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High-Pressure Autoignition of Binary Blends of Methanol and Dimethyl Ether

机译:甲醇和二甲醚二元共混物的高压自燃

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Reactivity Controlled Compression Ignition (RCCI) is a new advanced engine concept that uses a dual fuel mode of operation to achieve significant improvements in fuel economy and emissions output. The fuels that are typically used in this mode include a low- and a high-reactivity fuel in varying proportions to control ignition timing. As such, understanding the interaction effects during autoignition of binary fuel blends is critical to optimizing these RCCI engines. In this work, we measure the autoignition delays of binary blends of dimethyl ether (C2H60, DME) and methanol (CH40, MeOH) in a rapid compression machine. In these experiments, dimethyl ether and methanol function as the high- and low-reactivity fuels, respectively. We considered five fuel blends at varying blending ratios (by mole), including 100% DME-0% MeOH, 75% DME-25% MeOH, 50% DME-50% MeOH, 25% DME-75% MeOH, and 0% DME-100% MeOH. Experiments are conducted at an engine-relevant pressure of 30 bar, for the stoichiometric equivalence ratio. In addition, the experimental results are compared with simulations using a chemical kinetic model for DME/MeOH combustion generated by merging independent, well-validated models for DME and MeOH.
机译:反应性控制压缩点火(RCCI)是一种新的先进发动机概念,采用双重燃料模式来实现燃料经济性和排放输出的显着改进。通常在该模式中使用的燃料包括变化比例的低反应性燃料,以控制点火正时。因此,了解二元燃料混合物自燃期间的相互作用效果对于优化这些RCCI发动机至关重要。在这项工作中,我们测量在快速压缩机中的二甲醚(C2H60,DME)和甲醇(CH40,MeOH)的二元共混物的自燃延迟。在这些实验中,分别为二甲醚和甲醇作为高反应性燃料。我们认为五种燃料混合物以不同的混合比(通过摩尔),包括100%DME-0%MeOH,75%DME-25%MeOH,50%DME-50%MeOH,25%DME-75%MeOH和0% DME-100%Meoh。实验在30巴的发动机相关压力下进行,用于化学计量的等效比。此外,通过使用独立的,验证的DME和MeOH的验证模型产生的DME / MeOH燃烧的化学动力学模型将实验结果与模拟进行比较。

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