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A finite element model of submarine groundwater discharge to tidal estuarine waters.

机译:海底地下水排入潮汐河口水的有限元模型。

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摘要

In the research presented here, a new ground water model, FEMCoast, was developed to simulate ground water discharge to the intertidal zone of estuarine systems. This research may be the first attempt to model the ground water discharge process in a tidal estaurine system. The development of FEMCoast was undertaken as no existing ground model was capable of directly simulating the dynamic boundary conditions along the sediment water interface of the intertidal zone. Reproducing the dynamic tidal boundary conditions along the sediment water interface was determined to be essential to replicating the complex salinity gradients observed in the ground water within the intertidal zone. Field data and model results confirmed the presence of a region of ground water where an inverted salinity gradient existed. In this region the concentration of salinity decreased with depth from the ground surface. FEMCoast was also able to reproduce field data on the movement of the near shore water table and ground water discharge rates and patterns. However, the model was not able to replicate the short-term fluctuation in the concentration of salinity within the aquifer due to changes in the concentration of salinity within Cherrystone Inlet. It is believed that the inability to account for the wave action of the tides within the intertidal zone is responsible for this difficulty. The use of FEMCoast integrated with field studies provided a new method to investigate ground water discharge to tidal estuarine systems.
机译:在这里提出的研究中,开发了一种新的地下水模型FEMCoast,以模拟地下水向河口系统潮间带的排放。这项研究可能是模拟潮汐河口系统中地下水排放过程的首次尝试。由于没有现有的地面模型能够直接模拟沿潮间带沉积物水界面的动态边界条件,因此进行了FEMCoast的开发。确定沿沉积物水界面再现动态潮汐边界条件对于复制潮间带地下水中观察到的复杂盐度梯度至关重要。现场数据和模型结果证实了存在一个盐度梯度倒置的地下水区域。在该区域,盐度的浓度随着距地表深度的增加而降低。 FEMCoast还能够复制有关近岸地下水位运动和地下水排放速率和模式的现场数据。但是,由于Cherrystone Inlet中盐度浓度的变化,该模型无法复制含水层中盐度浓度的短期波动。人们认为,无法解释潮间带内潮汐的波浪作用是造成这一困难的原因。 FEMCoast与现场研究相结合的使用提供了一种新的方法来调查潮汐河口系统的地下水排放。

著录项

  • 作者

    Robinson, Michael Anthony.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Hydrologic sciences.;Environmental engineering.;Ocean engineering.;Civil engineering.;Environmental science.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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