6   Artículos

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en línea
Yang Wang, Cheng Tian and Pengfei Yang    
Ozone addition presents a promising approach for optimizing and regulating both combustion and ignition mechanisms. In Rotating Detonation Engines (RDEs), investigating the impact of ozone addition is particularly important due to the fact of their uniqu... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
In-Hoi Koo, Keon-Hyeong Lee, Min-Su Kim, Hyung-Seok Han, Holak Kim and Jeong-Yeol Choi    
Fuel injection and mixing affect the characteristics of detonation initiation and propagation, as well as the propulsion performance of rotating detonation engine (RDE). A study on the injector is carried out in the present investigation. A rectangular-s... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
Jae-Hyuk Lee, Jae-Hoon Ryu, Eun-Sung Lee, Hyung-Seok Han and Jeong-Yeol Choi    
A noncircular engine cross-section could provide great flexibility in the integration of propulsion into the airframe. In this work, a tri-arc RDE was constructed and tested as an example of noncircular cross-sectioned RDE. The operational characteristic... ver más
Revista: Aerospace    Formato: Electrónico

 
en línea
Noraiz Mushtaq, Gabriele Colella and Paolo Gaetani    
Pressure gain combustion is a promising alternative to conventional gas turbine technologies and within this class the Rotating Detonation Engine has the greatest potential. The Fickett?Jacobs cycle can theoretically increase the efficiency by 15% for me... ver más

 
en línea
Valeriy F. Nikitin,Yurii G. Filippov,Lyuben I. Stamov,Elena V. Mikhalchenko     Pág. 76 - 85
A rotating detonation engine (RDE) combustion chamber was modeled in the work numerically using 3D geometry. The RDE is a new type of engines capable to create higher thrust than the traditional ones, which are based on the combustible mixture deflagrati... ver más
Revista: Supercomputing Frontiers and Innovations    Formato: Electrónico

 
en línea
Lisong Shi, E Fan, Hua Shen, Chih-Yung Wen, Shuai Shang and Hongbo Hu    
A three-dimensional upwind conservation element and solution element method (CESE) in cylindrical coordinates is first developed to effectively solve the unsteady reactive Euler equations governing a hydrogen?air rotating detonation engine (RDE) with coa... ver más
Revista: Aerospace    Formato: Electrónico

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