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A Zero-Dimensional Phenomenological Model for RCCI Combustion Using Reaction Kinetics

机译:使用反应动力学进行RCCI燃烧的零尺寸现象学模型

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Homogeneous low temperature combustion is believed to be a promising approach to resolve the conflict of goals between high efficiency and low exhaust emissions. Disadvantageously for this kind of combustion, the whole process depends on chemical kinetics and thus is hard to control. Reactivity controlled combustion can help to overcome this difficulty. In the so-called RCCI (reactivity controlled compression ignition) combustion concept a small amount of pilot diesel that is injected directly into the combustion chamber ignites a highly diluted gasoline-air mixture. As the gasoline does not ignite without the diesel, the pilot injection timing and the ratio between diesel and gasoline can be used to control the combustion process. A phenomenological multi-zone model to predict RCCI combustion has been developed and validated against experimental and 3D-CFD data. The model captures the main physics governing ignition and combustion. The direct diesel injection is modeled using Hiroyasu's packet approach, where all packets are treated as thermodynamic zones. After the end of injection, mixture formation is modeled as a process dominated by turbulent mixing with mass transfer from zone to zone. Therefore, an algebraic turbulence model has been implemented and compared to 3D-CFD turbulence data. As RCCI combustion is kinetically controlled, heat release is solely modeled using reaction kinetics. To account for chemical reactions a reduced mechanism is used and each zone is considered as a constant volume reactor.
机译:据信,均匀的低温燃烧是一种有望的方法,可以解决高效率和低排放之间的目标冲突。对于这种燃烧不利,整个过程取决于化学动力学,因此难以控制。反应性控制燃烧可以帮助克服这种困难。在所谓的RCCI(反应性控制压缩点火)中的燃烧概念中,将直接注入燃烧室的少量先导柴油点燃了高度稀释的汽油 - 空气混合物。由于汽油不会在没有柴油的情况下点燃,因此可以使用柴油和汽油之间的先导喷射正时和柴油和汽油之间的比率来控制燃烧过程。针对实验和3D-CFD数据开发并验证了预测RCCI燃烧的现象学多区模型。该模型捕获了控制点火和燃烧的主要物理学。使用Hiroyasu的数据包方法建模直接柴油喷射,其中所有数据包都被视为热力学区域。在注射结束后,将混合物形成模拟为以湍流混合,从区域到区域的质量转移为主。因此,已经实现了并将代数湍流模型实现并与3D-CFD湍流数据进行了相比。随着RCCI燃烧在动力学上控制,热释放单独使用反应动力学进行建模。为了考虑化学反应,使用减少的机理,并且每个区被认为是恒定体积反应器。

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