CFD Modeling of Wing and Body of an AUV for Estimation of Hydrodynamic Coefficients
Publish place: Journal of Applied Fluid Mechanics، Vol: 9، Issue: 6
Publish Year: 1395
Type: Journal paper
Language: English
View: 274
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Document National Code:
JR_JAFM-9-6_008
Index date: 22 January 2022
CFD Modeling of Wing and Body of an AUV for Estimation of Hydrodynamic Coefficients abstract
Coefficients or hydrodynamic derivatives of autonomous underwater vehicles (AUVs) play a key role in their design and maneuverability. Using a suitable method to estimate these coefficients serves as a time efficient approach to raise the achievable precision in the design and control of AUVs. This paper estimates hydrodynamic derivatives of an AUV using computational fluid dynamics (CFD) for the wings and body. CFD modeling was performed to simulate captive model tests including straight line and planar motion mechanism (PMM). In such runs, the process was implemented separately for the wing and body. Experimental tests for the same AUV in the water tunnel were carried out for CFD validation. Comparing the numerical results to the experimental data, it was shown that the modeling method is able to estimate these coefficients at reasonable accuracy. The proposed modeling method was proved to be efficient in estimating hydrodynamic derivatives and hence can reduce associated computational costs with the process of detail design of AUVs.
CFD Modeling of Wing and Body of an AUV for Estimation of Hydrodynamic Coefficients Keywords:
CFD Modeling of Wing and Body of an AUV for Estimation of Hydrodynamic Coefficients authors
N. M. Nouri
School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran
K. Mostafapour
School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran
S. H. Hassanpour
School of Mechanical Engineering, Iran University of Science and Technology, Tehran, Iran