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多循环脉冲爆震发动机爆震室内部压力分布实验研究
引用本文:陈景彬,郑龙席,黄希桥,卢杰,陈星谷.多循环脉冲爆震发动机爆震室内部压力分布实验研究[J].气动实验与测量控制,2013(3):41-46.
作者姓名:陈景彬  郑龙席  黄希桥  卢杰  陈星谷
作者单位:西北工业大学动力与能源学院,西安710072
摘    要:利用基于多循环吸气式脉冲爆震发动机的实验获得了沿爆震室轴向9个位置的实时压力数据,经过对数据进行时域和频域的分析处理后,利用MATLAB软件的GRIDDATA函数拟合出了6个工作频率下某个循环时爆震室内压力随轴向位置及时间变化的三维图形。通过对拟合后的数据从不同角度进行分析,发现采用爆燃向爆震转捩(DDT)方式起爆会在爆震波形成前生成一个局部爆轰区、爆震波形成后平均速度维持在1000m/s左右,且峰值压力升高、随机性增大。该实验的研究结果为爆震室的结构强度研究提供了依据。

关 键 词:脉冲爆震发动机  多循环  爆震室  内部压力

Experimental studies on the internal pressure distribution in the detonation combustor of multi-cycle pulse detonation engine
Authors:CHEN Jing-bin  ZHENG Long-xi  HUANG Xi-qiao  LU jie  CHEN Xing-gu
Institution:(School of Power and Energy, Northwest Polytechnical University, Xilan 710072, China)
Abstract:Based on the multi-cycle air-breathing pulse detonation engine experiments, real- time pressure data from 9 positions along the detonation combustor axial have been obtained. After analysis of the data from time domain and frequency domain, curved surfaces of pressure with axial location and time of a cycle working in 6 frequencies have been fitted by using MATLAB software GRIDDATA function. Analyzing the fitted data from different perspectives, we find that using DDT initiation will generate a local high-pressure region before the detonation wave, after the detonation wave generation the average speed of detonation wave maintained at about 1000m/s, and its peak pressure and randomness increase. The experimental conclusions provide a foundation to study the structure and strength of the detonation combustor.
Keywords:pulse detonation engine  multi-cycle  detonation combustor  internal pressure
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