首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part A: Journal of Power and Energy >Performance and emission investigation of a four-stroke liquefied petroleum gas spark-ignition engine generator used in a Malaysian night market
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Performance and emission investigation of a four-stroke liquefied petroleum gas spark-ignition engine generator used in a Malaysian night market

机译:马来西亚夜市使用的四冲程液化石油气火花点火发动机发电机的性能和排放调查

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摘要

The objective of this study is to investigate and compare the performance and emission characteristics of the liquefied petroleum gas (LPG)-fuelled engine generator and the conventional gasoline-fuelled engine generator. The approach involves converting a gasoline engine generator, commonly used in Malaysian night markets to generate electricity, to the LPG engine generator. A four-stroke SI single-cylinder engine is equipped with an LPG injection system with minor modifications and then tested with both LPG and gasoline fuels. A venturi mixer (carburettor) was designed and in house constructed and then installed to deliver a proper A/F ratio to the combustion chamber. The commercial computational fluid dynamics software FLUENT was used for simulation of air flow inside the mixer. The converted engine was tested at constant speed for its brake-specific fuel consumption (BSFC), efficiency, exhaust temperature, and exhaust gas emissions. The results show that the performance and emission characteristics of the LPG-fuelled engine are well suited for use in night markets. Average BSFC and average efficiency for the LPG engine over a range of loads were quite similar to those for the gasoline engine: the average BSFC was 0.95 kg/kWh for the LPG engine and 1 kg/kWh for the gasoline engine. The use of LPG as fuel in a gasoline engine causes only a slight reduction in efficiency as a 17 per cent reduction in average efficiency was recorded over the entire load range; however, the LPG engine fared better at higher loads than the gasoline engine for which only as low as a 4 per cent reduction was recorded at high loads. Emission tests seem to verify the minimal pollution products; there are significant reductions in the emission concentration results when LPG is used. Average decreases of 32 per cent for nitrogen oxide, 10 per cent for carbon dioxide, and 40 per cent for carbon monoxide were recorded. Although higher values of hydrocarbon (HC) were recorded, a 50 per cent reduction in HC was found for loads higher than 700 W. The study verified the more favourable features of LPG compared to gasoline as it is one of the best alternative fuels to gasoline for spark-ignition engine generators to solve the air pollution problem in night markets.
机译:这项研究的目的是研究和比较液化石油气(LPG)燃料发动机发电机和常规汽油燃料发动机发电机的性能和排放特性。该方法涉及将马来西亚夜市通常使用的汽油发动机发电机转换为LPG发动机发电机。四冲程SI单缸发动机配备了LPG喷射系统,并做了一些小改动,然后对LPG和汽油燃料进行了测试。设计了文丘里混合器(化油器)并在室内建造,然后安装以向燃烧室提供适当的空燃比。商业计算流体动力学软件FLUENT用于模拟混合器内部的气流。转换后的发动机在恒速下进行了制动专用油耗(BSFC),效率,排气温度和排气排放的测试。结果表明,液化石油气燃料发动机的性能和排放特性非常适合在夜市中使用。 LPG发动机在各种负载范围内的平均BSFC和平均效率与汽油发动机非常相似:LPG发动机的平均BSFC为0.95 kg / kWh,汽油发动机的平均BSFC为1 kg / kWh。在汽油发动机中使用液化石油气作为燃料只会使效率略有下降,因为在整个负载范围内,平均效率下降了17%。但是,LPG发动机在较高负载下的性能要比汽油发动机好,而汽油发动机在高负载下仅降低了4%。排放测试似乎证明了最低污染产品。使用LPG时,排放浓度结果显着降低。氮氧化物的平均减少量为32%,二氧化碳的平均减少量为10%,一氧化碳的平均减少量为40%。尽管记录了更高的碳氢化合物(HC)值,但负荷高于700 W时却发现HC降低了50%。该研究证实了LPG是汽油的最佳替代燃料之一,与汽油相比,LPG具有更有利的特性。用于火花点火发动机发电机,以解决夜市中的空气污染问题。

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