World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
44
Citations
7195
World Ranking
5832
National Ranking
1117

Overview

Bin Teng is affiliated with Dalian University of Technology in China. Their research spans multiple fields primarily within engineering and earth and planetary sciences. The work focuses extensively on computational mechanics, ocean engineering, and earth-surface processes, reflecting an interdisciplinary approach to fluid dynamics and marine systems.

Teng's contributions emphasize topics related to wave and wind energy systems, coastal and marine dynamics, and fluid dynamics simulations and interactions. Additional areas of focus include fluid dynamics and vibration analysis, ocean waves and remote sensing, vibration and dynamic analysis, and geotechnical engineering and underground structures.

Frequent collaborators in Teng's research include Ying Gou, Peiwen Cong, Dezhi Ning, Yingyi Liu, and Longfei Cong. These coauthors have collectively contributed to various aspects of wave dynamics, fluid mechanics, and renewable energy technologies.

Teng has published extensively in several scientific venues, with a notable concentration in:

  • Ocean Engineering
  • Applied Ocean Research
  • Journal of Fluids and Structures
  • Physics of Fluids
  • Journal of Offshore Mechanics and Arctic Engineering

Significant publications by Teng showcase a range of topics from wave prediction models to hydrodynamic behavior of aquatic devices. Selected papers include:

  • "A hybrid VMD-LSTM/GRU model to predict non-stationary and irregular waves on the east coast of China," 2023, Ocean Engineering
  • "Wave power absorption by an oscillating water column (OWC) device of annular cross-section in a combined wind-wave energy system," 2021, Applied Ocean Research
  • "Bragg resonant reflection of water waves by a Bragg breakwater with porous rectangular bars on a sloping permeable seabed," 2021, Ocean Engineering
  • "Nonlinear Bragg scattering of surface waves over a two-dimensional periodic structure," 2022, Journal of Fluid Mechanics
  • "Hydrodynamic behavior of two-dimensional tandem-arranged flapping flexible foils in uniform flow," 2020, Physics of Fluids

The scope of Teng's research includes developing advanced models for wave behavior, analyzing energy systems that incorporate wind and wave dynamics, and investigating the hydrodynamic properties of marine structures. These efforts contribute to understanding complex fluid interactions and optimizing renewable energy devices.

Best Publications

  • An experimental investigation of hydrodynamics of a fixed OWC Wave Energy Converter

    De-Zhi Ning;Rong-Quan Wang;Qing-Ping Zou;Bin Teng

  • New higher-order boundary element methods for wave diffraction/radiation

    B. Teng;R.Eatock Taylor

  • Experiments on wave transmission coefficients of floating breakwaters

    G.H. Dong;Y.N. Zheng;Y.C. Li;B. Teng

  • Hydrodynamic forces on dual cylinders of different diameters in steady currents

    Ming Zhao;Liang Cheng;B. Teng;G. Dong

  • Investigation of hydrodynamic performance of an OWC (oscillating water column) wave energy device using a fully nonlinear HOBEM (higher-order boundary element method)

    De-Zhi Ning;Jin Shi;Qing Ping Zou;Bin Teng

  • Free-surface evolution and wave kinematics for nonlinear uni-directional focused wave groups

    D.Z. Ning;D.Z. Ning;J. Zang;S.X. Liu;R. Eatock Taylor

  • Numerical simulation of viscous flow past two circular cylinders of different diameters

    Ming Zhao;Liang Cheng;Bin Teng;Dongfang Liang

  • Laboratory tests of vortex-induced vibrations of a long flexible riser pipe subjected to uniform flow

    Ji-ning Song;Lin Lu;Bin Teng;Han-il Park;Han-il Park

  • POROUS EFFECT PARAMETER OF THIN PERMEABLE PLATES

    Yucheng Li;Yong Liu;Bin Teng

  • Numerical simulation of the hydrodynamic behaviour of submerged plane nets in current

    Yu-Cheng Li;Yun-Peng Zhao;Fu-Kun Gui;Bin Teng

  • Wave motion over a submerged breakwater with an upper horizontal porous plate and a lower horizontal solid plate

    Yong Liu;Yu-cheng Li;Bin Teng;Sheng Dong

  • Modelling of multi-bodies in close proximity under water waves—Fluid forces on floating bodies

    Lin Lu;Bin Teng;Liang Sun;Bing Chen

  • Three-dimensional scour below offshore pipelines in steady currents

    Liang Cheng;Kervin Yeow;Zhipeng Zhang;Bin Teng

  • Numerical investigation of fluid resonance in two narrow gaps of three identical rectangular structures

    Lin Lu;Liang Cheng;Bin Teng;Ming Zhao

  • Coupled dynamic analysis for wave interaction with a truss spar and its mooring line/riser system in time domain

    M. Yang;B. Teng;D. Ning;Z. Shi

  • Wave interaction with a perforated wall breakwater with a submerged horizontal porous plate

    Yong Liu;Yu-cheng Li;Bin Teng

  • Comparisons of internal solitary wave and surface wave actions on marine structures and their responses

    Z.J. Song;Z.J. Song;B. Teng;Y. Gou;L. Lu

  • Numerical simulation of the effects of structure size ratio and mesh type on three-dimensional deformation of the fishing-net gravity cage in current

    Yun-Peng Zhao;Yu-Cheng Li;Guo-Hai Dong;Fu-Kun Gui

  • Modelling of multi-bodies in close proximity under water waves: Fluid resonance in narrow gaps

    Lin Lu;Bin Teng;Liang Cheng;Liang Sun

  • Numerical simulation of coupling effect between ship motion and liquid sloshing under wave action

    Sheng-chao Jiang;Sheng-chao Jiang;Bin Teng;Wei Bai;Ying Gou

Frequent Co-Authors

Ming Zhao
Ming Zhao Western Sydney University
Liang Cheng
Liang Cheng Brown University
Christopher M. Waters
Christopher M. Waters Michigan State University
Yun-Peng Zhao
Yun-Peng Zhao China University of Mining and Technology
R. Eatock Taylor
R. Eatock Taylor University of Oxford
Lars Johanning
Lars Johanning University of Exeter
G. X. Wu
G. X. Wu University College London
Kanwaljeet J. S. Anand
Kanwaljeet J. S. Anand Stanford University

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