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Aerodynamic Drag Analysis of 3-DOF Flex-Gimbal GyroWheel System in the Sense of Ground Test

机译:地面试验意义上的三自由度柔性万向陀螺轮系统气动阻力分析

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摘要

GyroWheel is an innovative device that combines the actuating capabilities of a control moment gyro with the rate sensing capabilities of a tuned rotor gyro by using a spinning flex-gimbal system. However, in the process of the ground test, the existence of aerodynamic disturbance is inevitable, which hinders the improvement of the specification performance and control accuracy. A vacuum tank test is a possible candidate but is sometimes unrealistic due to the substantial increase in costs and complexity involved. In this paper, the aerodynamic drag problem with respect to the 3-DOF flex-gimbal GyroWheel system is investigated by simulation analysis and experimental verification. Concretely, the angular momentum envelope property of the spinning rotor system is studied and its integral dynamical model is deduced based on the physical configuration of the GyroWheel system with an appropriately defined coordinate system. In the sequel, the fluid numerical model is established and the model geometries are checked with FLUENT software. According to the diversity and time-varying properties of the rotor motions in three-dimensions, the airflow field around the GyroWheel rotor is analyzed by simulation with respect to its varying angular velocity and tilt angle. The IPC-based experimental platform is introduced, and the properties of aerodynamic drag in the ground test condition are obtained through comparing the simulation with experimental results.
机译:GyroWheel是一种创新的设备,它通过使用旋转柔性万向架系统将控制力矩陀螺仪的致动功能与调谐转子陀螺仪的速率感应功能结合在一起。但是,在地面测试过程中,不可避免地会出现气动干扰,这会阻碍规格性能和控制精度的提高。真空罐测试是可能的选择,但由于成本和复杂性的大幅增加,有时是不现实的。通过仿真分析和实验验证,研究了三自由度柔性万向陀螺轮系统的气动阻力问题。具体地,研究了旋转转子系统的角动量包络特性,并基于具有适当定义的坐标系的GyroWheel系统的物理配置推导了其整体动力学模型。在后续工作中,建立了流体数值模型,并使用FLUENT软件检查了模型的几何形状。根据三维转子运动的多样性和时变特性,通过仿真分析了陀螺转子周围的气流场,分析了其变化的角速度和倾斜角。介绍了基于IPC的实验平台,通过将模拟结果与实验结果进行比较,获得了地面测试条件下的气动阻力特性。

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