Propagation instabilities of the oblique detonation wave in partially prevaporized n-heptane sprays

Cheng Tian, H. Teng, Baolu Shi, Peng-jin Yang, Kuanliang Wang, Majie Zhao
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Abstract

Two-dimensional oblique detonation wave (ODW) propagations in partially prevaporized n-heptane sprays are numerically simulated with a skeletal chemical mechanism. The influences of the droplet diameter and total equivalence on oblique detonation are considered. The initiation length is found to increase first and then decrease with increasing initial droplet diameter, and the effect of droplet size is maximized when the initial droplet diameter is approximately $10\ \mathrm {\mu } {\rm m}$ . As the initial droplet diameter varies, unsteady and steady ODWs are observed. In the cases of unsteady ODWs, temperature gradients and non-uniform distributions of the reactant mixture due to droplet evaporation lead to formation of unsteady detonation propagation, therefore leading to fluctuations in the initiation length. The fluctuations in initiation length decrease as the pre-evaporation gas equivalence ratio increases for the unsteady cases. The results further suggest that the relationship between the evaporation layer thickness along the streamline and the corresponding theoretical initiation length can be used to identify an unsteady or steady ODW in cases with large droplets that evaporate behind an oblique shock wave or ODW under the effects of different initial droplet diameters.
部分预汽化正庚烷喷雾中斜爆轰波的传播不稳定性
采用骨架化学机制对部分预汽化的正庚烷喷雾中的二维斜向爆轰波(ODW)传播进行了数值模拟。考虑了液滴直径和总当量对斜向起爆的影响。发现随着初始液滴直径的增大,起爆长度先增大后减小,当初始液滴直径约为 $10\mathrm {\mu }$ 时,液滴大小的影响最大。{\rm m}$。随着初始液滴直径的变化,观察到了非稳定和稳定的 ODWs。在非稳态 ODWs 的情况下,由于液滴蒸发造成的温度梯度和反应物混合物的不均匀分布导致形成非稳态起爆传播,从而导致起爆长度波动。在非稳态情况下,随着蒸发前气体当量比的增加,起爆长度的波动会减小。结果进一步表明,在不同初始液滴直径的影响下,沿流线的蒸发层厚度与相应的理论起爆长度之间的关系可用于识别在斜冲击波或 ODW 后面蒸发的大液滴情况下的非稳态或稳态 ODW。
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