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首页> 外文期刊>American journal of engineering and applied sciences >Diesel Engine Convert to Port Injection CNG Engine Using Gaseous Injector Nozzle Multi Holes Geometries Improvement: A Review | Science Publications
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Diesel Engine Convert to Port Injection CNG Engine Using Gaseous Injector Nozzle Multi Holes Geometries Improvement: A Review | Science Publications

机译:柴油机通过气嘴喷嘴多孔几何形状转换为进气口压缩天然气发动机科学出版物

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摘要

> The objective of this study was to review the previous research in the development of gaseous fuel injector for port injection CNG engine converted from diesel engine. Problem statement: The regular development of internal combustion engines change direction to answer the two most important problems determining the development trends of engines technology and in particular, their combustion systems. They were environmental protection against emission and noise, shortage of hydrocarbon fuels, specific fuel consumption and other technical and economic parameters. Approach: Several alternative fuels has been recognized as having a significant potential for producing lower overall pollutant emissions compared to diesel fuel. Natural gas, which composed predominately by identified as a leading candidate for transportation applications among these fuels for availability, environmental compatibility and natural gas is that it can be used in conventional diesel engines. Results: Some advantages of CNG as a fuel are octane number is very good for SI engine fuel, engines can be operate with a high compression ratio, less engine emissions and less aldehydes. In the diesel engines converted or designed to run on natural gas with the port injection (sequential) or trans-intake valve-injection system, a high-speed gas jet was pulsed from the intake port through the open intake valve into the combustion chamber, where it caused effects of turbulence and charge stratification particularly at engine parts load operations. The system was able to diminish the cyclic variations and to expand the limit of lean operation of the engine. The flexibility of gas pulse timing offers the potential advantage of lower emissions and fuel consumption. There are several advantages of port injection. The better possibility CNG engine is to equalize the air-fuel ratio of the cylinders, optimization of the gas injection timing and of the gas pressure for different operating conditions. Conclusion: The fuel nozzle injector multi holes geometries development was to produce optimum fuel air mixing and increasing the volumetric efficiency of the engine that will promote a comparable engine performance and efficiency.
机译: >这项研究的目的是回顾以前在从柴油发动机转换为进气口压缩天然气发动机的气体燃料喷射器方面的研究进展。问题陈述:内燃机的常规开发改变了方向,以回答决定发动机技术尤其是其燃烧系统的发展趋势的两个最重要的问题。它们是防止排放和噪音,碳氢燃料短缺,特定燃料消耗以及其他技术和经济参数的环境保护。方法:与柴油相比,几种替代燃料具有产生较低总体污染物排放的巨大潜力。在可用性,环境兼容性和天然气方面,天然气在这些燃料中主要被认为是运输应用的主要候选者,它可用于常规柴油发动机。结果:CNG作为燃料的一些优点是辛烷值非常适合SI发动机燃料,发动机可以高压缩比,更少的发动机排放物和更少的醛类运行。在通过进气口喷射(顺序)或跨进气门喷射系统转换或设计为以天然气运行的柴油发动机中,高速进气口从进气口通过打开的进气门以脉冲方式进入燃烧室,特别是在发动机零件负载运行时,会引起湍流和电荷分层效应。该系统能够减少周期性变化并扩大发动机稀薄运行的极限。气体脉冲定时的灵活性提供了降低排放和降低燃料消耗的潜在优势。端口注入有几个优点。 CNG发动机更好的可能性是使气缸的空燃比均等,针对不同的工况优化进气时间和气压。结论:燃油喷嘴喷油器多孔结构的发展是为了产生最佳的燃油空气混合并增加发动机的容积效率,这将带来可比的发动机性能和效率。

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