Abstract:
In the field of naval architecture the most competent recommendations in verification and validation of the numerical methods were developed within an international workshop on the numerical prediction of ship viscous flow which is held every five years in Gothenburg (Sweden) and Tokyo (Japan) alternately. In the workshop “Gothenburg-2000” three modern hull forms with reliable experimental data were introduced as test cases. The most general case among them is a containership KCS, a ship of moderate specific speed and fullness. The paper focuses on a numerical research of KCS hull flow, which was made according to the formal procedures of the workshop with the help of CEA FlowVision. Findings were compared with experimental data and computational data of other key CEA.
Keywords:
numerical towing test, verification of numerical methods.
Received: 17.06.2014
Document Type:
Article
UDC:
532: 629.5.016
Language: Russian
Citation:
A. V. Pechenyuk, “Benchmarking of CEA FlowVision in ship flow simulation”, Computer Research and Modeling, 6:6 (2014), 889–899
\Bibitem{Pec14}
\by A.~V.~Pechenyuk
\paper Benchmarking of CEA FlowVision in ship flow simulation
\jour Computer Research and Modeling
\yr 2014
\vol 6
\issue 6
\pages 889--899
\mathnet{http://mi.mathnet.ru/crm366}
\crossref{https://doi.org/10.20537/2076-7633-2014-6-6-889-899}
Linking options:
https://www.mathnet.ru/eng/crm366
https://www.mathnet.ru/eng/crm/v6/i6/p889
This publication is cited in the following 5 articles:
A. A. Aksenov, V. I. Pokhilko, A. P. Moryak, “Ispolzovanie pripoverkhnostnykh setok dlya chislennogo modelirovaniya vyazkostnykh yavlenii v zadachakh gidrodinamiki sudna”, Kompyuternye issledovaniya i modelirovanie, 15:4 (2023), 995–1008
Viktor G. Bugaev, Dam Van Tung Dam Van Tung, Yana R. Domashevskaya, Pham Trung Hiep Pham Trung Hiep, “THE NUMERICAL MODELLING OF HYDRODYNAMIC CHACRACTERISTICS OF THE PROPELLER-RUDDER SYSTEM AND TURNING CAPACITY OF THE FISHING VESSEL”, JWT, 2020, no. 62, 29
S. V. Zhluktov, A. A. Aksenov, D. V. Savitskii, “Vysokoreinoldsovye raschety turbulentnogo teploperenosa v programmnom komplekse FlowVision”, Kompyuternye issledovaniya i modelirovanie, 10:4 (2018), 461–481
A. A. Aksenov, “FlowVision: industrialnaya vychislitelnaya gidrodinamika”, Kompyuternye issledovaniya i modelirovanie, 9:1 (2017), 5–20
A. V. Pechenyuk, “Optimizatsiya sudovykh obvodov dlya snizheniya soprotivleniya dvizheniyu”, Kompyuternye issledovaniya i modelirovanie, 9:1 (2017), 57–65