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  • 趙煥娟, John H. S. LEE, 張英華. 甲烷預混氣螺旋爆轟的定量不穩定性研究[J]. 工程科學學報, 2016, 38(11): 1522-1531. DOI: 10.13374/j.issn2095-9389.2016.11.003
    引用本文: 趙煥娟, John H. S. LEE, 張英華. 甲烷預混氣螺旋爆轟的定量不穩定性研究[J]. 工程科學學報, 2016, 38(11): 1522-1531. DOI: 10.13374/j.issn2095-9389.2016.11.003
    ZHAO Huan-juan, John H. S. LEE, ZHANG Ying-hua. Quantitative irregularity analysis for spinning detonation of premixed CH4+2O2[J]. Chinese Journal of Engineering, 2016, 38(11): 1522-1531. DOI: 10.13374/j.issn2095-9389.2016.11.003
    Citation: ZHAO Huan-juan, John H. S. LEE, ZHANG Ying-hua. Quantitative irregularity analysis for spinning detonation of premixed CH4+2O2[J]. Chinese Journal of Engineering, 2016, 38(11): 1522-1531. DOI: 10.13374/j.issn2095-9389.2016.11.003

    甲烷預混氣螺旋爆轟的定量不穩定性研究

    Quantitative irregularity analysis for spinning detonation of premixed CH4+2O2

    • 摘要: 針對CH4這種特別氣體,對其實驗結果運用數字化處理方法研究CH4穩定性.在內徑50.8 mm圓形管道內獲得CH4+2O2預混氣在不同初始壓力條件下的胞格爆轟結果并使用煙膜記錄,且測得的平均爆轟速度數據與CJ爆轟速度接近,在初始壓力高于5 k Pa時爆轟可穩定傳播.煙膜上形成的三波點軌跡十分不規則.為減少人為誤差,使用改進后的數字化處理煙膜圖像的技術方法,從煙膜軌跡中得出柱狀圖及自相關函數結果,發現CH4+2O2是一種爆轟十分不穩定的氣體,并給出CH4+2O2預混氣的爆轟胞格尺寸及差距,結果顯示人為測量結果偏大而數字化處理方法更為準確.這種方法能計算CH4+2O2預混氣胞格尺寸及不穩定度,完善了定量化預混氣不穩定程度的方法.

       

      Abstract: CH4 is a typical and special detonation mixture. Based on the experimental method, digital image processing was performed to study the detonation stability theory of methane. A premixed CH4 + 2O2 mixture was ignited in a tube with an inner diameter of 50.8 mm under different initial pressures. Smoked foils were used to record the cellular structure of spinning detonation. The average detonation velocity measured is similar with the CJ detonation velocity and it demonstrates that steady detonation happens when the initial pressure is higher than 5 kPa. The triple point trajectory leaves a very irregular pattern in smoked foils. In order to decrease human error, the digital processing technology was utilized and improved. The CH4 + 2O2 mixture shows high degree of irregularity in the computation of histograms and the autocorrelation function. The cellular size and gap of the unstable premixed CH4 + 2O2 were given. It is found that the results measured by digital image processing are accurate and by eyes are too big. The research can calculate the cellular size and the degree of instability of the unstable premixed CH4 + 2O2 and improves the quantitative irregular calculation method.

       

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