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Turbulent Flame Propagation With Large Chemical-heat Release

机译:大量化学热释放的湍流火焰传播

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A model is developed to describe the dependence of the turbulent-flame speed on the intensity of an isotropic excitation turbulence prescribed far upstream from the flame for arbitrarily large gas expansion within the flame. For the limit of negligible gas expansion within the flame the new prediction of the present study reduces to an established and recently verified result for isothermal front propagation. It is shown that the turbulent-flame speed varies inversely with the square of the temperature ratio across the flame when the temperature ratio is very large. For typical hydrocarbon flames the results predict generally less substantial rates of decrease of the turbulent-flame speed with increasing heat release. Variations in turbulence kinetic energies and vorticity across the flame and hydrodynamic zones upstream and downstream from the (lame are determined as well, accounting for influences of gas expansion and the structure of the excitation turbulence. The results of the present work, which are valid for flame propagation in weakly turbulent flow (where the propagation speed is proportional to the square of the intensity of the excitation turbulence prescribed far upstream from the flame) extend earlier predictions that were limited to relatively small chemical-heat release. The model presented herein does not account for effects of intrinsic flame instability and is appropriate for conditions where influences of buoyancy and flame stretch on flame dynamics are not substantial.
机译:建立了一个模型来描述湍流火焰速度对远离火焰上游规定的各向同性激发湍流强度的依赖性,该火焰在火焰内任意大的气体膨胀。对于可忽略不计的气体在火焰内膨胀的限制,本研究的新预测降低为等温前沿传播的已建立和最近验证的结果。结果表明,当温度比非常大时,湍流的火焰速度与火焰两端的温度比的平方成反比。对于典型的碳氢化合物火焰,结果预测,随着热量释放的增加,湍流火焰速度的降低速率通常较小。还要确定火焰在叶片和叶片上游和下游的流体动力学区和湍流动能和涡度的变化,这要考虑到气体膨胀和激发湍流结构的影响。火焰在弱湍流中的传播(传播速度与远离火焰上游规定的激发湍流强度的平方成正比)扩展了早期的预测,该预测仅限于相对较小的化学热释放。考虑到固有火焰不稳定的影响,并且适用于浮力和火焰伸展对火焰动力学影响不大的情况。

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