DocumentCode
2340869
Title
Simulation and Calculation of Hydrodynamic Forces of Components of Deep Sea Mining System
Author
Xiaozhou, Hu ; Shaojun, Liu
Author_Institution
Key Lab. of Modern Complex Equip. Design & Extreme Manuf., Central South Univ., Changsha, China
Volume
2
fYear
2010
fDate
18-20 Dec. 2010
Firstpage
354
Lastpage
357
Abstract
For the purpose of simulation of the deployment and retrieval of deep sea mining system, two methods for assessing the added mass of components of deep sea mining system are mainly proposed in this work. The first method is referred to as the Hess-Smith method which is based on surface panel method and potential theory, the surface of the moving object is discretized to lots of panels to approximate the object surface, and dipole or the combination of source and dipole are attached on each panel so as to determine velocity potential, then obtain added mass. The second method is referred to here as Fluent method which is a constant acceleration method based on the computational fluid dynamics (CFD) software Fluent. The added mass coefficient of components of mining system which are acquired from the two methods are approximately equal, both are applicable for infinite flow field, while for the condition of free surface, including water entry, mining tool touching down the seafloor, the Fluent method is more suitable.
Keywords
computational fluid dynamics; geophysics computing; hydrodynamics; mining equipment; oceanographic techniques; seafloor phenomena; CFD software; Fluent method; Hess-Smith method; computational fluid dynamics software; constant acceleration method; deep sea mining system; free surface; hydrodynamic forces; infinite flow field; mass coefficient; mining tool; object surface; potential theory; seafloor; surface panel method; velocity potential; water entry; Added mass; CFD; Fluent; Hess-Smith method; deep-sea mining system;
fLanguage
English
Publisher
ieee
Conference_Titel
Digital Manufacturing and Automation (ICDMA), 2010 International Conference on
Conference_Location
ChangSha
Print_ISBN
978-0-7695-4286-7
Type
conf
DOI
10.1109/ICDMA.2010.129
Filename
5701419
Link To Document