Department of Mechanical Engineering, National Institute of Technology Warangal, Warangal, Telangana State, 506004, India.
Green Vehicle Technology Research Centre, Department of Automobile Engineering, SRM Institute of Science and Technology, Kattankulathur, Tamil Nadu, 603203, India.
Environ Sci Pollut Res Int. 2021 Mar;28(10):11942-11953. doi: 10.1007/s11356-020-08231-3. Epub 2020 Mar 6.
The performance of engine parameters is more influenced with fuel injection strategies namely start of main injection timing (SoMI). An experimental analysis was performed to find the optimum SoMI timing based on performance, emission, and combustion characteristics. Base fuel of diesel and neem biodiesel was used as test fuels. The neem biodiesel was prepared by esterification and transesterification process. It is found from literature that neem biodiesel blend NB20 with diesel gives optimum performance and emission characteristics; therefore, NB20 blend was used for experiments. A variable geometry turbocharger (VGT) compression ignition (CI) engine was used to conduct the experiments. Engine performance parameters were estimated and compared with a base fuel of diesel and with NB20 blends. In this experimentation, fuel injection pressure (FIP) of 800 bar and engine speed of 1700 rpm were considered. SoMI timing was varied from 2° to 10° bTDC with an increment of 2° bTDC timing. Cylinder pressure (CP) and heat release rate (HRR) were estimated and found that are higher for diesel fuel compared to NB20 blend at different SoMI timings. The addition of neem biodiesel NB20 blend to diesel fuel decreases the exhaust emissions except NOx emissions. The BSFC was considerably reduced and BTE was improved almost equivalent to the diesel fuel for NB20. From the results, it is concluded that 10° bTDC SoMI timing provides 13% improvement in BTE, 21% decrement in BSFC, and 7.5% reduction in CO emissions.
发动机参数的性能更多地受到燃油喷射策略的影响,例如主喷射正时的起始点 (SoMI)。进行了实验分析,以根据性能、排放和燃烧特性找到最佳的 SoMI 正时。基础燃料为柴油和印楝生物柴油。印楝生物柴油通过酯化和酯交换工艺制备。从文献中发现,印楝生物柴油与柴油的混合燃料 NB20 具有最佳的性能和排放特性;因此,使用 NB20 混合燃料进行了实验。使用可变几何涡轮增压 (VGT) 压缩点火 (CI) 发动机进行了实验。估计了发动机性能参数,并与柴油的基础燃料和 NB20 混合燃料进行了比较。在这项实验中,考虑了 800 巴的燃油喷射压力 (FIP) 和 1700 rpm 的发动机转速。SoMI 正时从 2°到 10° bTDC 变化,每 2° bTDC 正时递增。估计了气缸压力 (CP) 和放热率 (HRR),并发现不同 SoMI 正时下,柴油的 CP 和 HRR 都高于 NB20 混合燃料。将印楝生物柴油 NB20 混合燃料添加到柴油燃料中会降低排放,除了 NOx 排放外。BSFC 显著降低,BTE 几乎与柴油相当,对于 NB20 来说。从结果可以得出结论,10° bTDC 的 SoMI 正时可将 BTE 提高 13%,BSFC 降低 21%,CO 排放降低 7.5%。