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DEVELOPMENT OF HYDROGEN-COMPRESSED NATURAL GAS BLEND ENGINE FOR HEAVY DUTY VEHICLES

机译:重型车辆氢气压缩天然气混合发动机的研制

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Natural gas fuel, as an alternative energy source of transportation, has been used widely since it has an advantage of low emission levels. However, new technologies are required in order to meet the reinforced emission regulations. For this purpose, research into the development of hydrogen-compressed natural gas (HCNG) blend engine was carried out to evaluate its feasibility and emission characteristics. The Engine Research Department at the Korea Institute of Machinery and Materials carried out a large number of tests based on various parameter changes that could affect the performance and emission of HCNG engine in different operating conditions. An earlier stage of the research project focused on the lean combustion of a HCNG engine for heavy duty vehicles to meet the EURO-VI standards. An 11-L/6-cylinder CNG engine was used for the test. The effects of the excess air ratio change were assessed based on various content ratios of hydrogen in the natural gas fuel. In the later part of the HCNG research, a stoichiometric mixture operation was suggested to meet reinforced emission regulation without requiring a De-NO_x system. Additionally, an exhaust gas recirculation (EGR) system was introduced for the purpose of improving thermal efficiency and durability. The optimal operating conditions were selected to achieve the best thermal efficiency to meet the required emission levels. In this paper, we demonstrate that a HCNG engine can achieve a significant decrease in NO_x emissions, as compared to that of a CNG engine, while meeting the requirements of the EURO-VI standards during a transient mode cycle test. EGR can suppress the weakness of stoichiometric mixture combustion strategy, such as the deterioration of the durability and thermal efficiency, while the emission level can be lowered with the use of a three-way catalyst. The possibility of further reduction of emissions and CO_2 with EGR was evaluated to access practical application of a HCNG engine in the field. From that evaluation, the HCNG engine with stoichiometric mixture operation for heavy duty vehicles was developed. The emission levels of HCNG engine were 50% lower when compared to the EURO-VI standards with a greater than 10% decrease in CO_2 compared to that of a natural gas engine.
机译:作为一种替代能源运输来源,天然气燃料已被广泛使用,因为它具有低排放水平的优点。但是,为了满足加强排放法规,需要新技术。为此目的,进行了研究氢气压缩天然气(HCNG)共混物发动机的开发,以评估其可行性和排放特性。韩国机械研究所的发动机研究部门基于各种参数变化进行了大量的测试,这可能会影响不同操作条件下HCNG发动机的性能和发射。研究项目的早期阶段专注于HCNG发动机为重型车辆的瘦燃烧,以满足欧VI标准。 11-L / 6缸CNG发动机用于测试。基于天然气燃料中的各种含量的氢含量比来评估过量的空气比变化的影响。在HCNG研究的后期,建议进行化学计量混合物操作以满足增强排放调节,而无需去NO_X系统。另外,为了提高热效率和耐久性,引入了废气再循环(EGR)系统。选择最佳操作条件以实现最佳的热效率以满足所需的排放水平。在本文中,我们证明,与CNG发动机相比,HCNG发动机可以实现NO_X排放的显着降低,同时满足急转模式循环测试期间欧VI标准的要求。 EGR可以抑制化学计量混合燃烧策略的弱点,例如耐久性和热效率的劣化,而使用三元催化剂可以降低排放水平。评估了具有EGR的进一步减少排放和CO_2的可能性,以访问现场HCNG发动机的实际应用。从该评估中,开发了具有重型车辆的化学计量混合操作的HCNG发动机。与天然气发动机相比,当与天然气发动机相比,欧元 - VI标准相比,HCNG发动机的发射水平降低了50%。

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