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Featured researches published by D.-S. Jeng.


Advances in Water Resources | 2000

Beach water table fluctuations due to spring–neap tides: moving boundary effects

Ling Li; David Andrew Barry; Frank Stagnitti; J.-Y. Parlange; D.-S. Jeng

Tidal water table fluctuations in a coastal aquifer are driven by tides on a moving boundary that varies with the beach slope. One-dimensional models based on the Boussinesq equation are often used to analyse tidal signals in coastal aquifers. The moving boundary condition hinders analytical solutions to even the linearised Boussinesq equation. This paper presents a new perturbation approach to the problem that maintains the simplicity of the linearised one-dimensional Boussinesq model. Our method involves transforming the Boussinesq equation to an ADE (advection-diffusion equation) with an oscillating velocity. The perturbation method is applied to the propagation of spring-neap tides (a bichromatic tidal system with the fundamental frequencies wt and wt) in the aquifer. The results demonstrate analytically, for the first time, that the moving boundary induces interactions between the two primary tidal oscillations, generating a slowly damped water table fluctuation of frequency omega(1) - omega(2), i.e., the spring-neap tidal water table fluctuation. The analytical predictions are found to be consistent with recently published field observations


Advances in Water Resources | 2000

Beach water table fluctuations due to springneap tides: moving boundary effects

Ling Li; David Andrew Barry; Frank Stagnitti; J.-Yves Parlange; D.-S. Jeng


Journal of Hydrologic Engineering | 2003

Discussion of “Explicit solution to Green and Ampt infiltration equation” by Sergio E. Serrano

David Andrew Barry; J.-Y. Parlange; G. C. Sander; Ling Li; D.-S. Jeng; W. L. Hogarth


Advances in Water Resources | 2002

Comment on "Beach water fluctuations due to spring-neap tides: moving boundary effects." By L. Li, D.A. Barry, F. Stagnitti, J.-Y. Parlange, and D.-S. Jeng - Reply

Ling Li; David Andrew Barry; Frank Stagnitti; J.-Y. Parlange; D.-S. Jeng


Journal of Hydrologic Engineering | 2006

Discussion of “Closure to ‘Explicit Solution to Green and Ampt Infiltration Equation’ by Sergio E. Serrano”

David Andrew Barry; J.-Y. Parlange; G. C. Sander; Ling Li; D.-S. Jeng; W. L. Hogarth


Journal of Hydraulic Engineering | 2006

Discussion of "Explicit Solution to Green and Ampt Infiltration Equation"

David Andrew Barry; J.-Y. Parlange; G. C. Sander; Ling Li; D.-S. Jeng; W. L. Hogarth


congress on modelling and simulation | 2003

New approximation for tide-induced water table fluctuations at a sloping beach

D.-S. Jeng; Brian R. Seymour; H. T. Teo; David Andrew Barry; Ling Li


Archive | 2004

Modeling of Single-Phase Flow in One-Dimensional Poroelastic Media

David Andrew Barry; David A. Lockington; D.-S. Jeng; J.-Yves Parlange; Ling Li; Frank Stagnitti


Proceedings of the Thirteenth (2003) International Offshore and Polar Engineering Conference, Vol 3 | 2003

Analytical approximation for tidal dynamics in coastal aquifers

D.-S. Jeng; H. T. Teo; David Andrew Barry; Ling Li


MODSIM 2003 | 2003

New approximation for tide-induced water table fluctuations at a sloping beach. In D. Post (editor),

D.-S. Jeng; Brian R. Seymour; H. T. Teo; David Andrew Barry; Ling Li

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Ling Li

University of Queensland

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David Andrew Barry

École Polytechnique Fédérale de Lausanne

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G. C. Sander

Loughborough University

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Brian R. Seymour

University of British Columbia

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David Andrew Barry

École Polytechnique Fédérale de Lausanne

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