Deprecated: $wgMWOAuthSharedUserIDs=false is deprecated, set $wgMWOAuthSharedUserIDs=true, $wgMWOAuthSharedUserSource='local' instead [Called from MediaWiki\HookContainer\HookContainer::run in /var/www/html/w/includes/HookContainer/HookContainer.php at line 135] in /var/www/html/w/includes/Debug/MWDebug.php on line 372
Layout optimization of two autonomous underwater vehicles for drag reduction with a combined CFD and neural network method - MaRDI portal

Layout optimization of two autonomous underwater vehicles for drag reduction with a combined CFD and neural network method (Q1694225)

From MaRDI portal





scientific article; zbMATH DE number 6833388
Language Label Description Also known as
English
Layout optimization of two autonomous underwater vehicles for drag reduction with a combined CFD and neural network method
scientific article; zbMATH DE number 6833388

    Statements

    Layout optimization of two autonomous underwater vehicles for drag reduction with a combined CFD and neural network method (English)
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    1 February 2018
    0 references
    Summary: This paper presents an optimization method for the design of the layout of an Autonomous Underwater Vehicles (AUV) fleet to minimize the drag force. The layout of the AUV fleet is defined by two nondimensional parameters. Firstly, three-dimensional Computational Fluid Dynamics (CFD) simulations are performed on the fleets with different layout parameters and detailed information on the hydrodynamic forces and flow structures around the AUVs is obtained. Then, based on the CFD data, a Back-Propagation Neural Network (BPNN) method is used to describe the relationship between the layout parameters and the drag of the fleet. Finally, a Genetic Algorithm (GA) is chosen to obtain the optimal layout parameters which correspond to the minimum drag. The optimization results show that (1) the total drag of the AUV fleet can be reduced by 12\% when the follower AUV is located directly behind the leader AUV and (2) the drag of the follower AUV can be reduced by 66\% when it is by the side of the leader AUV.
    0 references
    autonomous underwater vehicles
    0 references
    drag force
    0 references
    three-dimensional computational fluid dynamics
    0 references
    hydrodynamic forces
    0 references
    flow structures
    0 references
    back-propagation neural network (BPNN)
    0 references
    genetic algorithm
    0 references

    Identifiers

    0 references
    0 references
    0 references
    0 references
    0 references
    0 references
    0 references