3-DIMENSIONAL FLOW AROUND A SUBMERGED BODY IN FINITE-DEPTH WATER

被引:9
|
作者
SAHIN, I [1 ]
HYMAN, MC [1 ]
NGUYEN, TC [1 ]
机构
[1] USN,CTR SURFACE WARFARE,COASTAL SYST STN,PANAMA CITY,FL 32401
关键词
FINITE-DEPTH; 3-DIMENSIONAL;
D O I
10.1016/0307-904X(94)90319-0
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The three-dimensional fluid flow around an axisymmetric body submerged in a finite-depth fluid is calculated by an analytical/numerical method based on a Green's function formulation. The flow around a submerged axisymmetric body, such as the infinite-fluid analogue of a Rankine body, can be constructed by superposition of a source and a sink along the axis of symmetry. Analytical evaluation is complicated because of the singular Cauchy-type principal-value integrals with infinite and semi-infinite limits. In this study these integrals are evaluated by using a set of adaptive numerical quadratures. This approach is direct, and it does not require an asymptotic expansion. The results for the three-dimensional flow calculations are applied for the evaluation of pressure signatures of several Rankine-type bodies with different Froude numbers. Streamlines were determined by a second-order finite-difference algorithm that follows a fluid particle by solving an appropriate initial-value problem. As expected, the shape distortion from the infinite-fluid Rankine body geometry was significant when the slenderness and the linearity (small-wave elevation and slope) approximations became inappropriate.
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页码:611 / 619
页数:9
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