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Semi-free-jet simulated experimental investigation on a valveless pulse detonation engine

机译:无阀脉冲爆震发动机的半自由喷射模拟实验研究

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摘要

The total pressure recovery coefficient, flow coefficient and intake resistance of a valveless pulse detonation engine (PDE) with five different induction systems were measured based on the semi-free-jet simulated ground experiments. The proof-of-principle experiments of pulse detonation engine mockup with above five different induction systems were all successfully carried out, by using liquid gasoline-air mixture with low-energy ignition system (total stored energy less than 50 mJ). The process of back-propagation of pressure and average thrust of PDE mockup with these different induction systems were compared. The results indicated that induction system 1 had higher performance in total pressure recovery coefficient, flow coefficient or flight resistance. The time interval (Δt) between the time of detonation initiation and the time of backward pressure perturbation propagating to the PDE inlet decreased gradually at the increased operating frequency. The average thrust of the PDE with induction system 4 was the highest in case of lower operating frequencies, while that of PDE with induction system 1 was the highest when operating at higher frequencies.
机译:基于半自由喷射模拟地面实验,测量了具有五个不同进气系统的无阀脉冲爆震发动机(PDE)的总压力恢复系数,流量系数和进气阻力。通过使用液体汽油/空气混合物和低能量点火系统(总存储能量小于50 mJ),成功使用以上五个不同的感应系统对脉冲爆震发动机模型进行了原理验证实验。比较了使用这些不同的感应系统的PDE模型的压力和平均推力的反向传播过程。结果表明,进气系统1在总压力恢复系数,流量系数或飞行阻力方面具有较高的性能。爆震开始时间与向PDE入口传播的反向压力扰动时间之间的时间间隔(Δt)以增加的工作频率逐渐减小。在较低的工作频率下,带有感应系统4的PDE的平均推力最高,而在较高的频率下,带有感应系统1的PDE的平均推力最高。

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