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Exact actuator disk solutions for non-uniform heavy loading and slipstream contraction

机译:精确的执行器盘解决方案,用于非均匀的重载和滑流收缩

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A semi-analytical method has been developed to solve for the inviscid incompressible flow induced by a heavily loaded actuator disk with non-uniform loading. The solution takes the contraction of the slipstream fully into account. The method is an extension of the analytical theory of Conway (1995) for the linearized actuator disk and is exact for an incompressible perfect fluid. The solutions for the velocities and stream function are given as one-dimensional integrals of expressions containing complete elliptic integrals. Any load distribution with bounded radial gradient can be treated. Results are presented here for both contra-rotating and normal propellers. For the special case of a contra-rotating propeller with a parabolic velocity profile in the ultimate wake, the vorticity in the slipstream is shown to be the same as in the analytically tractable spherical vortex of Hill (1894) and the related family of steady vortices explored by Fraenkel (1970, 1972) and Norbury (1973). [References: 30]
机译:已经开发出一种半分析方法来解决由具有不均匀载荷的重载致动器盘引起的不粘不可压缩的流动。该解决方案充分考虑了滑流的收缩。该方法是Conway(1995)对线性致动器盘的分析理论的扩展,对于不可压缩的理想流体是精确的。速度和流函数的解以包含完整椭圆积分的表达式的一维积分形式给出。可以处理具有有限径向梯度的任何载荷分布。此处显示了反向旋转螺旋桨和正常螺旋桨的结果。对于在最终尾流中具有抛物线速度分布的反向旋转螺旋桨的特殊情况,表明滑流中的涡旋与希尔(1894)的解析易处理球形涡旋及相关的稳定涡旋族相同由Fraenkel(1970,1972)和Norbury(1973)探索。 [参考:30]

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