首页> 外文期刊>Sedimentology: Journal of the International Association of Sedimentologists >Regulation of sand transport in the Colorado River by changes in the surface grain size of eddy sandbars over multi-year timescales
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Regulation of sand transport in the Colorado River by changes in the surface grain size of eddy sandbars over multi-year timescales

机译:通过多年时间尺度上的涡流沙洲表面颗粒大小的变化来调节科罗拉多河的沙子运输

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In settings where the transport of sand is partially or fully supply limited, changes in the upstream supply of sand are coupled to changes in the grain size of sand on the bed. In this manner, the transport of sand under the supply-limited case is ' grain-size regulated '. Since the closure of Glen Canyon Dam in 1963, the downstream reach of the Colorado River in Marble and Grand Canyons has exhibited evidence of sand-supply limitation. Sand transport in the river is now approximately equally regulated by changes in the discharge of water and changes in the grain sizes of sand on the channel bed and eddy sandbars. Previous work has shown that changes in the grain size of sand on the bed of the channel (driven by changes in the upstream supply of sand owing to both tributary floods and high dam releases) are important in regulating sand transport over timescales of days to months. In this study, suspended-sand data are analysed in conjunction with bed grain-size data to determine whether changes in the grain size of sand on the bed of the channel or changes in the grain size of sand on the surface of eddy sandbars have been more important in regulating sand transport in the post-dam Colorado River over longer, multi-year timescales. The results of this study show that this combined theory- and field-based approach can be used to deduce which environments in a complicated setting are the most important environments for regulating sediment transport. In the case of the regulated Colorado River in Marble and Upper Grand Canyons, suspended-sand transport has been regulated mostly by changes in the surface grain size of eddy sandbars.
机译:在部分或全部供应沙粒受到限制的环境中,上游沙粒供应的变化与床上砂粒大小的变化有关。这样,在供应受限的情况下,沙子的运输是“粒度调节的”。自1963年格伦峡谷大坝关闭以来,科罗拉多河在大理石和大峡谷的下游河段已显示出供沙受限的迹象。现在,河水中的沙子运输受到排水量的变化以及河床和涡流沙洲上的沙粒大小的变化的大致相同的调节。先前的工作表明,河床底砂的粒度变化(由支流洪水和高坝释放造成的上游砂供应变化驱动)对于调节几天到几个月时间范围内的砂运输非常重要。 。在这项研究中,将悬浮砂数据与河床粒度数据一起进行分析,以确定通道河床上沙的粒度变化或涡流沙洲表面的沙粒度变化是否已经发生。在更长的多年时间范围内,对调节大坝后科罗拉多河的沙粒运输至关重要。这项研究的结果表明,这种结合了基于理论和基于领域的方法可以用来推断在复杂环境中哪些环境是调节沉积物输送的最重要环境​​。就大理石和上大峡谷受管制的科罗拉多河而言,悬浮砂的运输主要受到涡流沙洲表面颗粒尺寸变化的制约。

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