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Experimental and Numerical Investigation of Ethanol/Diethyl Ether Mixtures in a CI Engine

机译:CI发动机中乙醇/二乙醚混合物的实验性和数值研究

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The auto-ignition characteristics of diethyl ether (DEE)/ethanol mixtures are investigated in compression ignition (CI) engines both numerically and experimentally. While DEE has a higher derived cetane number (DCN) of 139, ethanol exhibits poor ignition characteristics with a DCN of 8. DEE was used as an ignition promoter for the operation of ethanol in a CI engine. Mixtures of DEE and ethanol (DE), i.e., DE75 (75% DEE + 25% ethanol), DE50 (50% DEE + 50% ethanol) and DE25 (25% DEE + 75% ethanol), were tested in a CI engine. While DE75 and DE50 auto-ignited at an inlet air pressure of 1.5 bar, DE25 failed to auto-ignite even at boosted pressure of 2 bar. The peak in-cylinder pressure for diesel and DE75 were comparable, while DE50 showed reduced peak in-cylinder pressure with delayed start of combustion (SOC). Numerical simulations were conducted to study the engine combustion characteristics of DE mixture. A comprehensive detailed chemical kinetic model was created to represent the combustion of DE mixtures. The detailed mechanism was then reduced using standard direct relation graph (DRG-X) method and coupled with 3D CFD code, CONVERGE, to simulate the experimental data. The simulation results showed that the effects of physical properties on DE50 combustion are negligible. Simulations of DE50 mixture revealed that the combustion is nearly homogenous, while diesel (n-heptane used as a surrogate) and DE75 showed similar combustion behavior with flame liftoff and diffusion controlled combustion. Diesel exhibited auto-ignition at an equivalence ratio of 2, while DE75 and DE50 showed auto-ignition in the equivalence ratio range of 1-1.5 and 0-1, respectively. The experiments and numerical simulations demonstrate how the high reactivity of DEE supports the auto-ignition of ethanol, while ethanol acts as a radical scavenger.
机译:在数值和实验上,在压缩点火(CI)发动机中研究了二乙醚(DEE)/乙醇混合物的自动点火特性。虽然Dee具有139的较高的十六烷数量(DCN),但乙醇表现出差的点火特性,DCN为8. DEE用作CI发动机中乙醇的点火促进剂。在CI发动机中测试DE75(DE),即DE75(75%DEE + 25%乙醇),DE50(50%DEE + 50%乙醇)和DE25(25%DEE + 75%乙醇)的乙醇。虽然DE75和DE50在1.5巴的入口空气压力下自动点燃,但即使在2巴的增强压力下也未能自动点燃。柴油和DE75的峰值压力液柱压力可比较,而DE50显示出降低的圆柱压力达到汽缸压力的延迟开始(SOC)。进行了数值模拟,以研究DE混合物的发动机燃烧特性。创建了一个综合详细的化学动力学模型,以代表DE混合物的燃烧。然后使用标准直接关系图(DRG-X)方法减少详细机制,并与3D CFD码,收敛,模拟实验数据。仿真结果表明,物理性质对DE50燃烧的影响可忽略不计。 DE50混合物的模拟显示,燃烧几乎是均匀的,而柴油(用作替代的正庚烷)和DE75显示出类似的燃烧行为和扩散控制的燃烧。柴油以等效比为2的自动点火,而DE75和DE50分别在1-1.5和0-1的等效比范围内显示自动点火。实验和数值模拟表明DEE的高反应性支持乙醇的自动点火,而乙醇作为自由基清除剂。

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