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A comparative performance and emission investigation CI engine fuelled with neem oil esters with varying engine compression ratios

机译:以不同发动机压缩比的印楝油酯为燃料的 CI 发动机性能和排放比较研究

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摘要

The current exploration of alternative fuels to conventional engines is tested on two fronts: the thermophysical property assessment and the other, real-time evaluation using engine testing using the fuel. The engine testing fueled with modified oils/esterified blends does give real-time analysis but at the cost of harmful emissions dumped into the polluted environment. The current work describes the use of possible simulations and the validity of simulation confirmed from real-time experimentation at varying engine compression ratios (CRs). Engine parameters were kept the same for simulations that were performed on the Diesel RK module and experimental analysis. Neem oil blends were prepared and tested for the composition of FFA and later the required properties were supplemented to software for possible thermal performance and emission detections. The thermal efficiency deviation observed between RK model and experimental values for CR 18 for Diesel, B20, B40, and B100 was 5.8, 1.9, 3.4, and 2.1, respectively, and for NOx, the deviation observed for Diesel, B20, B40, and B100 was 8.9 and 13.7, 12.2 and 14.1, and 9.4 and 11.1, respectively. The peak HRR and cylinder pressures observed for software simulations and real-time experimental approaches did not vary much, but the peak values do differ by 6.7 and 4.7, respectively.
机译:目前勘探的替代燃料传统发动机测试在两个方面:热物理的房地产评估和其他,实时评估使用引擎测试使用的燃料。混合油/酯化确实给实时但在有害排放的成本分析倾倒污染环境。工作描述的使用可能的模拟和模拟的有效性确认实时实验在不同的引擎压缩比(CRs)。保持相同的模拟执行在柴油RK模块和实验分析。进行FFA的构成和后来的测试要求性能补充软件可能的热性能和排放检测。观察RK模型和实验值之间为柴油,CR 18 B20, 3, B1005.8%、1.9%、3.4%和2.1%,分别氮氧化物,偏差为柴油,B20, 3,B100是8.9%和13.7%,12.2%和14.1%分别为9.4%和11.1%。气缸压力观察软件实时模拟和实验方法没有多大变化,但高峰值不同吗分别为6.7%和4.7%。

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