首页> 外文会议>ASME Internal Combustion Engine Division technical conference >INFLUENCE OF PHYSICAL AND CHEMICAL PROPERTIES OF TWO BIODIESEL FUELS ON PERFORMANCE, COMBUSTION AND EXHAUST EMISSION CHARACTERISTICS IN A DI-CI ENGINE
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INFLUENCE OF PHYSICAL AND CHEMICAL PROPERTIES OF TWO BIODIESEL FUELS ON PERFORMANCE, COMBUSTION AND EXHAUST EMISSION CHARACTERISTICS IN A DI-CI ENGINE

机译:两种生物柴油燃料物理性质对DI-CI发动机性能,燃烧和排放特性的影响

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摘要

The purpose of this study is to examine the influence of biodiesel (BD) fuel properties on different characteristics of the engine and to compare with the baseline petroleum diesel (PD) fuel. This study consists of two parts, first one is biodiesel characterization and the second one is testing in the engine. Two BD fuels namely, the medium chain (C_6-C_(24)) coconut oil methyl ester (COME) and the long chain (C_(16)-C_(18)) sesame seed oil methyl ester (SSME) were selected. It is observed that, the physical and chemical properties such as viscosity, density, bulk modulus, calorific value, C/H ratio, and iodine value of SSME are higher than that of COME, while the cetane number, saturation% and oxygen% of the COME is higher than that of SSME. Experiments were conducted in a naturally aspirated, single cylinder, four-stroke, stationary, water cooled, constant rpm (1500), in-line (pump-high pressure tube-fuel injector) direct injection compression ignition (DI-CI) engine with COME, SSME (with and without preheating), and PD as fuels. The performance was evaluated in terms of fuel consumption (FC), brake specific energy consumption (BSEC), and thermal efficiency (BTE). Except for COME at full load, the BTE of the esters over all load ranges were less than that of PD fuel. Also, a significant improvement in BTE was observed, when the SSME is tested at PD's viscosity by using preheating technique. At full load, the BSFC of COME and SSME are increased by 16.61% and 18.24% respectively. The minimum BSEC (at full load) of COME is decreased by 1.3% and while that of SSME is increased by 4.5%, as compared to that of PD fuel. The full load peak pressures for COME, SSME and PD fuel are 63.8 bar, 65.8 bar, and 62.9 bar respectively. The high peak pressures of the methyl esters are probably due to dynamic injection advance, caused by their higher bulk modulus. The net heat release rate (HRR) and cumulative heat release (CHR) were calculated from the acquired data. The results show that, at all loads there is a slight increase in peak HRR for COME and large increase in peak HRR for SSME against PD fuel. The higher values of peak HRR indicate better premixed combustion with the methyl esters. However, the peak HRR for preheated SSME (SSME_H) decreases due to late injection and faster evaporation of the fuel. It was observed that, at full load the nitric oxide (NO) emission of SSME is increased by 12.9 %, while that of COME is decreased by 13.8% as compared to that of PD fuel. The smoke is increasing linearly with the fuels 'C/H' ratio regardless of their molecular structure. The HC emissions of both the esters are very low and are reduced by up to 73%, as compared PD. Also, there is a significant reduction in all exhaust emissions, and in particular the NO emission is observed with preheated SSME, due to change in premixed combustion phase.
机译:本研究的目的是检查生物柴油(BD)燃料特性对发动机的不同特性的影响,并与基线石油柴油(PD)燃料进行比较。本研究包括两部分,第一个是生物柴油表征,第二个是在发动机中进行测试。两种BD燃料即,中链(C_6-C_(24))椰子油甲酯(COLL)和长链(C_(16)-C_(18))选择芝麻油甲酯(SSME)。观察到,SSME的粘度,密度,体积模量,热值,C / H比和碘值的物理和化学性质高于来自的粘度,C / H比和碘值,而十六烷值,饱和度%和氧气%来的是高于SSME。在天然吸气,单缸,四冲程,固定式,水冷,恒定的RPM(1500),在线(泵 - 高压管 - 燃料喷射器)直接喷射压缩点火(DI-CI)发动机中进行实验来吧,ssme(有和没有预热),并且pd作为燃料。在燃料消耗(FC),制动特定能耗(BSEC)和热效率(BTE)方面评估了性能。除了满载外,所有负载范围内的酯的BTE小于PD燃料的BTE。此外,观察到通过使用预热技术在Pd粘度下测试SSME时,观察到BTE的显着改善。在满载时,SSME的BSFC分别增加了16.61%和18.24%。与PD燃料相比,来自于FACE的最小BSEC(满载)下降1.3%,而SSME的速度增加了4.5%。用于到来的全负荷峰值压力,SSME和PD燃料是63.8巴,65.8巴和62.9巴。甲酯的高峰压力可能是由于其较高的体积模量引起的动态注射前进。从所获得的数据计算净热释放率(HRR)和累积热释放(CHR)。结果表明,在所有载荷上,峰值HRR略有增加,对于PD燃料,SSME的峰值HRR峰值HRR大幅增加。峰值HRR的较高值表示与甲酯的更好预混燃烧。然而,预热的SSME(SSME_H)的峰值HRR由于晚期注射和燃料的蒸发而减小。观察到,与Pd燃料相比,SSME的一氧化氮(NO)发射的一氧化氮(NO)发射增加12.9%,而来自的氧化物的发射增加13.8%。无论其分子结构如何,烟雾与燃料的C / H'比线性增加。与PD相比,酯的HC排放量非常低,均低至73%。而且,所有废气排放都有显着的减少,特别是由于预混合燃烧阶段的变化,用预热的SSME观察到没有发射。

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