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Effect of leading edge cut on the aerodynamics of ram-air parachutes

机译:前缘切割对冲压空气降落伞空气动力学的影响

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摘要

The effect of the configuration of leading edge cut on the aerodynamic performance of ram-air parachutes is studied via two-dimensional flow simulations. The incompressible Reynolds-averaged Navier-Stokes equations, in primitive variables, are solved using a stabilized finite-element formulation. The Baldwin-Lomax model is employed for turbulence closure. Flow past an LS(1)0417 airfoil is investigated for various configurations of the leading edge cut and results are compared with those from a Clark-Y airfoil section. It is found that the configuration of the leading edge cut affects the lift-to-drag ratio (L/D) of the parachute very significantly. The L/D value has strong implications on the flight performance of the parachute. One particular configuration results in a L/D value that is in excess of 25 at 7.5° angle of attack. Results are presented for other angles of attack for this configuration.
机译:通过二维流动模拟研究了前缘切口的构型对冲压空气降落伞气动性能的影响。使用稳定的有限元公式求解原始变量中不可压缩的雷诺平均Navier-Stokes方程。 Baldwin-Lomax模型用于湍流封闭。研究了流经LS(1)0417机翼的流量的前缘切口的各种配置,并将结果与​​来自Clark-Y机翼截面的结果进行了比较。发现前缘切口的构型非常显着地影响降落伞的升力/阻力比(L / D)。 L / D值对降落伞的飞行性能有重要影响。一种特定的配置导致在7.5°迎角下的L / D值超过25。给出了针对该配置的其他迎角的结果。

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