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A balance equation for modeling conditioned enthalpies in premixed turbulent flames

机译:用于模拟预混湍流火焰中条件焓的平衡方程

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In order to model the difference between enthalpies conditioned to unburned and burned gases, caused by compression of the mixture in the combustion chamber of a spark ignition engine, a new balance equation for the correlation between fluctuations in the enthalpy and combustion progress variable is proposed to be used, derived and closed invoking a few assumptions that appear to be plausible at low Mach and unity Lewis numbers. Subsequently, the difference in the conditioned enthalpies is determined within the framework of the well-known BML paradigm of premixed turbulent burning in the flamelet regime. In the paper, this new approach is analytically compared with commonly used balance equations for enthalpy conditioned to unburned gas. Moreover, in order to investigate basic features of the newly proposed balance equation, it is applied to numerical simulations of a statistically stationary, planar, one-dimensional premixed turbulent flame subject to increasing pressure. Instead of modeling the mean flame structure, it is approximated using complementary error function, with the flame speed and thickness being input parameters in the present study. Computed results show that the difference in the conditioned enthalpies is increased when the density ratio or the pressure growth rate is increased and when the turbulent flame speed or mean flame brush thickness is decreased. Moreover, computed enthalpy difference is sensitive to a submodel of turbulent flux of the combustion progress variable, with the use of gradient diffusion approximation appearing to be an improper solution. Furthermore, computed enthalpy difference is sensitive to a closure relation for enthalpy conditioned to flamelets. (C) 2015 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:为了模拟因火花点火发动机燃烧室中的混合物压缩而导致的未燃烧和已燃烧气体条件下的焓差,提出了一个新的平衡方程,用于求解焓差波动与燃烧过程变量之间的关系。在低马赫数和统一刘易斯数下,似乎可以使用,推导和封闭一些假设。随后,在小火焰状态下预混湍流燃烧的众所周知的BML范式框架内确定条件焓的差异。在本文中,将这种新方法与用于平衡未燃烧气体的焓的常用平衡方程进行了分析比较。此外,为了研究新提出的平衡方程的基本特征,将其应用于承受压力增加的统计平稳,平面,一维预混湍流的数值模拟。它不是使用平均火焰结构建模,而是使用互补误差函数进行近似计算,火焰速度和厚度是本研究的输入参数。计算结果表明,当密度比或压力增长速率增加以及湍流火焰速度或平均火焰刷厚度减小时,调节焓的差异会增加。此外,计算出的焓差对燃烧过程变量的湍流通量的子模型很敏感,使用梯度扩散近似似乎是不正确的解决方案。此外,对于调节为小火焰的焓,计算出的焓差对闭合关系很敏感。 (C)2015年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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