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Experimental investigation on the performance and emission characteristics of a diesel engine by varying the injection pressure and injection timing using mixed biodiesel

机译:混合生物柴油通过改变喷射压力和喷射正时对柴油机性能和排放特性的实验研究

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Biodiesel is a promising fuel for compression ignition engines instead of diesel fuel. Due to the depletion of diesel fuel, an alternative fuel can be used in an engine. The experiments were conducted on a four-stroke, single cylinder CI engine. In this present investigation, an attempt has been made to study the influence of injection pressure (IP) and injection timing (IT) on the performance and emission characteristics of diesel engines by using mixed biodiesel (Thevetia peruviana, Jatropha, Pongamia, and Azadirachta indica). The injection pressure is varied from 200 to 230 bar and the injection timing is varied from 23 to 29 degrees bTDC at an increment of 10 bar and 2 degrees bTDC, respectively, and the results were compared with diesel. From this study, the results showed that the brake thermal efficiency (BTE) was increased by 2.4% with an increase in injection pressure and 1.5% with an increase in the injection timing for the maximum load, but lesser than diesel. Furthermore, a reduction of 5.08% of brake specific fuel consumption (BSFC) has been noticed for the rise in IP and IT with loads but higher than diesel. The reduction was 34.17%, 53.85%, and 29.7% and 29.17%, 53.85%, and 21.95% of hydrocarbons (HC), carbon monoxide (CO), and smoke emissions, respectively, at 230 bar injection pressure and at 27 degrees bTDC injection timing. Also, a significant increase in nitrogen oxides (NOx) and carbon dioxide (CO2) emissions at the maximum load was observed by increasing the injection pressure and injection timing.
机译:生物柴油是代替柴油燃料的有希望的压燃式发动机燃料。由于柴油的消耗,可以在发动机中使用替代燃料。实验是在四冲程单缸CI发动机上进行的。在本次调查中,已尝试通过使用混合生物柴油(Thevetia peruviana,Jatropha,Pongamia和Azadirachta indica)研究喷射压力(IP)和喷射正时(IT)对柴油机性能和排放特性的影响。 )。喷射压力从200到230 bar不等,喷射正时从23到29 o bTDC分别以10 bar和2 o bTDC的增量变化,并将结果与​​柴油进行比较。根据这项研究,结果表明,在最大负载下,制动压力效率(BTE)随着喷射压力的增加而增加2.4%,随着喷射正时的增加而增加1.5%,但低于柴油。此外,由于IP和IT负载(但高于柴油)的增加,已经注意到制动比燃料消耗(BSFC)降低了5.08%。在230 bar的注射压力和27度bTDC下,碳氢化合物(HC),一氧化碳(CO)和烟气排放量分别减少了34.17%,53.85%和29.7%和29.17%,53.85%和21.95%注射时间。此外,通过增加喷射压力和喷射时间,可以观察到最大负荷下氮氧化物(NOx)和二氧化碳(CO2)排放量的显着增加。

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