区(蒙特雷县)

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摘要

Factors influencing sediment transport and storage within the 156.6 km(2) drainage basin of Pancho Rico Creek (PRC), and sediment transport from the PRC drainage basin to its c. 11000 km(2) mainstem drainage (Salinas River) are investigated. Numeric age estimates are determined by optically stimulated luminescence (OSL) dating on quartz grains from three sediment samples collected from a 'quaternary terrace a (Qta)' PRC terrace/PRC-tributary fan sequence, which consists dominantly of debris flow deposits overlying fluvial sediments. OSL dating results, morphometric analyses of topography, and field results indicate that the stormy climate of the Pleistocene-Holocene transition caused intense debris-flow erosion of PRC-tributary valleys. However, during that time, the PRC channel was backfilled by Qta sediment, which indicates that there was insufficient discharge in PRC to transport the sediment load produced by tributary-valley denudation. Locally, Salinas Valley alluvial stratigraphy lacks any record of hillslope erosion occurring during the Pleistocene-Holocene transition, in that the alluvial fan formed where PRC enters the Salinas Valley lacks lobes correlative to Qta. This indicates that sediment stripped from PRC tributaries was mostly trapped in Pancho Rico Valley despite the relatively moist climate of the Pleistocene-Holocene transition. Incision into Qta did not occur until PRC enlarged its drainage basin by c. 50% through capture of the upper part of San Lorenzo Creek, which Occurred some time after the Pleistocene-Holocene transition. During the relatively dry Holocene, PRC incision through Qta and into bedrock, as well as delivery of sediment to the San Ardo Fan, were facilitated by the discharge increase associated with stream-capture. The influence of multiple mechanisms on sediment storage and transport in the Pancho Rico Valley-Salinas Valley system exemplifies the complexity that (in some instances) must be recognized in order to correctly interpret terrestrial sedimentary sequences in tectonically active areas.
机译:影响Pancho Rico Creek(PRC)156.6 km(2)流域内泥沙输运和存储的因素,以及从PRC流域到其流域的输沙量c。调查了11000 km(2)主干排水(萨利纳斯河)。数字年龄估计值是通过对石英颗粒上的光激发发光(OSL)进行日期确定的,该石英颗粒是从“四阶a”(Qta)PRC阶地/ PRC分流扇形序列中采集的三个沉积物样本中确定的,该序列主要由上覆河流沉积物的泥石流沉积物组成。 。 OSL测年结果,地形形态分析和现场结果表明,更新世-全新世过渡的暴风雨气候导致了中国分流谷强烈的泥石流侵蚀。但是,在此期间,PRC通道被Qta沉积物回填,这表明PRC中的流量不足,无法运输支流谷地剥蚀产生的沉积物负荷。就局部而言,萨利纳斯河谷冲积地层缺乏在更新世-全新世过渡期间发生的山坡侵蚀的任何记录,因为中国进入萨利纳斯峡谷的地方形成的冲积扇缺乏与Qta相关的裂片。这表明尽管更新世-全新世过渡气候相对潮湿,但从中国支流剥离的沉积物大部分仍被困在Pancho Rico谷地。直到PRC将流域扩大了c才切入Qta。 50%是通过捕获圣洛伦索溪的上部而发生的,这是在更新世-全新世过渡之后的一段时间发生的。在相对干燥的全新世时期,PRCA穿过Qta切入并进入基岩,以及将泥沙输送到San Ardo Fan的原因是与溪流捕获有关的流量增加。 Pancho Rico山谷-Salinas山谷系统中多种机制对沉积物存储和运输的影响说明了(在某些情况下)必须认识到的复杂性,以便正确解释构造活动区内的陆地沉积序列。

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