Towards Uncertainty Analysis of CFD Simulation of Ship Responses in Regular Head Waves
Övrigt konferensbidrag, 2021
The eventual objective of this research is to perform verification and validation exercises of a ship performance prediction in regular head waves using CFD, whereas in this paper, the working progress is presented which may be subjected to significant revisions. To this end, extensive attempts have been made to investigate numerical wave propagation without the presence of the hull. Ship responses in waves are significantly influenced by the wave excitation forces. Therefore, not only high level of accuracy is required for the simulation of the numerical waves, but also quantification of the numerical uncertainties are of a great importance. This becomes even more challenging when the ship hydrodynamic responses, such as motions and added resistance in waves, exhibit dependencies on wave steepness. In this paper, the main focus of such uncertainty analyses is on the systematic grid convergence study.
Författare
Mohsen Irannezhad
Chalmers, Mekanik och maritima vetenskaper, Marin teknik
Rickard Bensow
Chalmers, Mekanik och maritima vetenskaper, Marin teknik
Martin Kjellberg
SSPA Sweden AB
Marine Structures
Arash Eslamdoost
Chalmers, Mekanik och maritima vetenskaper, Marin teknik
Proceedings of the 23rd Numerical Towing Tank Symposium, NuTTS 2021
Duisburg, Germany,
Propeller-skrov interaktionseffekter i vågor
Trafikverket, 2019-05-01 -- 2021-04-30.
Propeller-skrov interaktionseffekter i vågor - del 2
Trafikverket, 2021-05-01 -- 2023-10-31.
Trafikverket, 2021-05-01 -- 2023-10-31.
Trafikverket, 2021-05-01 -- 2023-10-31.
Drivkrafter
Hållbar utveckling
Styrkeområden
Transport
Energi
Infrastruktur
C3SE (Chalmers Centre for Computational Science and Engineering)
Ämneskategorier
Farkostteknik
Strömningsmekanik och akustik
Marin teknik