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Uncertainty Reduction in Laminar Flame Speed Extrapolation from Expanding Spherical Flames

机译:扩大球形火焰的层状火焰速度外推的不确定度降低

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The reduction of extrapolation uncertainty for laminar flame speed is studied using expanding spherical flame measurements under positive Markstein length (L_b>O) conditions. The performance of three extrapolation formulas including one linear and two non-linear formulas were examined under a wide range of experimental conditions of various flame radius ranges. It is found that the ratio of Lb and the flame radius Rfused for extrapolation is the controlling parameter of the extrapolation uncertainty. For conditions with Lewis number close to unity, the extrapolation uncertainty is small due to small value of (L_b/R_f)~2. However, for mixtures with supra-unity Lewis number, the (L_b/R_f)~2 terms in the expanded form of the extrapolation formulas are large at commonly used Rf, resulting in large uncertainties in the extrapolated laminar flame speeds. The extrapolation uncertainty can be effectively reduced using flame measurements with large flame radius range as demonstrated in a newly built constant-pressure, dual-chamber experimental rig of large dimension.
机译:利用阳性标记长度(L_B> O)条件下的膨胀球形火焰测量来研究对层状火焰速度的外推的外推性不确定性的降低。在各种火焰半径范围的各种实验条件下检查包括一种线性和两种非线性公式的三种外推式的性能。发现LB的比率和用于外推的火焰半径是外推不确定性的控制参数。对于杠杆号接近统一的条件,由于(L_B / R_F)〜2的少,外推不确定度很小。然而,对于具有Supra-Unity Lewis号的混合物,外推式的膨胀形式的(L_B / R_F)〜2术语在常用的RF中大大,导致外推层状火焰速度的不确定性。使用大火焰半径范围的火焰测量可以有效地减少外推不确定性,如在大尺寸的新建恒压,双室实验钻机中所示。

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