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Performance analysis of an internal combustion engine operated on producer gas, in comparison with the performance of the natural gas and diesel engines

机译:与天然气和柴油发动机的性能相比,以生产气运行的内燃机的性能分析

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摘要

The growing economy and changing lifestyle have increased the demand for modern energy, like electricity. Globally 1.3 billion people are without access to electricity. In India, 289 million people do not have access to electricity. Decentralized distributed power generation using renewable energy is a competitive alternative for energy supply to all, with a sustainable growth. The performance of an internal combustion engine fueled with 100% producer gas was studied at variable load conditions. The engine was coupled with a 75 kW_e power generator. Producer gas generated from a downdraft gasifier system was supplied to the engine. The overall power generation efficiency of 21% was achieved above 85% load. The power generation efficiency of the producer gas engine was estimated at variable load conditions. The influencing factors of the power generation efficiency of a producer gas engine, such as volumetric efficiency, energy density of the fuel mixture, adiabatic flame temperature, compression ratio and expansion ratio were studied in detail. A relation between volumetric efficiency, expansion ratio, compression ratio and thermal efficiency was established and verified. The efficiency of the engine estimated using the new method has a correlation coefficient of 0.99 with the efficiency estimated using the energy input and output.
机译:经济的增长和生活方式的改变增加了对现代能源(如电力)的需求。全球有13亿人无法使用电力。在印度,有2.89亿人无法用电。使用可再生能源的分散式分布式发电是一种可持续发展的替代能源,可为所有人提供能源。研究了在可变负载条件下以100%生产气为燃料的内燃机的性能。该发动机与一台75 kW_e的发电机相连。由向下气流气化器系统产生的废气被供应到发动机。在85%的负载以上,总发电效率达到21%。在可变负载条件下估算了煤气发生炉的发电效率。详细研究了燃气发生机发电效率的影响因素,如容积效率,混合燃料的能量密度,绝热火焰温度,压缩比和膨胀比。建立并验证了体积效率,膨胀比,压缩比和热效率之间的关系。使用新方法估算的发动机效率与使用能量输入和输出估算的效率的相关系数为0.99。

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