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An analytical solution for tidal fluctuations in unconfined aquifers with a vertical beach

机译:垂直海滩无边含水层潮汐波动的解析解

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摘要

The perturbation technique has been commonly used to develop analytical solutions for simulating the dynamic response of tidal fluctuations in unconfined aquifers. However, the solutions obtained from the perturbation method might result in poor accuracy for the case of the perturbation parameter being not small enough. In this paper, we develop a new analytical model for describing the water table fluctuations in unconfined aquifers, based on Laplace and Fourier transforms. In the new approach, the mean sea level is used as the initial condition and a free surface equation, neglecting the second-order slope terms, as the upper boundary condition. Numerical results show that the present solution agrees well with trie finite different model with the second-order surface terms. Unlike Teo et al.'s (2003) approximation which restricts on the case of shallow aquifers, the present model can be applied to most of the tidal aquifers except for the very shallow one. In addition, a large-time solution in terms of sine function is provided and examined graphically with four different tidal periods.
机译:摄动技术已普遍用于开发分析解决方案,以模拟无限制含水层中潮汐波动的动态响应。但是,如果摄动参数不够小,则从摄动方法获得的解可能会导致精度差。在本文中,我们基于拉普拉斯(Laplace)和傅里叶(Fourier)变换,开发了一种用于描述无侧限含水层中地下水位波动的新分析模型。在新方法中,将平均海平面用作初始条件,而将忽略二阶坡度项的自由表面方程式用作上限条件。数值结果表明,该解与具有二阶表面项的有限差分模型非常吻合。与Teo等人(2003)的近似方法限制浅层含水层的情况不同,除了非常浅的含水层以外,本模型可以应用于大多数潮汐含水层。此外,提供了一个正弦函数方面的大型解决方案,并通过四个不同的潮汐时段以图形方式对其进行了检查。

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  • 来源
    《Water resources research》 |2010年第10期|p.W10535.1-W10535.12|共12页
  • 作者单位

    Institute of Environmental Engineering, National Chiao Tung University, 1001 University Rd., Hsinchu 300, Taiwan;

    rnInstitute of Environmental Engineering, National Chiao Tung University, 1001 University Rd., Hsinchu 300, Taiwan;

    rnInstitute of Environmental Engineering, National Chiao Tung University, 1001 University Rd., Hsinchu 300, Taiwan;

    rnDivision of Civil Engineering, University of Dundee, Dundee DD1 4HN, UK;

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