首页> 美国政府科技报告 >A SUBMERGED SINGULARITY METHOD FOR CALCULATING-POTENTIAL FLOW VELOCITIES AT ARBITRARY NEAR-FIELD POTNTS
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A SUBMERGED SINGULARITY METHOD FOR CALCULATING-POTENTIAL FLOW VELOCITIES AT ARBITRARY NEAR-FIELD POTNTS

机译:任意近场物质计算潜在流动速率的一种淹没奇异方法

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A discrete singularity method has been developed for calculating the potential flow around two-dimensional airfoils. The objective was to calculate velocities at any arbitrary point in the flow field, including points that approach the airfoil surface. That objective was achieved and is demonstrated here on a Joukowski airfoil. The method used combined vor-tices and sources "submerged" a small distance below the airfoil surface and incorporated a near-field subvortex technique developed earlier. When a velocity calculation point approached the airfoil surface, the number of discrete singularities effectively increased (but only locally) to keep the point just outside the error region of the submerged singularity discreti¬zation. The method could be extended to three dimensions, and should improve nonlinear methods, which calculate interference effects between multiple wings, and which include the effects of force-free trailing vortex sheets. The capability demonstrated here would extend the scope of such calculations to allow the close approach of wings and vortex sheets (or vortices).

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