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Aerodynamic optimisation of wings in multi-engined tractor propeller arrangements

机译:多引擎拖拉机螺旋桨装置中机翼的空气动力学优化

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Aerodynamic optimisation of wings in multi-engined tractor propeller arrangements is discussed and analysed with a fast calculation based on a Trefftz-plane analysis where the conservation laws of mass, momentum and energy are fulfilled in a control volume surrounding the configuration. The paper discusses the formulation of the optimisation algorithm based on augmented Lagrange integrals. The effect of viscous effects is incorporated in the calculation process. The method was implemented in a computer program which enables the user to find the optimum lift distribution for minimum drag for any tractor propeller/wing arrangement of arbitrary shape. As input for the slipstream data the user can either select input of experimental data or generate artificial data using a simple slipstream model based on the well-known blade element theory with Prandtl tip loss factor. Some numerical studies show that optimisation of a modern medium speed turboprop aircraft leads to performance increase by adapting the wing shape.
机译:通过基于Trefftz平面分析的快速计算,讨论并分析了多引擎拖拉机螺旋桨装置中机翼的空气动力学优化,在该结构中质量,动量和能量的守恒定律在配置周围的控制空间内得以实现。本文讨论了基于增强拉格朗日积分的优化算法的制定。粘性效应的影响已纳入计算过程。该方法是在计算机程序中实现的,该程序使用户能够为任意形状的任何拖拉机螺旋桨/机翼装置找到最小的阻力的最佳升力分布。作为滑流数据的输入,用户既可以选择实验数据的输入,也可以使用简单的滑流模型,基于具有Prandtl尖端损耗因子的著名叶片元素理论,使用简单的滑流模型来生成人工数据。一些数值研究表明,现代中速涡轮螺旋桨飞机的优化可通过调整机翼形状来提高性能。

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