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Analytical modeling of helicopter static and dynamic induced velocity in GRASP

机译:GRASP中直升机静态和动态感应速度的解析模型。

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摘要

The methodology used by the General Rotorcraft Aeromechanical Stability Program (GRASP) to model the characteristics of the flow through a helicopter rotor in hovering or axial flight is described. Since the induced flow plays a significant role in determining the aeroelastic properties of rotorcraft, the computation of the induced flow is an important aspect of the program. Because of the combined finite-element/multibody methodology used as the basis for GRASP, the implementation of induced velocity calculations presented an unusual challenge to the developers. To preserve the modelling flexibility and generality of the code, it was necessary to depart from the traditional methods of computing the induced velocity. This is accomplished by calculating the actuator disc contributions to the rotor loads in a separate element called the air mass element, and then performing the calculations of the aerodynamic forces on individual blade elements within the aeroelastic beam element.
机译:描述了通用旋翼航空器航空机械稳定性程序(GRASP)用来对悬停或轴向飞行中通过直升机旋翼的流动特性进行建模的方法。由于诱导流在确定旋翼航空器的气动弹性特性中起着重要作用,因此诱导流的计算是程序的重要方面。由于将有限元/多体组合方法用作GRASP的基础,因此诱导速度计算的实现给开发人员带来了不寻常的挑战。为了保持代码的建模灵活性和通用性,有必要脱离计算感应速度的传统方法。这是通过在一个称为空气质量元件的单独元件中计算致动器盘对转子负载的贡献,然后对气动弹性梁元件中各个叶片元件上的空气动力进行计算来实现的。

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