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Ignitability and mixing of underexpanded hydrogen jets

机译:膨胀不足的氢射流的可燃性和混合

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Reliable methods are needed to predict ignition boundaries that result from compressed hydrogen bulk storage leaks without complex modeling. To support the development of these methods, a new high-pressure stagnation chamber has been integrated into Sandia National Laboratories' Turbulent Combustion Laboratory so that relevant compressed gas release scenarios can be replicated. For the present study, a jet with a 10:1 pressure ratio issuing from a small 0.75 mm radius nozzle has been examined. Jet exit shock structure was imaged by Schlieren photography, while quantitative Planar Laser Rayleigh Scatter imaging was used to measure instantaneous hydrogen mole fractions downstream of the Mach disk. Measured concentration statistics and ignitable boundary predictions compared favorably to analytic reconstructions of downstream jet dispersion behavior. Model results were produced from subsonic jet dispersion models and by invoking self-similarity jet scaling arguments with length scaling by experimentally measured effective source radii. Similar far field reconstructions that relied on various notional nozzle models to account for complex jet exit shock phenomena failed to satisfactorily predict the experimental findings. These results indicate further notional nozzle refinement is needed to improve the prediction fidelity. Moreover, further investigation is required to understand the effect of different pressure ratios on measured virtual origins used in the jet dispersion model.
机译:需要可靠的方法来预测由压缩氢气散装存储泄漏引起的点火边界,而无需复杂的建模。为了支持这些方法的发展,桑迪亚国家实验室的湍流燃烧实验室中集成了一个新的高压停滞室,因此可以复制相关的压缩气体释放方案。对于本研究,已经检查了从直径为0.75 mm的小喷嘴发出的压力比为10:1的射流。射流出口激波结构通过Schlieren摄影成像,而定量平面激光瑞利散射成像则用于测量Mach圆盘下游的瞬时氢摩尔分数。实测的浓度统计数据和可燃边界预测与下游射流扩散行为的解析重建相比具有优势。模型结果是由亚音速喷射弥散模型产生的,并通过使用实验测量的有效源半径通过长度缩放调用自相似射流缩放参数。依靠各种假想喷嘴模型来解决复杂的射流出口冲击现象的类似远场重建无法令人满意地预测实验结果。这些结果表明,需要进一步对名义喷嘴进行细化以提高预测保真度。此外,需要进一步研究以了解不同压力比对射流弥散模型中使用的测量虚拟原点的影响。

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