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Soot and Spectral Radiation Modeling for a High-Pressure Turbulent Spray Flame

机译:高压湍流喷雾火焰的烟灰和光谱辐射模拟

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Simulations are performed of a transient high-pressure turbulent n-dodecane spray flame under engine-relevant conditions. An unsteady RANS formulation is used, with detailed chemistry, a semi-empirical two-equation soot model, and a particle-based transported composition probability density function (PDF) method to account for unresolved turbulent fluctuations in composition and temperature. Results from the PDF model are compared with those from a locally well-stirred reactor (WSR) model to quantify the effects of turbulence-chemistry-soot interactions. Computed liquid and vapor penetration versus time, ignition delay, and flame lift-off height are in good agreement with experiment, and relatively small differences are seen between the WSR and PDF models for these global quantities. Computed soot levels and spatial soot distributions from the WSR and PDF models show large differences, with PDF results being in better agreement with experimental measurements. An uncoupled photon Monte Carlo method with line-by-line spectral resolution is used to compute the spectral intensity distribution of the radiation leaving the flame. This provides new insight into the relative importance of molecular gas radiation versus soot radiation, and the importance of turbulent fluctuations on radiative heat transfer.
机译:在发动机相关条件下对瞬态高压湍流N-十二烷喷雾火焰进行模拟。使用不稳定的RAN配方,其中具有详细的化学,半经验二阶烟灰模型和基于颗粒的传输的组成概率密度函数(PDF)方法,以考虑成分和温度的未解决的湍流波动。将PDF模型的结果与来自局部搅拌的反应器(WSR)模型的结果进行比较,以量化湍流 - 化学烟灰相互作用的影响。计算的液体和蒸汽渗透与时间,点火延迟和火焰升降高度与实验吻合良好,并且在这些全局量的WSR和PDF模型之间看到了相对较小的差异。从WSR和PDF模型的计算烟灰水平和空间烟灰分布显示出大的差异,PDF导致与实验测量更好地进行了更好的协议。具有逐行频谱分辨率的未耦合的光子蒙特卡罗方法用于计算离开火焰的辐射的光谱强度分布。这提供了新的洞察分子气体辐射与烟灰辐射的相对重要性,以及湍流波动对辐射热传递的重要性。

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