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Drag reduction and shape optimization of airship bodies
被引:57
|作者:
Lutz, T
[1
]
Wagner, S
[1
]
机构:
[1] Univ Stuttgart, Inst Aerodynam & Gasdynam, D-70550 Stuttgart, Germany
来源:
关键词:
D O I:
10.2514/2.2313
中图分类号:
V [航空、航天];
学科分类号:
08 ;
0825 ;
摘要:
A tool for the numerical shape optimization of axisymmetric bodies submerged in incompressible now at zero incidence has been developed. Contrary to the usual approach, the geometry of the body is not optimized in a direct way with this method. Instead, a source distribution on the body axis was chosen to model the body contour and the corresponding inviscid flowfield, with the source strengths being used as design variables for the optimization process. Boundary-layer calculation is performed by means of a proved integral method. To determine the transition location, a semiempirical method based on Linear stability theory (e(n) method) was implemented. A commercially available hybrid optimizer as well as an evolution strategy with covariance matrix adaption of the mutation distribution are applied as optimization algorithms. Shape optimizations of airship hulls were performed for different Reynolds number regimes. The objective was to minimize the drag for a given volume of the envelope and a prescribed airspeed range.
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页码:345 / 351
页数:7
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