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首页> 外文期刊>Scientific reports. >Study of diesel engine characteristics by adding nanosized zinc oxide and diethyl ether additives in Mahua biodiesel–diesel fuel blend
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Study of diesel engine characteristics by adding nanosized zinc oxide and diethyl ether additives in Mahua biodiesel–diesel fuel blend

机译:用纳瓦碘柴油 - 柴油混合物加入纳米氧化锌氧化锌和二乙醚添加剂的研究

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摘要

This study deals with an experimental investigation to assess the characteristics of a modified common rail direct injection (CRDI) engine utilizing diesel, Mahua biodiesel, and their blends with synthesized zinc oxide (ZnO) nano additives. The physicochemical properties of diesel, diesel?+?30?ppm ZnO nanoparticles (D10030), 20% Mahua biodiesel (MOME20), and Mahua biodiesel (20%)?+?30?ppm ZnO nanoparticles (MOME2030) were measured in accordance to the American Society for Testing and Materials standards. The effects of modification of fuel injectors (FI) holes (7-hole FI) and toroidal reentrant combustion chamber (TRCC) piston bowl design on the performance of CRDI using different fuel blends were assessed. For injection timings (IT) and injection opening pressure (IOP) average increase in brake thermal efficiency for fuel blend D10030 and MOME2030 was 9.65% and 16.4%, and 8.83% and 5.06%, respectively. Also, for IT and IOP, the average reductions in brake specific fuel consumption, smoke, carbon monoxide, hydrocarbon and nitrogen oxide emissions for D10030 and MOME2030 were 10.9% and 7.7%, 18.2% and 8.6%, 12.6% and 11.5%, 8.74% and 13.1%, and 5.75% and 7.79%, respectively and 15.5% and 5.06%, 20.33% and 6.20%, 11.12% and 24.8%, 18.32% and 6.29%, and 1.79% and 6.89%, respectively for 7-hole fuel injector and TRCC. The cylinder pressure and heat release rate for D10030 and MOME2030 were enhanced by 6.8% and 17.1%, and 7.35% and 12.28%. The 7-hole fuel injector with the nano fuel blends at an injection timing and pressure of 10° btdc and 900?bar demonstrated the overall improvement of the engine characteristics due to the better air quality for fuel mixing. Similarly, the TRCC cylinder bowl geometry illustrated advanced ignition due to an improved swirl and turbulence. Also, the engine test results demonstrated that 30?ppm of ZnO nanoparticles in Mahua biodiesel (MOME2030) and diesel (D10030) with diethyl ether resulted overall enhancement of CRDI engine characteristics.
机译:本研究涉及一种实验研究,以评估利用柴油,Mahua生物柴油的改进的共轨直喷(CRDI)发动机的特性及其与合成的氧化锌(ZnO)纳米添加剂的共混物。柴油柴油的物理化学特性柴油?+?30?PPM ZnO纳米颗粒(D10030),20%MaHua生物柴油(Mome20)和Mahua生物柴油(20%)?+α+ 30?PPM ZnO纳米颗粒(Mome2030)进行测量美国的检测和材料标准协会。评估了燃料喷射器(FI)孔(7孔FI)和环形倒退燃烧室(TROIDEL)活塞碗设计对使用不同燃料共混物的CRDI性能的影响的影响。对于喷射定时(IO)和注射开启压力(IOP)燃料混合物D10030和Mome2030的制动热效率的平均增加分别为9.65%和16.4%,分别为8.83%和5.06%。此外,对于IT和IOP,D10030和Mome2030的制动燃料消耗,烟雾,一氧化碳,烃和氮氧化物排放的平均降低为10.9%和7.7%,18.2%和8.6%,12.6%和11.5%,8.74 %和13.1%,分别为5.75%和7.79%,分别为15.5%和5.06%,20.33%和6.20%,11.12%和24.8%,分别为7孔的1.79%和6.89%,为1.79%和6.89%燃料喷射器和TRCC。 D10030和Mome2030的气缸压力和热释放速率增强了6.8%和17.1%,7.35%和12.28%。 7孔燃料喷射器与纳米燃料混合在10°BTDC和900?BAR的注射时序和压力下混合,表明由于燃料混合的更好的空气质量,发动机特性的总体改善。类似地,TRCC气缸碗几何形状由于改进的涡流和湍流而被示出了先进的点火。此外,发动机测试结果表明,Mahua生物柴油(Mome2030)和柴油(D10030)中的30·ppm的ZnO纳米颗粒,其具有二乙醚导致CRDI发动机特性的总体增强。

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