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Numerical Study on the Propagation of Premixed Flames in Confined Narrow Disc-Shape Chambers

机译:密闭窄盘形腔室中预混火焰传播的数值研究

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The laminar flame propagation in narrow confined disc-shape chambers of millimeter scale is investigated, concerning the flame front displacement speed and the influences from the changes of the gap width and radius. An asymptotic analysis treating the flame front as a discontinuity successfully predicts the velocity profiles of the flame front and illustrates the importance of heat release parameter and laminar flame speed of the fuel. The unsteady flame propagation process is simulated by a full numerical computation which employs the n-butane/air mixture as the reactant. The numerical simulation emphasizes the sensitivity of spatial scale to the flame propagation in narrow spaces, indicating that the acceleration rate and the maximum speed of the flame have a non-monotonic relation with the gap width, of which the optimal value is about 0.8 mm. Faster flame propagation is favored for larger gap radius due to stronger flame straining, but it is restricted by the gap width.
机译:研究了火焰在狭窄的毫米级密闭圆盘形腔室中的层流火焰传播,涉及火焰前移速度以及间隙宽度和半径变化的影响。渐近分析将火焰锋视为不连续点,成功预测了火焰锋的速度分布,并说明了热量释放参数和燃料层流火焰速度的重要性。通过使用正丁烷/空气混合物作为反应物的全数值计算来模拟不稳定的火焰传播过程。数值模拟强调了空间尺度对火焰在狭窄空间中传播的敏感性,表明火焰的加速度和最大速度与间隙宽度呈非单调关系,最佳值约为0.8 mm。由于较大的火焰应变,较快的火焰传播有利于较大的间隙半径,但它受到间隙宽度的限制。

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