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Influence of the Helicopter Configuration on its Electrostatic Charging

机译:直升机配置对其静电充电的影响

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A helicopter flying through an atmosphere containing particulates may accumulate high electrostatic charges which can challenge its operational safety. In this paper we report on the influence of the helicopter configuration on its electrification. Our study is based on a recently developed numerical approach according to which the turbulent air flow around the rotorcraft is estimated via large eddy simulations while the particulate flow is computed via Lagrangian particle tracking. Also, this approach incorporates a model for the triboelectric charge transfer during particle-helicopter collisions that is briefly described herein. The configurations that we examined in our study include rotor systems of two different sizes equipped with two, three or four blades. Our results reveal that a helicopter with fewer blades accumulates less electric current even though the charge on each individual blade is higher. Further, the location of the charge build-up on the rotor disk depends strongly on the number of blades. Also, according to our computations, a reduction of the rotor size leads to a reduction of its electrification, if all other parameters are kept constant.
机译:直升飞机在含有颗粒的大气中飞行时,可能会积聚大量静电,这可能会挑战其操作安全性。在本文中,我们报告了直升机配置对其电气化的影响。我们的研究基于最新开发的数值方法,根据该方法,旋翼飞机周围的湍流气流通过大型涡流模拟进行估算,而颗粒流则通过拉格朗日粒子跟踪计算。而且,该方法结合了在本文中简要描述的在粒子-直升机碰撞期间的摩擦电荷转移的模型。我们在研究中检查的配置包括两种不同尺寸的转子系统,它们配备有两个,三个或四个叶片。我们的结果表明,即使每个单独的叶片上的电荷较高,带有较少叶片的直升机也会累积较少的电流。此外,电荷积聚在转子盘上的位置在很大程度上取决于叶片的数量。同样,根据我们的计算,如果所有其他参数保持不变,则减小转子尺寸会导致其带电降低。

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