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Combustion and Gaseous Emissions Characteristics of a Six-Cylinder Diesel Engine Operating within Wide Range of Natural Gas Substitutions at Different Operating Conditions for Generator Application

机译:六缸柴油机的燃烧和气体排放特性在不同的运行条件下运行的六缸柴油机在不同的操作条件下运行,用于发电机应用

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The aim of this work is to study the combustion and gaseous emissions characteristics of a diesel engine dual-fueled with natural gas at different operating conditions (light to full load) for generator application. The electromechanical system was composed of a commercially available 18 liter, 6-cylinder diesel engine, coupled with the generator rated at 600 k We at full-load. The flow of natural gas was electronically controlled using a throttle valve, and was inducted in the intake manifold before being introduced into the combustion chambers. Gaseous emissions of carbon monoxide (CO), hydrocarbons (HC) and nitrogen oxides (NO_x) were measured under both diesel and dual fuel operations at different loads. This work also presents the effects of diesel oxidation catalyst to reduce HC and CO emissions under dual fuel operation. At each operating load, gas percentage was increased with corresponding decrease in diesel pilot while maintaining the same power output. The engine cylinder head was modified to accommodate a piezoelectric pressure transducer in each cylinder to record in-cylinder pressure data for combustion analyses. Measured in-cylinder pressure, exhaust emissions and other relevant engine parameters, e.g. temperatures and pressures at various locations, were then used to identify the limiting parameters on gas induction at various loads. As expected, NO_x emissions are reduced under dual fuel operation compared to diesel operation. The results also showed that cyclic variability, cylinder-to-cylinder variations in the combustion process, and HC and CO emissions limited the gas induction at light loads. At higher loads, exhaust gas temperature limited the percentage of gaseous fuel under dual fuel operation.
机译:这项工作的目的是研究柴油发动机双燃料的燃烧和气体排放特性,在不同的操作条件下(光到满载),用于发电机应用。机电系统由市售的18升6缸柴油发动机组成,与发电机额定在满载时的600 k。使用节流阀电控制天然气的流动,并且在引入燃烧室之前在进气歧管中感应。在不同载荷的两种柴油和双燃料操作中测量一氧化碳(CO),烃(HC)和氮氧化物(NO_X)的气态排放。这项工作还提出了柴油氧化催化剂对双燃料操作下的HC和CO排放的影响。在每个工作载荷时,燃气百分比随着柴油飞行员的相应减少而增加,同时保持相同的功率输出。改变发动机缸盖以在每个气缸中容纳压电压力传感器,以记录用于燃烧分析的气缸压力数据。测量缸内压力,排气排放和其他相关发动机参数,例如,然后用于各个位置处的温度和压力,以识别各种负载下气体诱导的限制参数。与柴油操作相比,在预期的情况下,与双燃料操作相比,NO_X排放减少。结果还表明,燃烧过程中的循环变异,气缸 - 圆柱变化,HC和CO排放限制了轻负载下的气体感应。在较高的负载下,排气温度限制了双燃料操作下气体燃料的百分比。

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