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首页> 外文期刊>International journal of alternative propulsion >Study of the performance and exhaust emissions of a spark-ignited engine operating on syngas fuel
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Study of the performance and exhaust emissions of a spark-ignited engine operating on syngas fuel

机译:研究以合成气为燃料的火花点火式发动机的性能和废气排放

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摘要

To resolve the problem of depletion of petroleum based liquid fuels, various solutions have been proposed. One of them is the use of gaseous fuels that are generated from the gasification of woods, namely syngas or wood-gas fuels, as full supplement fuels in spark ignition internal combustion (IC) engines. This fuel consists of nearly 40% combustible gases, mainly hydrogen and carbon monoxide (CO), while the rest is non-combustible gases. In the present work, a comparison between experimental and computed results is presented for a conventional natural gas, spark-ignited engine, fuelled with syngas instead of natural gas fuel. For the theoretical investigation, a computer model is developed that simulates the syngas combustion processes in a conventional natural gas, spark-ignited engine. The combustion model is a two-zone one, where the combustion rate of syngas fuel depends on the velocity of the flame front that forms around the area of the burning zone and then spreads inside the combustion chamber. The flame front development takes into account the history of pressure and temperature inside the chamber and the local composition, in order to estimate the flame velocity. An equilibrium model is used to determine the concentration of the chemical species involved, the extended Zeldovich mechanism is used to determine the concentration of nitric oxide (NO) and a CO kinetics scheme is used to estimate the CO emission. To validate the predictive ability of the model, experimental measurements are used from the operation of a multi-cylinder, four-stroke, turbocharged, spark-ignited engine fuelled with syngas fuel, with the measurements corresponding to various values of the air to fuel ratio (load). The experimental results are found to be in good agreement with the respective computed ones obtained from the computer model. Comparing the computed results when operating the engine with natural gas as against syngas fuel, a serious effect of the syngas operation on the cylinder pressure diagrams and the engine brake efficiency is revealed, for all test cases examined. Moreover, as far as pollutant emissions are concerned, the use of natural gas instead of syngas has a positive effect on both NO and CO emissions (reduction).
机译:为了解决基于石油的液体燃料的消耗问题,已经提出了各种解决方案。其中之一是使用由木材气化产生的气态燃料,即合成气或木质气燃料,作为火花点火内燃机(IC)的全补充燃料。这种燃料由将近40%的可燃气体组成,主要是氢气和一氧化碳(CO),其余的是不可燃气体。在当前的工作中,对使用合成气代替天然气燃料的常规天然气,火花点火式发动机的实验结果和计算结果进行了比较。为了进行理论研究,开发了一种计算机模型,用于模拟常规天然气火花点火式发动机中合成气的燃烧过程。燃烧模型是一个两区模型,其中合成气燃料的燃烧速率取决于在燃烧区周围形成并在燃烧室内传播的火焰前沿的速度。火焰前沿的发展考虑了室内压力和温度的历史以及局部成分,以便估算火焰速度。平衡模型用于确定所涉及化学物质的浓度,扩展的Zeldovich机理用于确定一氧化氮(NO)的浓度,CO动力学方案用于估计CO的排放。为了验证模型的预测能力,使用了以合成气为燃料的多缸,四冲程,涡轮增压,火花点火式发动机运行的实验测量值,这些测量值对应于各种空燃比值(加载)。实验结果与从计算机模型获得的各个计算结果非常吻合。比较在所有测试用例下使用天然气而非合成气燃料操作发动机时的计算结果,发现合成气操作对气缸压力图和发动机制动效率的严重影响。此外,就污染物排放而言,使用天然气代替合成气对NO和CO排放均具有积极作用(减少)。

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