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Development and application of a method for characterizing mixture formation in a port-injection natural gas engine

机译:一种用于在端口注射天然气发动机中表征混合形成的方法的开发与应用

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Natural gas has been identified as one of the most promising alternative fuels. Port injection of natural gas, due to its advantages of costs, manufacturing complexity and mixture homogeneity, is relevant to the current and future engine development. The present work aims to provide a comprehensive characterization of gas fuel injection and mixing process, by developing a modeling method for the injector and the engine as a whole serving as a diagnostic tool for further expounding on the basis of experimental results. The injector is modeled by the source cell approach that allows for cost-efficient and physics-consistent description of the underexpanded gas jet, by which a set of fuel injection timings is investigated and then compared with a conventional premixed case. Two mechanisms peculiar to gas port injection are characterized, being firstly the two-stage mixing process that involves immediate induction of the residual fuel from the previous engine cycle and delayed induction of the fuel injected in the current cycle, and secondly the limited fuel penetration speed along the intake ports with associated delay of charge induction. Additional information on volumetric efficiency, mixture quality, coherent flow motion and turbulence level is highlighted. It is concluded that the otherwise intuitive correlation between injection timing and mixture homogeneity for port injection is complicated by those two mechanisms, and, depending on specific engine design and operating point, differences resulted from modeling the engine operation with fuel injection and with premixed charge may prove combustion-significant. The method and the underlying mechanisms found herein are equally applicable to other combustion systems involving port injection of gaseous fuels.
机译:天然气已被确定为最有前途的替代燃料之一。端口注入天然气,由于其成本的优点,制造复杂性和混合均匀性,与当前和未来的发动机开发相关。本工作旨在通过开发喷射器和发动机的建模方法作为一种用于基于实验结果进一步阐述的诊断工具,提供气体燃料喷射和混合过程的全面表征。喷射器由源细胞方法建模,其允许缺席的膨胀气体射流的成本效益和物理 - 一致的描述,通过该源极了出现的气体射流,通过该燃料喷射定时,然后与传统的预混案例进行比较。一种诸如气体端口注射的两种机制的特征在于,首先是两级混合过程,其涉及从先前发动机循环的诱导诱导残余燃料,并延迟诱导在当前循环中注入的燃料,其次是有限的燃料穿透速度沿着具有相关电荷诱导延迟的进气口。有关体积效率,混合质量,相干流动运动和湍流水平的附加信息。得出结论是,喷射计时与端口喷射的混合物均匀性之间的其他直观相关性通过这两个机制复杂,并且根据特定发动机设计和操作点,差异由燃料喷射和预混料建模和预混充电产生的差异导致的差异证明燃烧显着。本文发现的方法和潜在机制同样适用于涉及端口注射气态燃料的燃烧系统。

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