Exact solution for an optimal impermeable parachute problem
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摘要
In the paper there are solved direct and inverse boundary problems and analytical solutions are obtained for optimization problems in the case of some nonlinear integral operators. It is modeled the plane potential flow of an inviscid, incompressible and nonlimited fluid jet, witch encounters a symmetrical, curvilinear obstacle—the deflector of maximal drag. There are derived integral singular equations, for direct and inverse problems and the movement in the auxiliary canonical half-plane is obtained. Next, the optimization problem is solved in an analytical manner. The design of the optimal airfoil is performed and finally, numerical computations concerning the drag coefficient and other geometrical and aerodynamical parameters are carried out. This model corresponds to the Helmholtz impermeable parachute problem.
论文关键词:76B10,35J25,65K05,45G05,Inviscid jets,Direct and inverse problems,Singular integral equation,Optimal deflector airfoil
论文评审过程:Received 12 November 2000, Revised 4 February 2002, Available online 7 May 2002.
论文官网地址:https://doi.org/10.1016/S0377-0427(02)00436-3