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作 者:于金革[1,2] 卜忱 吴帅[3] 李立 明强[1,2] 马占元[1,2] YU Jin-ge;BU Chen;WU Shuai;LI Li;MING Qiang;MA Zhan-yuan(AVIC Aerodynamics Research Institute,Harbin,Heilongjiang 150001;Aerodynamics for Low Speed and High Reynolds Number,Harbin,Heilongjiang 150001;Beihang University,Beijing 100191)
机构地区:[1]中国航空工业空气动力研究院,黑龙江哈尔滨150001 [2]低速高雷诺数气动力航空科技重点实验室,黑龙江哈尔滨150001 [3]北京航空航天大学,北京100191
出 处:《液压与气动》2022年第10期64-70,共7页Chinese Hydraulics & Pneumatics
基 金:国家重点专项资助项目(XX-2017-F-08)。
摘 要:针对FL-51风洞的阵风模拟需求,研究了电液伺服摆动缸独立驱动叶片的阵风发生器,通过结构解耦、控制同步的方式,简化了发生器结构,从而降低了运动过程中与叶片及洞体的耦合振动。研究了高频同步位置伺服控制算法,提高了发生器叶片的摆动幅度和频率,实现了发生器不同振幅、不同频率、不同波形的组合运动。通过装置测试与阵风流场校测,结果表明:电液伺服摆动马达驱动能力强、动态高、生成的正弦波精度高,在来流风速70 m/s下可稳定工作,能产生符合测试要求的高品质单频和多频阵风。Aiming at the gust simulation requirement of FL-51 wind tunnel, the wind gust generator driven by electro-hydraulic servo swing cylinder independently is studied. The structure of the generator is simplified by structure decoupling and synchronization control, and the coupled vibration with the blade and the cavity is reduced. The high frequency synchronous position servo control algorithm is studied, which improves the swing amplitude and frequency of the generator blade, and realizes the combined movement of generator with different amplitude, frequency and waveform. The results of device test and gust flow field calibration show that the electro-hydraulic servo swing motor has strong driving ability. High dynamic, high precision sine wave generated, in the incoming wind speed of 70 m/s can work stably, produce high quality single frequency and multi-frequency gust in line with the test requirements.
关 键 词:低速风洞 阵风发生器 电液伺服控制 摆动缸 控制系统
分 类 号:TH137[机械工程—机械制造及自动化] TH138
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