A north-flowing precursor to the Pecos River in the Gatu�a formation of southeastern New Mexico and Texas

S. Cather, M. Heizler
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Abstract

Axial-fluvial deposits in the Gatuña Formation of southeastern New Mexico have been recognized for decades. Contrary to existing models, 725 paleocurrent measurements presented here indicate this axial river flowed north, with mean values for individual localities ranging from northwest to north-northeast. Axial sediments were deposited by a regional braided paleoriver within evolving solution-subsidence basins near the modern, south-flowing Pecos River. These dissolution features preserved Gatuña deposits from paleo-landscape positions possibly hundreds of meters above the modern Pecos Valley. Most of the fluvial sedimentary fill within major solution-subsidence features is likely Miocene–Pleistocene, whereas the thin alluvial and eolian Gatuña on the margins of the modern Pecos Valley may be largely Pleistocene. Northward paleoflow (and its subsequent reversal) in southeastern New Mexico resulted largely from epeirogenic warping of the Llano Estacado region since the Oligocene. 90
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佩科斯河:新墨西哥州东南部和德克萨斯州加图河构造中佩科斯河向北流动的前体
新墨西哥州东南部Gatuña组的轴向河流沉积已经被发现了几十年。与现有模型相反,本文提供的725个古水流测量结果表明,这条轴向河流向北流动,其平均值从西北到东北偏北不等。轴向沉积物由区域性辫状古河流沉积于现代南流佩科斯河附近不断演化的溶蚀沉降盆地内。这些溶解特征保存了Gatuña沉积物,这些沉积物来自古地貌位置,可能比现在的佩科斯山谷高数百米。主要溶蚀沉降特征内的河流沉积填充物大部分可能是中新世-更新世,而现代佩科斯谷边缘的薄冲积和风成Gatuña可能主要是更新世。新墨西哥州东南部向北的古流动(及其随后的逆转)主要是由渐新世以来Llano Estacado地区的造陆翘曲造成的
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First-Day road log: From Washington Ranch to State Line Castile Gypsum Roadcut, Rader Debris Flow, Brushy Canyon Submarine Channel Sand, Salt Basin, Capitan Reef Overlook, Chosa Draw Evaporite Karst Features, and Parks Ranch Cave Critical Mineral Resources in the Cornudas Mountains, Otero County, New Mexico. A north-flowing precursor to the Pecos River in the Gatu�a formation of southeastern New Mexico and Texas Pre-conference field trip three: Carlsbad Cavern from Washington Ranch to Whites City, Walnut Canyon, scenic view of Delaware Basin, and Carlsbad Caverns Salt dissolution in the Salado formation (Upper Permian) and land subsidence south of Imperial, Pecos County, West Texas
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