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Recent Progress in Heavy Fuel Aviation Piston Engine
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作者 陈伟 周健豪 何小明 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2015年第1期22-28,共7页
Heavy fuel aviation piston engines(HF-APEs)refer to the engine using fuels with high flash point,such as kerosene or light diesel.Here technique specifications of some classical foreign HF-APEs(Hirth3503,Zanzottera 49... Heavy fuel aviation piston engines(HF-APEs)refer to the engine using fuels with high flash point,such as kerosene or light diesel.Here technique specifications of some classical foreign HF-APEs(Hirth3503,Zanzottera 498)are introduced.Recent progress and trend of fuel injection,fuel ignition,working cycle,intake charging,thermal management and electronic control of HF-APE are compared and summarized.Emphases are put on the technological difficulties,solutions and development tendency in the design,retrofitting and manufacturing of HF-APE aiming to provide references for the research of related area and the development of prototype HF-APE in China. 展开更多
关键词 heavy fuel aviation piston engine direct injection electronic control
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Effect of Nozzle Inclination Angle on Fuel-Air Mixing and Combustion in a Heavy Fuel Engine
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作者 Zhigang Wang Bin Zheng +4 位作者 Peidong Zhao Baoli Wang Fanyan Meng Wenke Xu Jian Meng 《Fluid Dynamics & Materials Processing》 EI 2024年第2期365-382,共18页
Heavy-fuel engines are widely used in UAVs(Unmanned Autonomous Vehicles)because of their reliability and high-power density.In this study,a combustion model for an in-cylinder direct injection engine has been imple-me... Heavy-fuel engines are widely used in UAVs(Unmanned Autonomous Vehicles)because of their reliability and high-power density.In this study,a combustion model for an in-cylinder direct injection engine has been imple-mented using the AVL FIRE software.The effects of the angle of nozzle inclination on fuel evaporation,mixture distribution,and combustion in the engine cylinder have been systematically studied at 5500 r/min and consider-ing full load cruise conditions.According to the results,as the angle of nozzle inclination increases,the maximum combustion explosion pressure in the cylinderfirst increases and then it decreases.When the angle of nozzle incli-nation is less than 45°,the quality of the mixture in the cylinder and the combustion performance can be improved by increasing the angle.When the angle of nozzle inclination is greater than 45°,however,the mixture unevenness increases slightly with the angle,leading to a deterioration of the combustion performances.When the angle of nozzle inclination is between 35°and 55°,the overall combustion performance of the engine is rela-tively good.When the angle of nozzle inclination is 45°,the combustion chamber’s geometry and the cylinder’s airflow are well matched with the fuel spray,and the mixture quality is the best.Compared with 25°,the peak heat release rate increases by 20%,and the maximum combustion burst pressure increases by 5.5%. 展开更多
关键词 aviation heavy fuel piston engine nozzle inclination angle COMBUSTION fuel-air mixing
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Study of an aviation opposed piston engine noise
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作者 Petr Moshkov 《Aerospace Systems》 2022年第4期607-613,共7页
The results of a study of the acoustic characteristics of an aviation opposed piston engine are presented.The tests were carried out during the run of the power plants of the light propeller-driven aircraft F30,MAI-22... The results of a study of the acoustic characteristics of an aviation opposed piston engine are presented.The tests were carried out during the run of the power plants of the light propeller-driven aircraft F30,MAI-223M and MAI-890U under static conditions at the local aerodrome of Moscow Aviation Institute(National Research University).The influence of cowling on the energy characteristics of the sound field of the engine is considered.The influence of the engine power condition on the directivity of the tonal components of its radiation is studied.The dependences of the sound power on engine speed are obtained. 展开更多
关键词 aviation opposed piston engine engine noise Acoustic tests Community noise
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