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Dong-Sheng Jeng

Dong-Sheng Jeng

D-Index & Metrics

Engineering and Technology

D-Index
62
Citations
13472
World Ranking
1911
National Ranking
105

Overview

Dong-Sheng Jeng is a researcher affiliated with Griffith University in Australia, specializing in multiple interdisciplinary fields related to engineering and earth sciences. Their scholarly contributions focus extensively on coastal and marine dynamics, geotechnical engineering, and fluid dynamics, with numerous studies exploring the interaction between oceanographic forces and engineering structures.

The main fields of study for this researcher include:

  • Engineering
  • Earth and Planetary Sciences
  • Environmental Science

Within these broad areas, Jeng's work often addresses specific subfields, notably:

  • Civil and Structural Engineering
  • Earth-Surface Processes
  • Ecology
  • Computational Mechanics
  • Ocean Engineering

The key research topics they have engaged with encompass:

  • Coastal and Marine Dynamics
  • Geotechnical Engineering and Underground Structures
  • Geotechnical Engineering and Soil Mechanics
  • Fluid Dynamics Simulations and Interactions
  • Coastal wetland ecosystem dynamics
  • Geotechnical Engineering and Soil Stabilization
  • Wave and Wind Energy Systems

Jeng's recent publications demonstrate a focus on the geomechanical and hydrodynamic behavior of seabeds and offshore structures under various forces. Selected recent papers include:

  • "Seismic-induced dynamic responses in a poro-elastic seabed: Solutions of different formulations," 2020, Soil Dynamics and Earthquake Engineering
  • "Numerical study on the frequency response of offshore monopile foundation to seismic excitation," 2021, Computers and Geotechnics
  • "Experimental study on irregular wave-induced pore-water pressures in a porous seabed around a mono-pile," 2020, Applied Ocean Research
  • "Combined wave-current induced seabed liquefaction around buried pipelines: Design of a trench layer," 2020, Ocean Engineering
  • "Impact of two-dimensional seepage flow on sediment incipient motion under waves," 2021, Applied Ocean Research

Jeng frequently publishes in venues central to marine and coastal engineering such as:

  • Ocean Engineering
  • Journal of Marine Science and Engineering
  • Applied Ocean Research
  • Coastal Engineering
  • Computers and Geotechnics

The researcher's body of work is often co-authored with a group of recurring collaborators, indicating ongoing partnerships in their domain. Frequent coauthors include:

  • Lin Cui
  • Hualing Zhai
  • Zuodong Liang
  • Hong Zhang
  • C.M. Wang

Best Publications

  • Wave-induced soil response in an unsaturated anisotropic seabed of finite thickness

    J. R. C. Hsu;D. S. Jeng

  • Neural network and neuro-fuzzy assessments for scour depth around bridge piers

    S. M. Bateni;S. M. Borghei;D. S. Jeng

  • Porous Models for Wave-seabed Interactions

    Dong-Sheng Jeng

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

    L. Li;D.A. Barry;F. Stagnitti;J.-Y. Parlange

  • Application of artificial neural networks in tide-forecasting

    TL Lee;Dong Sheng Jeng

  • Wave-induced seabed instability in front of a breakwater

    D.S. Jeng

  • An integrated model for the wave-induced seabed response around marine structures: Model verifications and applications

    Dong-Sheng Jeng;J.-H. Ye;J.-S. Zhang;P. L.-F. Liu

  • Response of Porous Seabed to Nature Loadings: Waves and Currents

    J.H. Ye;Dong-Sheng Jeng

  • Tidal influence on behaviour of a coastal aquifer adjacent to a low-relief estuary

    X. Mao;P. Enot;D. A. Barry;D. A. Barry;L. Li;L. Li

  • Wave-induced soil response in a nearly saturated sea-bed of finite thickness

    D. S. Jeng;J. S. C. Hsu

  • Neural network modeling for estimation of scour depth around bridge piers

    T.L. Lee;D.S. Jeng;G.H. Zhang;J.H. Hong

  • A half-space saturated poro-elastic medium subjected to a moving point load

    Jian-Fei Lu;Jian-Fei Lu;Dong-Sheng Jeng

  • Wave-induced sea floor dynamics

    Unknown

  • Wave-induced response of seabed: Various formulations and their applicability

    M.B.C. Ulker;M.S. Rahman;D.-S. Jeng

  • Effects of dynamic soil behavior and wave non-linearity on the wave-induced pore pressure and effective stresses in porous seabed

    Dong Sheng Jeng;Deaho Fred Cha

  • Numerical simulation of wave–current interaction using a RANS solver

    J.-S. Zhang;Y. Zhang;Dong-Sheng Jeng;Dong-Sheng Jeng;Dong-Sheng Jeng;P. L.-F. Liu;P. L.-F. Liu

  • A new analytical solution for water table fluctuations in coastal aquifers with sloping beaches

    H.T. Teo;D.S. Jeng;B.R. Seymour;D.A. Barry

  • Modeling sediment transport in the swash zone: A review

    Roham Bakhtyar;David Andrew Barry;Ling Li;Dong Sheng Jeng

  • Soil response in cross-anisotropic seabed due to standing waves

    Dong-Sheng Jeng

  • Investigation of nonlinear wave-induced seabed response around mono-pile foundation

    Zaibin Lin;Dubravka Pokrajac;Yakun Guo;Dong sheng Jeng

  • Short-crested wave-induced soil response in a porous seabed of infinite thickness

    J. R. C. Hsu;D. S. Jeng;C. P. Tsai

  • Estimation of pile group scour using adaptive neuro-fuzzy approach

    S.M. Bateni;D.-S. Jeng

Frequent Co-Authors

Ling Li
Ling Li University of Queensland
David Andrew Barry
David Andrew Barry École Polytechnique Fédérale de Lausanne
Frank Stagnitti
Frank Stagnitti Deakin University
David Lockington
David Lockington University of Queensland
Michael Blumenstein
Michael Blumenstein University of Technology Sydney
John S. Selker
John S. Selker Oregon State University
Marc B. Parlange
Marc B. Parlange University of Rhode Island
Hong Guan
Hong Guan Griffith University
Philip L.-F. Liu
Philip L.-F. Liu National University of Singapore
Paul D. Hallett
Paul D. Hallett University of Aberdeen

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