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Performance analysis of scramjet including magnetohydrodynamic power generation after combustor
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作者 LIU Chenyuan WU Shaoxun MENG Hao 《推进技术》 北大核心 2025年第8期15-28,共14页
To investigate the overall performance of reverse energy bypass scramjet,firstly a variable spe⁃cific heat method combined with a chemical balance calculation module for combustion products were used to es⁃tablish a b... To investigate the overall performance of reverse energy bypass scramjet,firstly a variable spe⁃cific heat method combined with a chemical balance calculation module for combustion products were used to es⁃tablish a benchmark scramjet performance evaluation model.Based on the test data of typical flying point of Mach 7 with the altitude of 29 km,the reliability of the model was verified.The deviations of parameters such as the to⁃tal pressure loss of combustor between the model and the test data were analyzed.Furtherly,an analytical method for post-combustion magnetohydrodynamic power generation was established;by embedding the above method into the overall performance evaluation model,performance prediction considering the power generation effect was realized.Finally,based on the above model,variety regulations of the inlet and the outlet parameters of the power generation channel and performance parameters including the engine specific impulse and the unit thrust under different enthalpy extraction ratios and load factors were analyzed.It could be concluded that the model can reliably predict the variations of key parameters.As the value of the load factor increases,the value of the conduc⁃tivity required to reach the specified enthalpy extraction ratio first decreases and then increases,which is approxi⁃mately parabolic.In order to reduce the demand for the gas conductivity for MHD power generation,the load fac⁃tor should be around 0.5.When the load factor is 0.4 and the magnetic induction intensity is 2.5 T,if the enthalpy extraction ratio reaches 0.5%,the engine specific impulse performance reduces about 3.58%. 展开更多
关键词 SCRAMJET Energy bypass Magnetohydrodynamic power generation Chemical balance Performance evaluation
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高压大容量电力电子混杂系统控制技术综述 被引量:25
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作者 赵争鸣 施博辰 朱义诚 《高电压技术》 EI CAS CSCD 北大核心 2019年第7期2017-2027,共11页
高压大容量电力电子装置与系统正成为新一代电网系统和大型电力牵引系统中的关键核心设备。实现对电能可靠变换与传输的精确控制,是大容量电力电子装置和系统中的核心问题。针对电力电子混杂系统控制技术进行综述,回顾了控制理论和技术... 高压大容量电力电子装置与系统正成为新一代电网系统和大型电力牵引系统中的关键核心设备。实现对电能可靠变换与传输的精确控制,是大容量电力电子装置和系统中的核心问题。针对电力电子混杂系统控制技术进行综述,回顾了控制理论和技术的发展轨迹以及在电力电子混杂系统应用现状。解析了电力电子混杂系统的控制规律,探讨了几种适合该混杂系统的控制方法及其发展趋势。明确大容量电力电子混杂系统中多时间尺度的连续–离散–连续一体化控制是其核心问题,进而展望电力电子混杂系统控制技术的发展方向。 展开更多
关键词 电力电子 混杂系统 大容量变换器 控制技术 电磁能量平衡 主动驱动控制
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