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Empirical analysis of biodiesel effect on the automobile properties of diesel engine: A case study of olive and soya biomass

机译:生物柴油对柴油机汽车性能影响的实证分析:以橄榄和大豆生物量为例

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Laboratory evidence of cyclic breaking in biodiesel products was recently reported. This study seeks to investigative biodiesel production from olive and soya biomass along recent scientific discovery. Research focus was on the analysis of mixed fossil‐biodiesel samples on diesel engine. The mixed blend of soya (B10 and B20) and olive (B10 and B20) were used in this study. The TD 200 diesel engine was used to examine the automobile implications of adopting olive and soya biodiesels for automobile applications. More so, the research seeks to know the effect of cyclic breaking on engine performance. Aside the normal parameters like torque, rotational speed, differential pressure, operational temperature, and power generated in the engine, five additional factors were considered that is sound of engine, power generated by engine in horse power, thermal efficiency, normal engine efficiency, and brake mean effect pressure. Most parameters show the effect of cyclic breaking in the mixed olive and soya biodiesel when the engine operates beyond 20?minutes. The temperature of the engine is increased by 41% and 29% for olive B10 and soya B10, respectively. The maximum engine efficiencies when pure diesel, Soya B10, and Olive B10 (at specific heat ratio of 8.5) were optimized was 0.44, 0.709, and 0.616, respectively. The shortcoming of the tested biodiesel products was highlighted in the research. The rate of cyclic breaking in biodiesel is recommended for further study.
机译:最近报道了生物柴油产品中周期性破坏的实验室证据。这项研究旨在研究利用橄榄和大豆生物质生产生物柴油的最新科学发现。研究重点是分析柴油机上混合的化石-生物柴油样品。本研究使用大豆(B10和B20)和橄榄(B10和B20)的混合混合物。 TD 200柴油发动机用于检查在汽车应用中采用橄榄和大豆生物柴油对汽车的影响。更重要的是,该研究试图了解周期性破坏对发动机性能的影响。除了正常参数(例如扭矩,转速,压差,工作温度和发动机中产生的功率)外,还考虑了其​​他五个因素,即发动机的声音,发动机产生的功率(马力),热效率,正常发动机效率以及制动平均作用压力。大多数参数显示了当发动机运行超过20分钟时,混合的橄榄和大豆生物柴油中循环破碎的影响。橄榄B10和大豆B10的发动机温度分别提高了41%和29%。优化纯柴油,大豆B10和橄榄B10(比热比为8.5)时的最大发动机效率分别为0.44、0.709和0.616。该研究突出了被测生物柴油产品的缺点。建议生物柴油中的循环破坏率有待进一步研究。

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