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Engineering and Technology

D-Index
39
Citations
5554
World Ranking
7754
National Ranking
482

Overview

Thorsten Stoesser is affiliated with University College London in the United Kingdom. Their research spans across various fields including Engineering, Earth and Planetary Sciences, and Environmental Science. Within these areas, Stoesser has contributed extensively to subfields such as Computational Mechanics, Earth-Surface Processes, Ecology, Civil and Structural Engineering, and Ocean Engineering.

The scientist's work covers key topics such as Hydrology and Sediment Transport Processes, Coastal and Marine Dynamics, Fluid Dynamics and Turbulent Flows, Fluid Dynamics Simulations and Interactions, Hydraulic Flow and Structures, Fluid Dynamics and Vibration Analysis, and Ocean Waves and Remote Sensing.

Recent notable publications by Stoesser include:

  • Experimental and numerical investigation of twin vertical axis wind turbines with a deflector, 2020, Energy Conversion and Management
  • Effect of pipeline surface roughness on peak impact forces caused by hydrodynamic submarine mudflow, 2021, Ocean Engineering
  • A methodology to predict the run-out distance of submarine landslides, 2022, Computers and Geotechnics
  • A three-dimensional Cartesian cut-cell/volume-of-fluid method for two-phase flows with moving bodies, 2020, Journal of Computational Physics
  • Investigation of fundamental mechanism leading to the performance improvement of vertical axis wind turbines by deflector, 2021, Energy Conversion and Management

Frequent co-authors who have collaborated with Stoesser include:

  • Zhihua Xie
  • Xingsen Guo
  • A. Christou
  • Qianyu Luo
  • Pablo Ouro

Throughout their career, Stoesser has published regularly in several venues. The most frequent publication platforms are:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Ocean Engineering
  • Proceedings of the 39th IAHR World Congress
  • Physics of Fluids
  • Journal of Hydraulic Research

In addition to journal articles, Stoesser has authored a book titled Hydrodynamics of Wave-Vegetation Interactions, published in 2023 by World Scientific.

Best Publications

  • Open Channel Flow through Different Forms of Submerged Flexible Vegetation

    C. A. M. E. Wilson;T. Stoesser;P. D. Bates;A. Batemann Pinzen

  • 3D numerical modelling of open-channel flow with submerged vegetation

    T. Fischer-Antze;T. Stoesser;P. Bates;N.R.B. Olsen

  • Large-Eddy Simulation in Hydraulics

    Wolfgang Rodi;George Constantinescu;Thorsten Stoesser

  • Turbulent Flow through Idealized Emergent Vegetation

    Thorsten Stoesser;Thorsten Stoesser;S. J. Kim;S. J. Kim;P. Diplas;P. Diplas

  • On the Values for the Turbulent Schmidt Number in Environmental Flows

    Carlo Gualtieri;Athanasios Angeloudis;Fabian Bombardelli;Sanjeev Jha

  • Turbulence Structures in Flow over Two-Dimensional Dunes

    Thorsten Stoesser;C. Braun;M. García-Villalba;W. Rodi

  • Large Eddy Simulations and Experiments of Flow Around Finite-Height Cylinders

    Guillermo Palau-Salvador;Thorsten Stoesser;Jochen Fröhlich;Michael Kappler

  • Turbulence statistics in an open-channel flow over a rough bed

    Sandeep Kumar Bomminayuni;Thorsten Stoesser

  • Calculation of primary and secondary flow and boundary shear stresses in a meandering channel

    Thorsten Stoesser;Nils Ruether;Nils Reidar Boe Olsen

  • Large Eddy Simulation of Turbulent Flow Through Submerged Vegetation

    Thorsten Stoesser;Guillermo Palau Salvador;Wolfgang Rodi;Panayiotis Diplas

  • Effects of a Fully Submerged Boulder within a Boulder Array on the Mean and Turbulent Flow Fields: Implications to Bedload Transport

    Athanasios N. Papanicolaou;Casey M. Kramer;Achilleas G. Tsakiris;Thorsten Stoesser

  • A LES-based Eulerian–Lagrangian approach to predict the dynamics of bubble plumes

    Bruño Fraga;Thorsten Stoesser;Chris C.K. Lai;Scott A. Socolofsky

  • Application of a 3D numerical model to a river with vegetated floodplains

    T. Stoesser;Catherine Wilson;P. D. Bates;A. Dittrich

  • Large-eddy simulation in hydraulics: Quo Vadis?

    Thorsten Stoesser

  • Hydrodynamic loadings on a horizontal axis tidal turbine prototype

    Pablo Ouro;Magnus Harrold;Thorsten Stoesser;Peter Bromley

  • Closure modeling and direct simulation of vegetation drag in flow through emergent vegetation

    Su Jin Kim;Thorsten Stoesser

  • An immersed boundary-based large-eddy simulation approach to predict the performance of vertical axis tidal turbines

    Pablo Ouro;Thorsten Stoesser

  • Large Eddy Simulation of Flow and Tracer Transport in Multichamber Ozone Contactors

    Dongjin Kim;Doo-Il Kim;Jae-Hong Kim;Thorsten Stoesser

  • Free-Surface versus Rigid-Lid LES Computations for Bridge-Abutment Flow

    Sibel Kara;Mustafa C. Kara;Thorsten Stoesser;Terry W. Sturm

  • Friction factor decomposition for rough-wall flows: theoretical background and application to open-channel flows

    V. I. Nikora;T. Stoesser;S. M. Cameron;M. Stewart

  • LES of the flow around two cylinders in tandem

    G. Palau-Salvador;T. Stoesser;W. Rodi

  • Turbulence statistics in compound channels with deep and shallow overbank flows

    Sibel Kara;Thorsten Stoesser;Terry W. Sturm

Frequent Co-Authors

Wolfgang Rodi
Wolfgang Rodi Karlsruhe Institute of Technology
Paul D Bates
Paul D Bates University of Bristol
Roger Alexander Falconer
Roger Alexander Falconer Cardiff University
Jae-Hong Kim
Jae-Hong Kim Yale University
Pengzhi Lin
Pengzhi Lin Sichuan University
Vladimir Nikora
Vladimir Nikora University of Aberdeen
Panayiotis Diplas
Panayiotis Diplas Lehigh University
Junqiang Xia
Junqiang Xia Wuhan University
James Leonard Best
James Leonard Best University of Illinois at Urbana-Champaign

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