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Effect of Water Injection into Exhaust Manifold on Diesel Engine Combustion and Emissions

机译:注水进入排气歧管对柴油机燃烧和排放的影响

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In this study, an experimental investigation was conducted to assess the combustion and emissions of a single cylinder diesel engine using water injection in the exhaust manifold. Water is injected into the exhaust manifold and by opening the exhaust valve during the intake stroke, the injected water, and exhaust gases are reentered the engine cylinder then mixed during the intake and compression stroke and participated in the combustion process. The purpose of this injection strategy is to utilize the exhaust gases enthalpy to evaporate water before combustion to reduce soot and NO_x emissions without decrease combustion temperature. The results show that water injection leads to increase in the cylinder pressure, apparent heat release rate (AHRR) in premixed combustion phase and, the ignition delay comparing with EGR without water injection. The indicated mean effective pressure (IMEP) for EGR without water injection is lower than conventional diesel combustion with 14 %. However, with water injection, the IMEP increased with 11% comparing to EGR without water injection. NO_x emissions reduced up to 85% comparing to conventional diesel combustion due to the EGR effect. Soot concentration increased dramatically with EGR. However, with water injection, soot emissions reduced by up to 40% but still higher than conventional diesel combustion.
机译:在这项研究中,进行了实验研究,以评估单缸柴油机的燃烧和排放使用排气歧管中的注水。将水注入排气歧管,并通过在进气冲程期间打开排气阀,注入的水和废气再入发动机缸,然后在摄入和压缩冲程期间混合并参与燃烧过程。该注射策略的目的是利用废气焓蒸发水,然后在燃烧前蒸发,以减少烟灰和NO_X排放而不会降低燃烧温度。结果表明,注水导致汽缸压力,表观热释放率(AHRR)在预混合燃烧相中增加,并与没有注水的EGR比较的点火延迟。 EGR的表明平均有效压力(IMEP)没有注水的低于常规柴油燃烧,14%。然而,通过注射注水,IMEP增加了11%,与EGR没有注水的EGR比较。由于EGR效应,NO_X排放减少了85%的常规柴油燃烧。烟灰浓度随着EGR显着增加。然而,随着注水,烟灰排放减少了高达40%但仍然高于传统的柴油燃烧。

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