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A two-dimensional morphological model based on next generation circulation solver II: Application to Caofeidian, Bohai Bay, China
Authors:Cui-Ping Kuang  Si-Yu Chen  Yu Zhang  Jie GuLing Deng  Yi PanJing Huang
Affiliation:
  • a Department of Hydraulic Engineering, College of Civil Engineering, Tongji University, Shanghai, 200092, China
  • b Department of Civil, Construction and Environmental Engineering, North Carolina State University, Raleigh NC 27606, USA
  • c School of Resources and Safety Engineering, China University of Mining and Technology, Beijing, 100083, China
  • d College of Marine Science, Shanghai Ocean University, Shanghai, 201306, China
  • Abstract:This paper is a companion of a two-part papers on the development of a two-dimensional morphological model—CurWaC2D-Sed, based on next generation circulation solver. In this paper, the model developed in paper I is applied to the large-scale construction of near-harbor industrial zone with deep water harbor by reclamation in Caofeidian, Bohai Bay, which is a typical sandbar-lagoon bay-type tidal inlet system. Characteristics of tides, currents, waves and sediments in Caofeidian are firstly analyzed with field data from comprehensive field observations carried out in 2008. These data are then used for model calibration and validation, showing a good agreement between simulated results and field measurements for tides, currents and suspended sediments. The verified model is applied to study the effects of the construction of Caofeidian embankment and the on-going engineering scheme on hydrodynamics and sediment transports as compared with no constructions under three representative tide conditions and their combinations with normal and strong waves as well as on morphology evolution. The simulated results indicate that the present scheme leads to morphological changes in Caofeidian with acceptable rates of erosion and sedimentation. However, some attentions should be paid to erosion at offshore wharf in front of Caofedian foreland which may lead to potentially increasing landslide risks due to steep slope and sedimentation in Laogonggou creek.
    Keywords:Coastal zone   Caofeidian   Reclamation   Hydrodynamic model   Morphological model   CurWac2D-Sed
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