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CARBONATE LAKE DEPOSITS ASSOCIATED WITH DISTAL SILICICLASTIC PERENNIAL-RIVER SYSTEMS

机译:与硅质弹塑性永河系统相伴的碳酸盐湖沉积

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The genesis of thick accumulations of carbonate lake deposits on the siliciclastic floodplains of perennial rivers situated below the regional spring line requires (1) a significant source for calcium in the watershed and (2) a protected area to accumulate calcite. The Phanerozoic record of fluvial deposits shows that anastomosing rivers with carbonate-rich provenance situated in distal areas below the spring line are the best environments for floodplain accumulation of significant carbonate lake deposits. Anastomosing rivers exist below the regional spring line and have isolated flood basins generally protected from bedload by high levees, receiving suspended and dissolved load during flooding events. Numerical modeling to test the rate of accumulation for these carbonate sediments was performed using stratigraphic data from the Pennsylvanian succession containing floodplain limestones of the Stewart Quadrangle of Athens County in Ohio (USA). Limestone volumes for six limestone units (Upper Pittsburgh, Fishpot, Sewickley, Benwood/Arnoldsburg, Uniontown, and Waynesburg limestones) were calculated with the assumption of overland input of dissolved calcite from carbonate source areas. In comparing the calcium input rate to the amount of calcium calculated from limestone unit volumes, overland transport of calcium ions, not spring input, can supply sufficient ions to accumulate thick carbonates over the short lifetime of floodplain lakes within anastomosing river systems.
机译:在区域性春季线以下的多年生河的硅质碎屑洪泛区上,碳酸盐湖沉积物的厚堆积成因需要(1)流域中钙的重要来源,以及(2)需要保护方解石以积累方解石。河床沉积的古生代记录表明,位于泉水线以下远侧区域的富含碳酸盐物源的吻合河是大量碳酸盐湖沉积物漫滩积聚的最佳环境。吻合河存在于区域春季线以下,并且具有隔离的洪水盆地,这些洪水盆地通常受到高堤的保护,免于河床负荷,在洪水事件中承受悬浮和溶解的负荷。使用来自宾夕法尼亚州含美国俄亥俄州雅典县斯图尔特四边形的洪泛平原石灰石的演替的地层数据,进行了数值模型测试这些碳酸盐沉积物的沉积速率。六个石灰石单元(上匹兹堡,Fishpot,Sewickley,Benwood / Arnoldsburg,Uniontown和Waynesburg石灰石)的石灰石体积是在假设碳酸盐岩来源地区溶解方解石从陆上输入的情况下计算的。在将钙的输入速率与根据石灰石单位体积计算出的钙量进行比较时,钙离子的陆上运输而不是春季的输入可以提供足够的离子,从而在河道内的漫滩湖的短寿命内积累浓厚的碳酸盐。

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