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Three-Dimensional Simulation of Turbulent Hot-Jet Ignition for Air-CH4-H-2 Deflagration in a Confined Volume

机译:狭窄体积中空气CH4-H-2脱液的湍流热喷射点火三维模拟

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This work describes essential aspects of the ignition and deflagration process initiated by the injection of a hot transient gas jet into a narrowly confined volume containing air-CH4-H-2 mixture. Driven by the pressure difference between a prechamber and a long narrow constant-volume-combustion (CVC) chamber, the developing jet or puff involves complex processes of turbulent jet penetration and evolution of multi-scale vortices in the shear layer, jet tip, and adjacent confined spaces. The CVC chamber contains stoichiometric mixtures of air with gaseous fuel initially at atmospheric conditions. Fuel reactivity is varied using two different CH4/H-2 blends. Jet momentum is varied using different pre-chamber pressures at jet initiation. The jet initiation and the subsequent ignition events generate pressure waves that interact with the mixing region and the propagating flame, depositing baroclinic vorticity. Transient three-dimensional flow simulations with detailed chemical kinetics are used to model CVC mixture ignition. Pre-ignition gas properties are then examined to develop and verify criteria to predict ignition delay time using lower-cost non-reacting flow simulations for this particular case of study.
机译:该工作描述了通过将热瞬态气体喷射喷射到含有空气-CH4-H-2混合物的狭窄狭窄的体积中引发的点火和缺口过程的基本方面。由PRECHAMBER和长窄恒定 - 体积燃烧(CVC)室之间的压力差的驱动,显影射流或粉扑涉及湍流射流渗透和剪切层中的多尺度涡流的演变的复杂过程,喷射尖端和邻近的受限空间。 CVC室含有在大气条件下最初具有气态燃料的空气的化学计量混合物。使用两种不同的CH4 / H-2混合物变化燃料反应性。喷射动量在喷射开始时使用不同的预室压力而变化。喷射起始和随后的点火事件产生与混合区域相互作用的压力波和沉积的氨基甘油涡流。具有详细化学动力学的瞬态三维流量模拟用于模拟CVC混合物点火。然后检查预点火气体性能以使用对该特定研究的特定研究的低成本非反应流模拟来实现和验证预测点火延迟时间的标准。

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