Experimental investigation on the performance degradation of helicopter rotor due to ice accretion
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作者:
Huang, Mingqi
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China Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R ChinaChina Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R China
Huang, Mingqi
[1
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Yuan, Honggang
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China Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R ChinaChina Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R China
Yuan, Honggang
[1
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Wang, Liangquan
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China Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R ChinaChina Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R China
Wang, Liangquan
[1
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Peng, Xianmin
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China Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R ChinaChina Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R China
Peng, Xianmin
[1
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Liu, Qinglin
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China Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R ChinaChina Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R China
Liu, Qinglin
[1
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机构:
[1] China Aerodynam Res & Dev Ctr, Low Speed Aerodynam Inst, Mianyang 621000, Sichuan, Peoples R China
Helicopter rotor performance can be significantly altered by ice accretion which directly degrades the handling qualities and safety during flight. To obtain understanding into the effect of ice accretion on a helicopter rotor in forward flight under different icing environments, an experimental campaign was conducted in an icing wind tunnel using a rotor model with diameter at 2 m. Research was emphasized on revealing effect of liquid water content and static temperature on the rotor performance degradation. The dynamic thrust and torque of the rotor were measured by a six-component balance. Ice shape of the airfoils at specific rotor blade spanwise locations was obtained through the ice cutting process; meanwhile, the entire ice topology on the blade was scanned by means of the three-dimensional scanning technique. Results showed that ice was mainly accreted on the leading edge and lower surface of the blade. The static temperature of a icing cloud has a noticeable effect on the regime of accreted ice. The ice formation was transparent glaze at -8 degrees C and transformed to milky rime when changed the static temperature to -20 degrees C. Comparing to rime ice, the glaze ice on the blade is more influential to the rotor performance degradation. Particular attention is given to the fact that under extreme icing conditions, over 30% degradation of transient rotor thrust was observed.
机构:
National Key Laboratory of Rotorcraft Aeromechanics, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, NanjingNational Key Laboratory of Rotorcraft Aeromechanics, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing
Chen, Xi
Zhao, Qi-Jun
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National Key Laboratory of Rotorcraft Aeromechanics, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, NanjingNational Key Laboratory of Rotorcraft Aeromechanics, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing
Zhao, Qi-Jun
Zhao, Guo-Qing
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机构:
National Key Laboratory of Rotorcraft Aeromechanics, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, NanjingNational Key Laboratory of Rotorcraft Aeromechanics, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing
机构:
Gyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Gyeongsang Natl Univ, ACTRC, Jinju, South KoreaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Sengupta, Bidesh
Raj, L. Prince
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Indian Inst Engn Sci & Technol, Dept Aerosp Engn & Appl Mech, Sibpur, Howrah, IndiaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Raj, L. Prince
Cho, M. Y.
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Gyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Gyeongsang Natl Univ, ACTRC, Jinju, South KoreaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Cho, M. Y.
Son, Chankyu
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Cheongju Univ, Dept Unmanned Aircraft Syst, Cheongju, South KoreaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Son, Chankyu
Yoon, Taekeun
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机构:
Seoul Natl Univ, Dept Aerosp Engn, Seoul, South Korea
Seoul Natl Univ, Inst Adv Aerosp Technol, Seoul, South KoreaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Yoon, Taekeun
Yee, Kwanjung
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Seoul Natl Univ, Dept Aerosp Engn, Seoul, South Korea
Seoul Natl Univ, Inst Adv Aerosp Technol, Seoul, South KoreaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Yee, Kwanjung
Myong, R. S.
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机构:
Gyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
Gyeongsang Natl Univ, ACTRC, Jinju, South KoreaGyeongsang Natl Univ, Sch Mech & Aerosp Engn, Jinju, South Korea
机构:
Southwest Petr Univ, Sch Mechatron Engn, Chengdu 610500, Sichuan, Peoples R China
Nanjing Univ Aeronaut & Astronaut, Coll Energy & Power Engn, Nanjing 210016, Jiangsu, Peoples R ChinaSouthwest Petr Univ, Sch Mechatron Engn, Chengdu 610500, Sichuan, Peoples R China
Chen, Ningli
Ji, Honghu
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Nanjing Univ Aeronaut & Astronaut, Coll Energy & Power Engn, Nanjing 210016, Jiangsu, Peoples R ChinaSouthwest Petr Univ, Sch Mechatron Engn, Chengdu 610500, Sichuan, Peoples R China
Ji, Honghu
Cao, Guangzhou
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Nanjing Univ Aeronaut & Astronaut, Res Inst Unmanned Aircraft, Nanjing 210016, Jiangsu, Peoples R ChinaSouthwest Petr Univ, Sch Mechatron Engn, Chengdu 610500, Sichuan, Peoples R China
Cao, Guangzhou
Hu, Yaping
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机构:
Nanjing Univ Aeronaut & Astronaut, Coll Energy & Power Engn, Nanjing 210016, Jiangsu, Peoples R ChinaSouthwest Petr Univ, Sch Mechatron Engn, Chengdu 610500, Sichuan, Peoples R China