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Effect of compression ratio on combustion, performance and emissions of a laser ignited single cylinder hydrogen engine

机译:压缩比对激光点火单缸氢发动机的燃烧,性能和排放的影响

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Energy demand and emission norms are forcing automotive researchers to explore superior fuels and develop new combustion technologies to comply with stringent emission norms being adopted worldwide and continue the quest for improving engine performance. Laser ignition is one such technology, which has potential to improve the engine performance and reduce emissions from the internal combustion (IC) engines. To reduce emissions and counter depletion of fossil fuels, use of hydrogen as an alternate fuel in engine is gaining momentum worldwide. Laser ignition of hydrogen air mixtures has exhibited promising results in preliminary experimental investigations. In this follow-up research to develop a laser ignited prototype hydrogen engine, a diesel engine was modified to operate on hydrogen. Port-fuel injection of hydrogen was done in this prototype engine and the engine was installed with prototype laser ignition system. Apart from proven advantages of laser ignition, one main reason for implementing this technology was to eliminate the spark plug electrodes of conventional ignition system, which act as a source of pre-ignition inside the combustion chamber, when they get heated at higher compression ratios. The study was aimed to explore the effect of compression ratio on laser ignited IC engine because hydrogen has considerably higher octane number and it would be worthwhile to make use of higher compression ratios for improving engine performance and emission characteristics. Three compression ratios i.e. 10, 11 and 12 were used to find the effect of compression ratio on engine combustion, performance and emission characteristics of the laser ignited hydrogen fueled prototype engine. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:能源需求和排放规范正迫使汽车研究人员探索优质燃料并开发新的燃烧技术,以符合全球范围内采用的严格排放规范,并继续寻求改善发动机性能的要求。激光点火是一种这样的技术,它具有改善发动机性能和减少内燃机(IC)排放的潜力。为了减少排放和减少化石燃料的消耗,在全世界范围内使用氢作为发动机的替代燃料正在获得动力。氢空气混合物的激光点火在初步实验研究中已显示出令人鼓舞的结果。在开发激光点火原型氢发动机的后续研究中,对柴油发动机进行了改装,使其能够在氢上运行。在该原型发动机中进行了氢的港口燃料喷射,并且该发动机安装了原型激光点火系统。除了已证明的激光点火优势外,实施该技术的一个主要原因是取消了常规点火系统的火花塞电极,当它们在较高的压缩比下加热时,它们在燃烧室内成为预点火源。该研究旨在探讨压缩比对激光点火IC发动机的影响,因为氢气的辛烷值相当高,因此有必要利用较高的压缩比来改善发动机性能和排放特性。使用三个压缩比(即10、11和12)来发现压缩比对激光点火的氢燃料原型发动机的发动机燃烧,性能和排放特性的影响。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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