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Numerical simulation of dimethyl ether/natural gas blend fuel HCCI combustion to investigate the effects of operational parameters on combustion and emissions

机译:二甲醚/天然气混合燃料HCCI燃烧的数值模拟,研究了操作参数对燃烧和排放的影响

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摘要

Homogeneous charge compression ignition (HCCI) combustion phasing control is one of the most difficult challenges of operating this new concept of combustion. In this study, a dimethyl ether (DME)/natural gas (NG) blend fuel HCCI engine is simulated to investigate the effect of DME additive on the control of a NG HCCI start of combustion (SOC) timing. The studies are carried out in two sections. Firstly, different mole fractions of DME from 0 to 0.25% are thoroughly examined. In the second part, the effect of general equivalence ratio on the combustion phasing is studied. Moreover, in both sections, the studies are mainly focused on the influence of these two parameter variations on the SOC timing, auto-ignition temperature, heat flux, and heat capacity ratio. A 3D computational fluid dynamic AVL FIRE code coupled with CHEMKIN is adopted to simulate the HCCI combustion. Results showed that while DME amount increases in the mixture, a two-stage heat release rate would appear. DME additive can advance SOC and reduce requiring inlet temperature. Adding only 5% of DME would lead to 6.7-CAD change in SOC. Heat capacity ratio would lead to higher in-cylinder temperature during compression stroke, while equivalence ratio rises. 2.4 CAD change in SOC occurred for increasing equivalence ratio from 0.25 to 0.4.
机译:均匀电荷压缩点火(HCCI)燃烧阶段控制是操作这种新燃烧概念的最困难挑战之一。在该研究中,模拟了二甲醚(DME)/天然气(NG)共混燃料HCCI发动机,以研究DME添加剂对燃烧(SOC)定时的NG HCCI开始控制的影响。这些研究是在两个部分中进行的。首先,将DME的不同摩尔分数彻底​​检查了0至0.25%。在第二部分中,研究了一般等效比对燃烧相位的影响。此外,在两个部分中,研究主要集中在这两个参数变化对SOC时序,自动点火温度,热通量和热容比的影响。采用与Chemin耦合的3D计算流体动态AVL火灾码模拟HCCI燃烧。结果表明,虽然DME量在混合物中增加,但会出现两级热释放率。 DME添加剂可以提前SOC并减少需要入口温度。增加5%的DME将导致SoC的6.7 CAD。热容比率在压缩冲程期间导致圆柱温度较高,而等效率升高。 2.4 SOC的CAD变化发生在0.25至0.4的等效比率增加。

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