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波瓣混合器对双S形二元排气系统红外特性的影响 被引量:5
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作者 王丁 吉洪湖 卢浩浩 《红外与激光工程》 EI CSCD 北大核心 2017年第2期139-144,共6页
为了研究波瓣混合器对排气系统红外特性的影响,设计了波瓣数分别为12、15、18的波瓣混合器双S形二元排气系统,通过数值计算研究了波瓣数对排气系统红外抑制效果的影响,并与相应的环形混合器双S形二元排气系统对比。研究结果表明,随着波... 为了研究波瓣混合器对排气系统红外特性的影响,设计了波瓣数分别为12、15、18的波瓣混合器双S形二元排气系统,通过数值计算研究了波瓣数对排气系统红外抑制效果的影响,并与相应的环形混合器双S形二元排气系统对比。研究结果表明,随着波瓣数的增加,排气系统的推力略微升高,最大差值在0.1%以内;波瓣数越少,排气系统内、外涵气流的热混合度越高,尾喷流的最高温度和红外辐射强度越低,波瓣数由18减少到12时,喷流辐射强度最大降低了18.1%;相比环形混合器双S形二元排气系统,在侧向和下方探测面上纯喷流辐射的90°方位角,三种波瓣数的波瓣混合器双S形二元排气系统辐射强度分别降低了20.9%和26.9%以上。因此,为了得到更好的红外抑制效果,建议使用较少波瓣数的波瓣混合器。 展开更多
关键词 波瓣混合器 双S形二元喷管 红外辐射 波瓣数
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NUMERICAL CALCULATION OF THREE-STREAM MIXING FLOW WITH WALL COOLING
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作者 WANGSuo-fang LILi-guo WUGuo-chuan 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI 2004年第2期134-140,共7页
The flow and the temperature in the threestream mixing flow of the lobed nozzle mixer-ejector with double-wall diffuser are numerically investigated. The domain of computation is divided into sub-domalns according to ... The flow and the temperature in the threestream mixing flow of the lobed nozzle mixer-ejector with double-wall diffuser are numerically investigated. The domain of computation is divided into sub-domalns according to the shapes of the double-plate and lobed nozzle. The three-dimensional body-fitted coordinated grids are generated respectively in these sub-domains by solving Lapalace's equations. Grids are dense on the boundaries and orthogonal at the lobe. The grids of all sub-domains compose the whole grid of the domain. In order to avoid the divergence of the computation as the serious non-orthogonality of the grid from the lobe, the co-located grid, SIMPLEC and Chen-Kim modified k-εturbulence model are applied. The great viscosity, the linear and simultaneous cooperation under-relaxation factors are used to solve the coupling of the fluid and solid. Results show that the air is ejected into the double wall section to form the cooling flow. The wall temperature of the double-wall diffuser is lower than that of the single-wall diffuser. The average wall temperature goes down as the diffuser angle increases at the range of 0~5°,otherwise, the result at the range of 5~10°is opposite. 展开更多
关键词 mixing flow wall cooling LOBE EJECTOR co-located grid
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