基于风阻的机载光电设备结构优化设计

Structural Optimization Design of an Airborne Electro-Optical Device based on Wind Resistance

  • 摘要: 为解决无人机飞行时机载光电设备方位、俯仰轴无法正常转动的问题,该文基于风阻对机载光电设备进行结构优化设计。首先,采用 CFD 仿真技术,计算优化前设备在不同方位角与俯仰角条件下的压力分布及风阻力矩,得到侧罩与俯仰座位置的压力集中特征,以及该工况下风阻力矩的变化规律与最大值。随后对设备侧罩和俯仰座进行结构优化设计,并计算优化后的风阻力矩。对比结果表明,该结构优化可有效减小设备所受风阻力矩,使其满足无人机飞行工况下的正常工作要求。

     

    Abstract: To address the issue that the azimuth and pitch axes of airborne electro-optical equipment cannot rotate normally during UAV flight, this paper presents a structural optimization design for the equipment based on wind resistance. First, CFD simulation is employed to calculate the pressure distribution and wind resistance moment of the original equipment under different azimuth and pitch angles, so as to obtain the pressure concentration characteristics at the side cover and pitch mount, as well as the variation law and maximum value of wind resistance moment under such conditions. Then, structural optimization is carried out for the side cover and pitch mount, and the wind resistance moment of the optimized structure is computed.Comparison results show that the proposed structural optimization can effectively reduce the wind resistance moment exerted on the equipment, enabling it to meet the operational requirements during UAV flight.

     

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