首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Optimization of Biofuel Blends and Compression Ratio of a Diesel Engine Fueled with Calophyllum inophyllumOil Methyl Ester
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Optimization of Biofuel Blends and Compression Ratio of a Diesel Engine Fueled with Calophyllum inophyllumOil Methyl Ester

机译:用CalophyllumOillumoil甲酯加油的生物燃料混合物和压缩比的优化

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摘要

The twin crises in depletion of fossil fuels and environmental degradation have motivated researches to consolidate the use of biofuels for internal combustion engine applications. In the present study, the performance and emission characteristic of Calophyllum inophyllum oil-based methyl ester and its diesel blends are analyzed at various compression ratios. Comprehensive optimization by considering the performance parameter along with emission characteristic is rather involved and is done carefully with designed set of experiments and analyzed statistically using design expert software. Higher compression ratio (CR) induces high cylinder temperature which enhances vaporization and thereby better performance only to a certain extent, that is, up to a CR of 19. However, due to high operating temperature, the oxides of nitrogen emission increase with CR and also for high biofuel blends, but better combustion phenomenon at these conditions reduces the emissions of carbon monoxide and unburned hydrocarbon. The designed empirical statistical model for optimum performance with lower emission is found to be B30 (30% biofuel) at a CR of 19, which is then tested and validated.
机译:在化石燃料和环境退化中耗尽的双胞胎危机具有巩固用于内燃机应用的生物燃料的研究的动力研究。在本研究中,以各种压缩比分析了Calophyllum油基油基甲酯及其柴油共混物的性能和发射特性。通过考虑性能参数以及发射特性的综合优化,并仔细完成设计的一组实验,并使用设计专家软件进行统计分析。更高的压缩比(Cr)诱导高汽缸温度,从而促进蒸发,从而在一定程度上表现出更好的性能,即,最高可达19的性能。然而,由于高工作温度,氮气发射的氧化物与Cr和氮气增加此外,对于高生物燃料混合物,但在这些条件下的更好的燃烧现象减少了一氧化碳和未燃烧的烃的排放。设计具有较低排放的最佳性能的设计的经验统计模型是B30(30%生物燃料),其CR为19,然后测试和验证。

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