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FLAME ACCELERATION IN HYDROGEN/AIR MIXTURES WITH CONCENTRATION GRADIENTS

机译:含浓度梯度的氢气/空气混合物中的火焰加速

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A current knowledge gap in hydrogen safety research concerns the influence of mixture non-uniformity on explosion processes. Spacial mixture composition gradients are likely to form in real-world accident scenarios. In this work, the influence of such gradients on flame acceleration is experimentally investigated in an entirely closed channel at laboratory scale. Experiments show that concentration gradients can lead to significantly stronger flame acceleration compared to homogeneous mixtures. Optical measurements reveal that flame shapes differ between homogeneous and inhomogeneous mixtures in the unobstructed channel configuration. An enlargement of flame surface area in inhomogeneous mixtures leads to a higher integral reaction rate, which in turn supports flame acceleration. In obstructed channel configurations, however, mixture properties dominate flame propagation. An analytical model based on the integral balancing of mixture properties is proposed and validated by means of experimental data.
机译:氢安全研究中当前的知识差距涉及混合物不均匀性对爆炸过程的影响。在现实世界的事故场景中可能会形成空间混合物组成梯度。在这项工作中,在实验室规模的全封闭通道中,通过实验研究了这种梯度对火焰加速度的影响。实验表明,与均匀混合物相比,浓度梯度可导致更强的火焰加速。光学测量表明,在通畅的通道配置中,均匀和不均匀混合物的火焰形状不同。不均匀混合物中火焰表面积的增加导致更高的整体反应速率,进而支持火焰加速。但是,在阻塞的通道配置中,混合物的特性主导火焰的传播。提出了基于混合气性质的整体平衡的分析模型,并通过实验数据进行了验证。

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