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无人机新型水动力弹射动力学特性 被引量:1
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作者 张振华 吴向阳 +3 位作者 李春萍 张吉智 魏列江 王飞 《兵工学报》 EI CAS CSCD 北大核心 2021年第1期151-158,共8页
针对现役无人机气压、液压弹射方式结构复杂、功率受限等问题,提出一种新型无人机水动力弹射方案,利用高压水高速喷射产生的反推力作为弹射动力,实现无人机加速起飞。综合弹射器气室状态方程和水室动量方程、喷管能量方程和动量方程、... 针对现役无人机气压、液压弹射方式结构复杂、功率受限等问题,提出一种新型无人机水动力弹射方案,利用高压水高速喷射产生的反推力作为弹射动力,实现无人机加速起飞。综合弹射器气室状态方程和水室动量方程、喷管能量方程和动量方程、弹射负载力平衡方程等建立高压水高速喷射与弹射负载运动耦合的非线性弹射动力学模型,数值解析了弹射速度与位移、喷管喷射速度和反推力、弹射器气室压力等变化规律,以及弹射器直径、喷管直径和充气压力对弹射性能的影响。结果表明:随着弹射时间增加,弹射速度与位移分别近似呈对数曲线状、指数曲线状增大,喷管喷射速度和反推力、弹射器气室压力呈抛物线状显著下降;当弹射器直径为200 mm、弹射器长度为2400 mm、喷管直径为20 mm、充气压力为31.5 MPa时,能够将150 kg无人机在16.62 m内加速至25.03 m/s;增大弹射器直径对弹射性能影响不利;增大喷管直径对弹射速度影响不大,但会显著缩短弹射时间和距离、增大弹射过载;在弹射过载满足要求前提下适当增大弹射器充气压力,可减小弹射时间和距离并有助于增大弹射速度。 展开更多
关键词 无人机 水动力弹射 喷射反推 动力学特性 数值仿真
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Reaction thrust characteristics of high-pressure submerged water jet of cylinder nozzles 被引量:1
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作者 李晓晖 《Journal of Chongqing University》 CAS 2009年第1期63-69,共7页
The shapes and geometrical parameters of nozzles are key factors for fluidics. The relationship among the reaction thrust, flow rate pressure, diameter do and length L of a cylinder nozzle is analyzed theoretically. T... The shapes and geometrical parameters of nozzles are key factors for fluidics. The relationship among the reaction thrust, flow rate pressure, diameter do and length L of a cylinder nozzle is analyzed theoretically. The simulation of the flow field characteristics was conducted via the FLUENT computational fluid dynamics package. Effects of the inlet conditions and the nozzle dimensions on the reaction thrust of a water jet were addressed particularly. The reaction thrust experiments were performed on a custom-designed test apparatus. The experimental results reveal that a) the nozzle diameter and the inlet conditions exert great influence on the water jet reaction thrust; and b) for L≤4d0, where the nozzle is treated as a thin plate-orifice, the reaction thrust is independent of nozzle length; for L〉4d0, where the nozzle is treated as a long orifice, the reaction thrust can reach maximum under the condition of a certain flow rate. These findings lay a theoretical foundation for the design of nozzles and have significant value, especially for the future development of high-oressure water-let orooulsion technology. 展开更多
关键词 cylindrical nozzle pressure distribution reaction thrust characteristics turbulent flow water jet
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