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Numerical Investigation of Kerosene-Based Pulse-Detonation Loading on the Metal Tubes

机译:金属管上煤油基脉冲爆轰载荷的数值研究

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摘要

This paper presents a numerical investigation on the kerosene-air mixture detonation in tubes and the effect of thermal softening on the structural response of the tube of varying thicknesses. The chemical reaction of kerosene-air mixture is modeled by the Arrhenius rate law with an ideal-gas equation of state, and the plastic deformation of the metal tube is described by the Mie-Gruneisen equation of state and Johnson-Cook strength model. To track the multunaterial interface motion and to determine the temperature-varying wall conditions, a hybrid particle-level-set method within the ghost-fluid framework is used. The pulse-detonation loading of metal tube is validated with experimental cell size, and the burst pressure of copper and 304 stainless tubes for varying wall thicknesses and wall temperatures is compared with the theory. The safety aspect of detonation tube is addressed by the observation that the prediction of critical tube thickness with thermal softening included is a better fit to the theoretical value than no thermal softening included.
机译:本文对管中煤油-空气混合物的爆轰以及热软化对不同厚度管的结构响应的影响进行了数值研究。煤油与空气混合物的化学反应通过Arrhenius速率定律与理想气体状态方程进行建模,金属管的塑性变形由Mie-Gruneisen状态方程和Johnson-Cook强度模型进行描述。为了跟踪多核材料的界面运动并确定随温度变化的壁的状况,使用了鬼流体框架内的混合粒子水平集方法。通过实验孔的大小验证了金属管的脉冲爆轰载荷,并将铜和304不锈钢管在不同壁厚和壁温下的破裂压力与理论进行了比较。通过观察发现,包括不包括热软化在内的包括热软化的临界管厚度的预测比理论值更好地拟合了爆轰管的安全性。

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  • 来源
    《Journal of propulsion and power》 |2016年第5期|1146-1152|共7页
  • 作者单位

    Seoul National University, Seoul 151-744, Republic of Korea;

    Seoul National University, Seoul 151-744, Republic of Korea;

    Seoul National University, Seoul 151-744, Republic of Korea;

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  • 正文语种 eng
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