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Analytical Method for Calculating Time Characteristics of Ignition of Hybrid Gas Suspensions by a Hot Body

机译:热体计算混合气悬架点火时间特性的解析方法

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Approximated analytical and numerical methods were used to investigate regularities of ignition of hybrid gas suspensions by a hot body. It was shown that ignition can occur in three different modes: kinetic, diffusion, and transition. A parametrical region for implementation of each of the possible ignition modes was determined. It was found that transition from the kinetic to diffusion mode occurs with changes in the heater temperature by only one characteristic interval and can be accompanied by a jumpwise decrease of both the ignition delay time and the amount of energy required for initiation of the ignition process. For the kinetic mode, the wave theory of ignition was used to obtain, for the first time, analytical expressions for computation of time characteristics of ignition. It was shown that the impact of addition of combustible gas on the ignition regularities was high for both large and very small values of the parameter Z, the analogue of the Semenov criterion. For the first time, an approximate formula was proposed to calculate time characteristics of ignition over the entire range of variation of the parameter Z. Numerical calculations showed that the error of determination of time characteristics of ignition using the approximate formula did not exceed 45%.
机译:近似的分析和数值方法被用来研究混合气体悬浮物被热体着火的规律。结果表明,点火可以三种不同的方式发生:动力学,扩散和过渡。确定用于实施每种可能点火模式的参数区域。已经发现,从动力学模式到扩散模式的转变仅随着加热器温度的变化而发生一个特征间隔,并且可以伴随着点火延迟时间和引发点火过程所需的能量的量的跳跃式减小。对于动力学模式,首次使用了点火的波动理论来获得用于计算点火时间特性的解析表达式。结果表明,对于较大和非常小的参数Z(与Semenov准则类似),添加可燃气体对点火规律的影响都很大。首次提出了近似公式来计算参数Z整个变化范围内的点火时间特性。数值计算表明,使用该近似公式确定点火时间特性的误差不超过45%。

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