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Ahmet Soydan

Last ned pressefoto
Last ned pressefoto
Foto:

Ahmet Soydan

Stipendiat
Institutt for bygg- og miljøteknikk

ahmet.soydan@ntnu.no
Byggteknisk, S-247, Gløshaugen, Høgskoleringen 7a
ResearchGate Google Scholar REEF3D : Open-Source Hydrodynamics
Om Publikasjoner Undervisning Formidling

Om

CV

Ahmet Soydan is currently pursuing his PhD thesis, titled "Numerical Modeling of Ship Hydrodynamics in Real Sea Conditions," under the supervision of Professor Hans Bihs in the Marine Civil Engineering Research Group. He received his master’s degree in the Department of Naval Architecture and Marine Engineering, from Istanbul Technical University in 2018. Previously, he worked as a Research Engineer at Milper Propeller Technologies Inc. (2015-2017), SEFT Ship Design (2017-2019), and Turkish Aerospace (2019-2021). His research interests include: 

  • Computational fluid dynamics (CFD)
  • Ship hydrodynamics in waves
  • Wave-structure interaction
  • Floating body dynamics in waves
  • Mooring line's dynamics
  • High-performance computing (HPC)
  • Rotor/propeller aero/hydrodynamics-aero/hydroacoustics

Kompetanseord

  • Marin hydrodynamikk
  • Marine propeller og fremdrift
  • Marinteknologi
  • Numerisk simulering

Publikasjoner

  • Kronologisk
  • Etter kategori
  • Se alle publikasjoner i Cristin

2025

  • Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2025) An improved direct forcing immersed boundary method for floating body simulations in waves. Applied Ocean Research
    Vitenskapelig artikkel

2024

  • Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2024) An Upgraded Direct Forcing Immersed Boundary Method With Integrated Mooring Algorithm for Floating Offshore Wind Turbines. The American Society of Mechanical Engineers (ASME)
    Vitenskapelig Kapittel/Artikkel/Konferanseartikkel
  • Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2024) An Improved Direct Forcing Immersed Boundary Method With Integrated Mooring Algorithm for Floating Offshore Wind Turbines. Journal of Offshore Mechanics and Arctic Engineering
    Vitenskapelig artikkel

2022

  • Soydan, Ahmet; Wang, Weizhi; Kamath, Arun; Bihs, Hans. (2022) A direct forcing immersed boundary method for simulating floating objects. Taylor & Francis
    Vitenskapelig Kapittel/Artikkel/Konferanseartikkel
  • Soydan, Ahmet; Şahin, Hürkan; Biçer, Barış; Sarıözkan, Şebnem; Şahin, Mehmet. (2022) Experimental and Numerical Investigation of Co-Axial Rotor Interaction to Thrust. Progress in Computational Fluid Dynamics, An International Journal (CFD)
    Vitenskapelig artikkel

2021

  • Soydan, Ahmet; Bal, Şakir. (2021) An investigation of scale effects on marine propeller under cavitating and non-cavitating conditions. Ship Technology Research
    Vitenskapelig artikkel

Tidsskriftspublikasjoner

  • Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2025) An improved direct forcing immersed boundary method for floating body simulations in waves. Applied Ocean Research
    Vitenskapelig artikkel
  • Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2024) An Improved Direct Forcing Immersed Boundary Method With Integrated Mooring Algorithm for Floating Offshore Wind Turbines. Journal of Offshore Mechanics and Arctic Engineering
    Vitenskapelig artikkel
  • Soydan, Ahmet; Şahin, Hürkan; Biçer, Barış; Sarıözkan, Şebnem; Şahin, Mehmet. (2022) Experimental and Numerical Investigation of Co-Axial Rotor Interaction to Thrust. Progress in Computational Fluid Dynamics, An International Journal (CFD)
    Vitenskapelig artikkel
  • Soydan, Ahmet; Bal, Şakir. (2021) An investigation of scale effects on marine propeller under cavitating and non-cavitating conditions. Ship Technology Research
    Vitenskapelig artikkel

Del av bok/rapport

  • Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2024) An Upgraded Direct Forcing Immersed Boundary Method With Integrated Mooring Algorithm for Floating Offshore Wind Turbines. The American Society of Mechanical Engineers (ASME)
    Vitenskapelig Kapittel/Artikkel/Konferanseartikkel
  • Soydan, Ahmet; Wang, Weizhi; Kamath, Arun; Bihs, Hans. (2022) A direct forcing immersed boundary method for simulating floating objects. Taylor & Francis
    Vitenskapelig Kapittel/Artikkel/Konferanseartikkel

Undervisning

Emner

  • TBA4270 - Coastal Engineering

Formidling

2024

  • Vitenskapelig foredrag
    Soydan, Ahmet; Knoblauch, Fabian Maximilian; Wang, Widar Weizhi; Dempwolff, León-Carlos; Goseberg, Nils; Bihs, Hans. (2024) Numerical modelling of primary ship waves in shallow coastal areas using CFD. 38th International Conference on Coastal Engineering , Rome 2024-09-08 - 2024-09-14
  • Faglig foredrag
    Soydan, Ahmet. (2024) A New FSI Algorithm for Floating Body Simulations in Waves. SINTEF Ocean IPIRIS Project Partner Meeting 2024 , Ålesund 2024-06-18 - 2024-06-18
  • Vitenskapelig foredrag
    Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2024) Ship Hydrodynamic Simulations Using an Upgraded Direct Forcing Immersed Boundary Method. 26th Numerical Towing Tank Symposium 2024-10-23 - 2024-10-25
  • Vitenskapelig foredrag
    Knoblauch, Fabian Maximilian; Soydan, Ahmet; Wang, Widar Weizhi; Bihs, Hans. (2024) Implementation of a VOF-PLIC Routine to improve the Free Furface Representation in a Signed Distance Function based CFD-Solver. Pontifical Gregorian University 38th International Conference on Coastal Engineering , Rome 2024-09-08 - 2024-09-14

2023

  • Vitenskapelig foredrag
    Soydan, Ahmet; Wang, Weizhi; Bihs, Hans. (2023) An Improved Direct Forcing Immersed Boundary Method for Simulating Floating Objects. 10th Conference on Computational Methods in Marine Engineering (Marine 2023) , Madrid 2023-06-27 - 2023-06-29
  • Vitenskapelig foredrag
    Soydan, Ahmet; Wang, Weizhi; Bihs, Hans. (2023) Numerical Applications of Wave-Structure Interaction Problems Using a Direct Forcing Immersed Boundary Method in REEF3D::CFD. 25th Numerical Towing Tank Symposium , Ericira 2023-10-15 - 2023-10-17
  • Vitenskapelig foredrag
    Knoblauch, Fabian; Soydan, Ahmet; Wang, Weizhi; Bihs, Hans Sebastian. (2023) The Fixed Grid Fully Non-linear Potential Flow Model REEF3D::PTF - Examination of Different Methods for Solving The Laplace Equation at the Free Surface. International Centre for Numerical Methods in Engineering (CIMNE) 10th International Conference on Computational Methods in Marine Engineering , Madrid, Spain 2023-06-27 - 2023-06-29

2021

  • Vitenskapelig foredrag
    Soydan, Ahmet; Kamath, Arun; Martin, Tobias; Bihs, Hans. (2021) Validation of the direct forcing immersed boundary method of REEF3D for floating objects. UiS Third Conference of Computational Methods and Ocean Technology (COTech) , Stavanger 2021-11-25 - 2021-11-26

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