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Effects of buoyancy on turbulent premixed V-flames by large-eddy simulation

机译:大涡模拟对浮力对V型预混湍流的影响

摘要

Buoyancy effects on turbulent premixed V-flames are investigated under normal gravity (+g) and reversed gravity (-g). Numerical simulations employ large eddy simulation (LES) with a dynamic model for sub-grid scale stress. With the assumption of fast chemistry combustion, a progress variable c-equation is applied to describe the flame front propagation. The equations are solved using a projection-based fractional step method in two dimensions for low-Mach number flows. Computed LES results of buoyancy effects on flame angle and flame brush thickness are consistent with those obtained from experiments. In both +g and -g conditions, the effects of buoyancy become important with increase in Richardson number (Ri). Buoyancy force tends to close up the flame under +g, but has the opposite effect under -g. Buoyancy force also suppresses flame wrinkling in +g and enhances wrinkling in -g. While there is a lack of experimental data available, computed axial velocity is shownto besignificantly affected by buoyancy downstream from the flame holder under moderate Reynolds number.
机译:研究了在正常重力(+ g)和反向重力(-g)下对湍流预混V型火焰的浮力作用。数值模拟采用大涡模拟(LES)和动态模型来处理亚网格尺度应力。在快速化学燃烧的假设下,使用了一个进度变量c方程来描述火焰锋的传播。对于低马赫数流,使用基于投影的分数阶跃方法在二维中求解方程。 LES计算得出的浮力对火焰角度和火焰刷厚度的影响结果与实验结果一致。在+ g和-g条件下,随着Richardson数(Ri)的增加,浮力的影响变得很重要。浮力倾向于在+ g下关闭火焰,但在-g下具有相反的作用。浮力还抑制+ g中的火焰起皱,并增强-g中的起皱。尽管缺乏可用的实验数据,但在中等的雷诺数下,火焰保持器下游的浮力显着影响了计算的轴向速度。

著录项

  • 作者

    Wu Y; Chan CK;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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