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The unconfined Kirkwood-Cohansey aquifer system is a major source of water for coastal communities in Ocean & Monmouth Counties, N.J. If present allocations were fully utilized, average withdrawals from the system could lower groundwater levels & reduce streamflows. In order to address concern about these effects, a study described & characterized the aquifer system, its interaction with surface water, & its response to withdrawals. Steady-state & transient numerical modeling techniques were applied to compare predevelopment & recent ground-water-flow patterns & to estimate average & seasonal hydrologic effects of projected increases in groundwater withdrawals.
In September 2006, research leaders in the field of coastal engineering, fluid mechanics, and wave theory met at Cornell University to celebrate the 60th birthday of Prof. Philip L-F Liu. This volume is a compilation of the research papers presented at the symposium, and includes both review and new research papers. Topics such as nonlinear wave theory, tsunamis, wave-structure interaction, turbulence, and modeling of complex sediment transport are discussed in this volume. All of the contributing authors are research collaborators of Prof. Liu, and include leaders in coastal engineering such as Maarten Dingemans, Hwung-Hweng Hwung, Nobu Kobayashi, Inigo Losada, Hocine Oumeraci, Costas Synolakis, and Harry Yeh.