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The effect of stratification on wind-driven, cross-shelf circulation and transport on the inner continental shelf

机译:分层对内陆大陆架的风驱动,跨架交通和运输的影响

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摘要

Observations from a three-year field program on the inner shelf south of Martha's Vineyard, MA and a numerical model are used to describe the effect of stratification on inner shelf circulation, transport, and sediment resuspension height. Thermal stratification above the bottom mixed layer is shown to cap the height to which sediment is resuspended. Stratification increases the transport driven by cross-shelf wind stresses, and this effect is larger in the response to offshore winds than onshore winds. However, a one-dimensional view of the dynamics is not sufficient to explain the relationship between circulation and stratification. An idealized, cross-shelf transect in a numerical model (ROMS) is used to isolate the effects of stratification, wind stress magnitude, surface heat flux, cross-shelf density gradient, and wind direction on the inner shelf response to the cross-shelf component of the wind stress. In well mixed and weakly stratified conditions, the cross-shelf density gradient can be used to predict the transport efficiency of the cross-shelf wind stress. In stratified conditions, the presence of an along-shelf wind stress component makes the inner shelf response to cross-shelf wind stress strongly asymmetric.
机译:在马萨诸塞州玛莎葡萄园岛以南的内架上进行了为期三年的实地调查,并使用一个数值模型来描述分层对内架循环,运输和沉积物再悬浮高度的影响。底部混合层上方的热分层显示出了沉积物重悬的高度。分层增加了跨架风应力驱动的运输,与海上风相比,对海上风的响应效果更大。但是,动力学的一维视图不足以解释循环与分层之间的关系。数值模型(ROMS)中的理想化交叉架横断面用于隔离分层,风应力大小,表面热通量,交叉架密度梯度和风向对内部架对交叉架响应的影响风应力的组成部分。在充分混合和弱分层的条件下,跨架密度梯度可用于预测跨架风应力的传输效率。在分层条件下,沿架风应力分量的存在使内架对跨架风应力的响应强烈不对称。

著录项

  • 作者

    Horwitz Rachel Mandy;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 入库时间 2022-08-20 21:11:16

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