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A REGIME DIAGRAM FOR AUTOIGNITION OF HOMOGENEOUS REACTANT MIXTURES WITH TURBULENT VELOCITY AND TEMPERATURE FLUCTUATIONS

机译:带有湍流速度和温度波动的均相反应混合物的自治系统图

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A theoretical scaling analysis is conducted to propose nondimensional criteria to predict weak and strong ignition regimes for a compositionally homogeneous reactant mixture with turbulent velocity and temperature fluctuations. This leads to a regime diagram that provides guidance on expected ignition behavior based on the thermo-chemical properties of the mixture and the flow/scalar field conditions. The analysis extends the original Zeldovich's theory by combining the turbulent flow and scalar characteristics in terms of the characteristic Damkohler and Reynolds numbers of the system, thereby providing unified and comprehensive understanding of the physical and chemical mechanisms controlling autoignition. Estimated parameters for existing experimental measurements in a rapid compression facility show that the regime diagram predicts the observed ignition characteristics with good fidelity.
机译:进行了理论上的比例分析,提出了无量纲的标准,以预测具有湍流速度和温度波动的成分均匀的反应物混合物的弱点火和强点火方式。这导致了一个状态图,该状态图基于混合物的热化学性质和流场/标量场条件为预期的点火行为提供了指导。该分析通过根据系统的特征Damkohler和Reynolds数组合湍流和标量特性,扩展了最初的Zeldovich理论,从而对控制自燃的物理和化学机理提供了统一而全面的理解。快速压缩设备中现有实验测量的估计参数表明,状态图可以很好地预测观察到的点火特性。

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