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首页> 外文期刊>Energy Conversion & Management >Investigation on the effects of pilot injection on low temperature combustion in high-speed diesel engine fueled with n-butanol-diesel blends
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Investigation on the effects of pilot injection on low temperature combustion in high-speed diesel engine fueled with n-butanol-diesel blends

机译:先导喷射对正丁醇-柴油混合燃料高速柴油发动机低温燃烧的影响研究

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The effect of pilot injection timing and pilot injection mass on combustion and emission characteristics under medium exhaust gas recirculation (EGR (25%)) condition were experimentally investigated in highspeed diesel engine. Diesel fuel (B0), two blends of butanol and diesel fuel denoted as B20 (20% butanol and 80% diesel in volume), and B30 (30% butanol and 70% diesel in volume) were tested. The results show that, for all fuels, when advancing the pilot injection timing, the peak value of heat release rate decreases for pre-injection fuel, but increases slightly for the main-injection fuel. Moreover, the in-cylinder pressure peak value reduces with the rise of maximum pressure rise rate (MPRR), while NOx and soot emissions reduce. Increasing the pilot injection fuel mass, the peak value of heat release rate for pre-injected fuel increases, but for the main-injection, the peak descends, and the in-cylinder pressure peak value and NOx emissions increase, while soot emission decreases at first and then increases. Blending n-butanol in diesel improves soot emissions. When pilot injection is adopted, the increase of n-butanol ratio causes the MPRR increasing and the crank angle location for 50% cumulative heat release (CA50) advancing, as well as NOx and soot emissions decreasing. The simulation of the combustion of n-butanol-diesel fuel blends, which was based on the n-heptane-n-butanol-PAH-toluene mixing mechanism, demonstrated that the addition of n-butanol consumed OH free radicals was able to delay the ignition time. Crown Copyright (C) 2015 Published by Elsevier Ltd. All rights reserved.
机译:在高速柴油机中,实验研究了预喷射正时和引燃质量对中等排气再循环(EGR(25%))条件下燃烧和排放特性的影响。测试了柴油(B0),丁醇和柴油的两种混合物,分别表示为B20(体积为20%丁醇和80%柴油)和B30(体积为30%丁醇和70%柴油)。结果表明,对于所有燃料,当提前引燃喷射正时时,预喷射燃料的放热率峰值减小,而主喷射燃料的放热率峰值略有增加。此外,缸内压力峰值会随着最大压力上升率(MPRR)的增加而降低,而NOx和烟尘排放量会降低。先导喷射燃料质量增加,预喷射燃料的放热速率峰值增加,但对于主喷射,峰值下降,缸内压力峰值和NOx排放增加,而烟灰排放则在首先,然后增加。在柴油中混合正丁醇可改善烟尘排放。当采用引燃喷射时,正丁醇比的增加会导致MPRR增大,并且累积热释放(CA50)的50%曲柄角位置会提前,同时NOx和烟尘排放会降低。基于正庚烷-正丁醇-PAH-甲苯混合机理的正丁醇-柴油混合燃料燃烧模拟表明,添加正丁醇会消耗OH自由基,从而延迟点火时间。 Crown版权所有(C)2015,由Elsevier Ltd.发行。保留所有权利。

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