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固体火箭冲压发动机性能调节研究 被引量:7
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作者 夏智勋 张炜 +1 位作者 方丁酉 姜春林 《固体火箭技术》 EI CAS CSCD 1999年第1期19-22,共4页
在对固体火箭冲压发动机的高度特性进行分析的基础上,分别研究了壅塞式和非壅塞式固体火箭冲压发动机性能调节特性及方案,并着重分析了非壅塞式固体火箭冲压发动机的燃气流量自适应调节原理与规律。分析计算表明:非壅塞式固体火箭冲... 在对固体火箭冲压发动机的高度特性进行分析的基础上,分别研究了壅塞式和非壅塞式固体火箭冲压发动机性能调节特性及方案,并着重分析了非壅塞式固体火箭冲压发动机的燃气流量自适应调节原理与规律。分析计算表明:非壅塞式固体火箭冲压发动机不仅结构简单,且能明显提高发动机在非设计状态时的性能。 展开更多
关键词 固体燃料冲压发动机 高空燃烧 空气燃料比 比冲
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Temperature Distribution and Heat Saturating Time of Regenerative Heat Transfer 被引量:1
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作者 Li JIA Ying MAO Lixin YANG 《Journal of Thermal Science》 SCIE EI CAS CSCD 2006年第2期175-180,共6页
In this paper, heat transfer of the ceramic honeycomb regenerator was numerically simulated based on the computational fluid dynamics numerical analysis software CFX5. The longitudinal temperature distribution of rege... In this paper, heat transfer of the ceramic honeycomb regenerator was numerically simulated based on the computational fluid dynamics numerical analysis software CFX5. The longitudinal temperature distribution of regenerator and gas were obtained. The variation of temperature with time was discussed. In addition, the effects of some parameters such as switching time, gas temperature at the inlet of regenerator, height of regenerator and specific heat of the regenerative materials on heat saturating time were discussed. It provided primarily theoretic basis for further study of regenerative heat transfer mechanism. 展开更多
关键词 REGENERATOR numerical simulation heat saturating time high temperature air combustion
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Investigation on Combustion Characteristics and NO Formation of Methane with Swirling and Non-Swirling High Temperature Air 被引量:2
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作者 LI Xing JIA Li 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第5期472-479,共8页
Combustion characteristics of methane jet flames in an industrial burner working in high temperature combustion regime were investigated experimentally and numerically to clarify the effects of swirling high temperatu... Combustion characteristics of methane jet flames in an industrial burner working in high temperature combustion regime were investigated experimentally and numerically to clarify the effects of swirling high temperature air on combustion.Speziale-Sarkar-Gatski(SSG) Reynolds stress model,Eddy-Dissipation Model(EDM),Discrete Ordinates Method(DTM) combined with Weighted-Sum-of-Grey Gases Model(WSGG) were employed for the numerical simulation.Both Thermal-NO and Prompt-NO mechanism were considered to evaluate the NO formation.Temperature distribution,NO emissions by experiment and computation in swirling and non-swirling patterns show combustion characteristics of methane jet flames are totally different.Non-swirling high temperature air made high NO formation while significant NO prohibition were achieved by swirling high temperature air.Furthermore,velocity fields,dimensionless major species mole fraction distributions and Thermal-NO molar reaction rate profiles by computation interpret an inner exhaust gas recirculation formed in the combustion zone in swirling case. 展开更多
关键词 swirling non-swirling high temperature air combustion methane NO experiment numerical simulation
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