...
首页> 外文期刊>Geomorphology >Tidal resuspension and transport processes of fine sediment within the river plume in the partially-mixed Changjiang River estuary, China: A personal perspective
【24h】

Tidal resuspension and transport processes of fine sediment within the river plume in the partially-mixed Changjiang River estuary, China: A personal perspective

机译:长江三角洲部分混合河道内羽流中细沙的潮汐重悬和输送过程:个人观点

获取原文
获取原文并翻译 | 示例
           

摘要

This paper summarizes process-oriented field and numerical studies undertaken on the river plume in the partially-mixed Changjiang River estuary. Both estuarine circulation and tidal asymmetry are of great importance to the fine sediment processes. Mean suspended sediment concentration (C) and bottom shear stress are the dominant physical parameters controlling the flocculation and settling velocities (w_s) of mud flocs in suspension. Two important physical processes are revealed by acoustic imaging, i.e. (ⅰ) the near-bed impulsive resuspension and (ⅱ) the transport processes driven by fine sediment-induced plumes during a spring tide. A turbidity maximum, associated with a suspended sediment front, is observed. Its formation is caused mainly by tidal asymmetry, near-bed periodic tidal resuspension and turbulence suppression by suspension/salinity stratifications. A conceptual sketch of the turbidity maximum is cautiously proposed for the Changjiang River estuary. Four different settling velocity equations, taking flocculation into account, have different effects on the modeled concentration profiles of fine sediment: apparently, Cao and Wang (1994, pp. 252-253) would be the best for spring tide and Thorn (1982, Fig. 3/page 66) for neap tide. Both tidal acceleration and tidal deceleration have strong effects on the concentration profiles of fine sediment within the Changjiang River estuary.
机译:本文总结了部分混合长江口河道羽流的过程导向型场和数值研究。河口环流和潮汐不对称对精细沉积过程都非常重要。平均悬浮泥沙浓度(C)和底部切应力是控制悬浮泥浆絮凝絮凝和沉降速度(w_s)的主要物理参数。声学成像揭示了两个重要的物理过程,即(ⅰ)近床冲动重悬和(ⅱ)春季潮汐期间由细沙诱发的羽流驱动的输送过程。观察到最大浊度与悬浮的沉积物前沿有关。它的形成主要是由潮汐不对称,近床周期性潮汐重悬和悬浮/盐度分层抑制湍流引起的。谨慎地提出了长江口最大浊度的概念图。考虑到絮凝作用,四个不同的沉降速度方程对精细沉积物的浓度分布模型具有不同的影响:显然,曹和王(1994,pp。252-253)最适合春季潮汐和索恩(1982,图)。 3/66页)。潮汐加速和潮汐减速都对长江口细沙的浓度分布有很大影响。

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