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Numerical and experimental study of combustion, performance and emission characteristics of a heavy-duty DI diesel engine running on diesel, biodiesel and their blends

机译:基于柴油,生物柴油及其混合物的重型DI柴油机燃烧,性能和排放特性的数值和实验研究

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The presented paper introduces a performed study into the possibility of replacing mineral diesel fuel with pure biodiesel fuel or their blends with diesel fuel. The presented work was carried out experimentally and numerically on a heavy-duty bus diesel engine using mineral diesel fuel, neat biodiesel fuel made from rapeseed oil and their 25% (B25), 50% (B50) and 75% (B75) blends. The influence of biodiesel fuel and blends on engine combustion, performance and emission characteristics was studied experimentally on an engine test-bed and numerically using an AVL BOOST simulation program. A new empirical sub-model for determining a combustion model parameters was proposed within a BOOST program. All the model's parameters were determined regarding the properties of the tested fuel and engine speed. The obtained results show a reduction in engine power and torque when increasing the percentage of biodiesel fuel in the fuel blends due to lower calorific value of biodiesel fuel. Higher oxygen content in the biodiesel and blends contributed to a better oxidation process within the combustion chamber, which resulted in a reduction of carbon oxides (CO) and nitrogen oxides (NO_x) at three different engine speeds (1360, 1700 and 2000 min~(-1)) and full throttle position. Both the experimental and numerical results indicated that neat biodiesel or biodiesel-diesel blends can be used within a heavy-duty diesel engine with modified static fuel delivery angle (injection pump timing) of the mechanically-controlled injection system.
机译:本文介绍了一项进行的研究,探讨了用纯生物柴油燃料或矿物燃料与柴油燃料替代矿物柴油的可能性。本文的工作是在重型客车柴油机上进行实验和数值模拟的,其中使用了矿物柴油,菜籽油及其25%(B25),50%(B50)和75%(B75)混合燃料制成的纯生物柴油。在发动机试验台上通过实验研究了生物柴油燃料及其混合物对发动机燃烧,性能和排放特性的影响,并使用AVL BOOST仿真程序进行了数值模拟。在BOOST程序中提出了一种用于确定燃烧模型参数的新的经验子模型。确定了所有模型参数,涉及测试燃料的性质和发动机转速。所获得的结果表明,由于生物柴油燃料的热值较低,因此当增加燃料混合物中生物柴油燃料的百分比时,发动机功率和扭矩会降低。生物柴油和混合物中较高的氧气含量有助于燃烧室内更好的氧化过程,从而导致在三种不同的发动机转速(1360、1700和2000 min〜()下,碳氧化物(CO)和氮氧化物(NO_x)的减少。 -1))和全油门位置。实验和数值结果均表明,纯净的生物柴油或生物柴油-柴油共混物可用于重型柴油发动机,其机械控制喷射系统的静态燃料输送角(喷射泵正时)经过修改。

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