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抽吸气流量对催化惰化系统性能影响 被引量:1
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作者 王晨臣 潘俊 +1 位作者 王洋洋 段伟杰 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2022年第7期1183-1189,共7页
基于耗氧型惰化系统惰化原理,建立了绿色低温催化惰化系统(3CGIS)的AMESim仿真模型,研究了绿色低温催化惰化系统抽吸气流量对惰化时间的影响,以及飞行包线内燃油箱气相空间氧气体积分数变化。将计算结果与试验数据进行对比,结果表明,飞... 基于耗氧型惰化系统惰化原理,建立了绿色低温催化惰化系统(3CGIS)的AMESim仿真模型,研究了绿色低温催化惰化系统抽吸气流量对惰化时间的影响,以及飞行包线内燃油箱气相空间氧气体积分数变化。将计算结果与试验数据进行对比,结果表明,飞行包线内燃油箱气相空间氧气体积分数计算结果与试验结果基本一致,验证了仿真模型的正确性。在此基础上,得到抽吸气流量与惰化时间近似呈反比关系;当惰化时间一定时,抽吸气流量随载油率的降低而增加;针对下降阶段燃油箱气相空间氧气体积分数可能超过12%,提出一种双流量惰化模式设计方法,可保证氧气体积分数在整个飞行包线内低于12%。仿真结果为绿色低温催化惰化系统的设计与优化提供了依据。 展开更多
关键词 耗氧惰化 低温催化 抽吸气流量 惰化时间 氧气体积分数 AMESIM仿真
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Effects of bleed hole size on supersonic boundary layer bleed mass flow rate 被引量:8
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作者 Bao-hu ZHANG Yu-xin ZHAO Jun LIU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2020年第8期652-662,共11页
The bleed hole diameter,depth,and boundary layer thickness are key design parameters of a supersonic bleed system.The evolution trend of single-hole bleed flow coefficient with the ratio of boundary layer thickness to... The bleed hole diameter,depth,and boundary layer thickness are key design parameters of a supersonic bleed system.The evolution trend of single-hole bleed flow coefficient with the ratio of boundary layer thickness to bleed hole diameter and the ratio of bleed hole depth to diameter is investigated by numerical simulations under choking and non-choking conditions.The results show that the subsonic leading edge of the circular hole and the subsonic part of the boundary layer are the main factors causing lateral flow of the bleed hole.The effect of diameter on bleed mass flow rate is due to the viscous effect which reduces the effective diameter.The larger the ratio of displacement thickness to bleed hole diameter,the more obvious the viscous effect is.The depth affects bleed flow rate by changing the opening and closing states of the separation zone.When a certain depth is reached,the development of the boundary layer reduces the effective captured stream tube and thus reduces the bleed mass flow rate.The main objective of the study is to obtain the physical mechanism of the bleed hole size parameters affecting the bleed mass flow rate,and to provide theoretical guidance for the selection of the size of bleed holes in the design of a porous arrays bleed system in hypersonic inlets. 展开更多
关键词 INLET Supersonic bleed Scale effects CHOKING Bleed mass flow rate Lateral flow
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