...
首页> 外文期刊>Progress in Physical Geography >Sediment storage, sea level, and sediment delivery to the ocean by coastal plain rivers
【24h】

Sediment storage, sea level, and sediment delivery to the ocean by coastal plain rivers

机译:沿海平原河的沉积物存储,海平面和沉积物向海洋的输送

获取原文
获取原文并翻译 | 示例

摘要

Coastal and marine sedimentary archives are sometimes used as indicators of changes in continental sediment production and fluvial sediment transport, but rivers crossing coastal plains may not be efficient conveyors of sediment to the coast. Where this is the case, changes in continental sediment dynamics are not evident at the river mouth. Stream power is typically low and accommodation space high in coastal plain river reaches, resulting in extensive alluvial storage upstream of estuaries and correspondingly low sediment loads at the river mouth. In some cases there is a net loss of sediment in lower coastal plain reaches, so that sediment input from upstream exceeds yield at the river mouth. The lowermost sediment sampling stations on many rivers are too far upstream of the coast to represent lower coastal plain sediment fluxes, and thus tend to overestimate sediment yields. Sediment which does reach the river mouth is often trapped in estuaries and deltas. Assessment of sediment flux from coastal plain rivers is also confounded by the deceptively simple question of the location of the mouth of the river. On low-gradient coastal plains and shelves, the location of the river mouth may have varied by hundreds of kilometers due to sea-level change. The mouth may also differ substantially according to whether it is defined based on channel morphology, network morphology, hydrographic or hydrochemical criteria, elevation of the channel relative to sea level, or the locus of deposition. Further, while direct continent-to-ocean flux may be very low at current sea-level stands, sediment stored in estuaries and lower coastal plain alluvium (including deltas) may eventually become part of the marine sedimentary package. The role of accommodation space in coastal plain alluvial sediment storage has been emphasized in previous work, but low transport capacity controlled largely by slope is also a crucial factor, as we illustrate with examples from Texas.
机译:沿海和海洋沉积档案有时被用作大陆沉积物生产和河流沉积物运输变化的指标,但是穿越沿海平原的河流可能不是将沉积物输送到海岸的有效途径。在这种情况下,河口处大陆沉积物动力学的变化并不明显。河水动力通常较低,沿海平原河段的住宿空间较高,导致河口上游广泛的冲积储存,河口的泥沙负荷也相应较低。在某些情况下,沿海低平原地区的沉积物净损失,因此上游的沉积物输入超过了河口的产量。许多河流中最低的沉积物采样站距离海岸上游太远,无法代表较低的沿海平原沉积物通量,因此往往高估了沉积物的产量。确实到达河口的沉积物通常被困在河口和三角洲中。来自沿海平原河的沉积物通量的评估也被看似简单的河流口位置问题混淆了。在低梯度的沿海平原和陆架上,由于海平面的变化,河口的位置可能相差数百公里。根据是否根据渠道形态,网络形态,水文或水化学标准,相对于海平面的渠道高度或沉积地点来定义,该口也可能有很大不同。此外,虽然在目前的海平面位上,大陆到海洋的直接通量可能很低,但河口和沿海平原冲积层(包括三角洲)中存储的沉积物最终可能会成为海洋沉积物包的一部分。在先前的工作中已经强调了居住空间在沿海平原冲积沉积物中的作用,但是主要由斜坡控制的低运输能力也是一个关键因素,正如我们从德克萨斯州的例子所说明的那样。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号