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NUMERICAL STUDIES ON CONTROLLING GASEOUS FUEL COMBUSTION BY MANAGING THE COMBUSTION PROCESS OF DIESEL PILOT DOSE IN A DUAL-FUEL ENGINE

机译:控制双燃料发动机柴油先导剂量燃烧过程控制气态燃料燃烧的数值研究

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摘要

Protection of the environment and counteracting global warming require finding alternative sources of energy. One of the methods of generating energy from environmentally friendly sources is increasing the share of gaseous fuels in the total energy balance. The use of these fuels in compression-ignition (CI) engines is difficult due to their relatively high autoignition temperature. One solution for using these fuels in CI engines is operating in a dual-fuel mode, where the air and gas mixture is ignited with a liquid fuel dose. In this method, a series of relatively complex chemical processes occur in the engine's combustion chamber, related to the combustion of individual fuel fractions that interact with one another. Analysis of combustion of specific fuels in this type of fuel injection to the engine is difficult due to the fact that combustion of both fuel fractions takes place simultaneously. Simulation experiments can be used to analyse the impact of diesel fuel combustion on gaseous fuel combustion. In this paper, we discuss the results of simulation tests of combustion, based on the proprietary multiphase model of a dual-fuel engine. The results obtained from the simulation allow for analysis of the combustion process of individual fuels separately, which expands the knowledge obtained from experimental tests on the engine.
机译:保护环境和应对全球变暖需要寻找替代能源。从环境友好的来源产生能量的方法之一是增加气体燃料在总能量平衡中的份额。由于它们的相对较高的自燃温度,很难在压缩点火(CI)发动机中使用这些燃料。在CI发动机中使用这些燃料的一种解决方案是在双燃料模式下运行,在该模式下,空气和气体混合物会被注入一定量的液体燃料。在这种方法中,一系列相对复杂的化学过程发生在发动机的燃烧室中,与相互相互作用的各个燃料馏分的燃烧有关。由于两种燃料馏分的燃烧同时发生,因此难以分析这种类型的向发动机喷射燃料中的特定燃料的燃烧。仿真实验可用于分析柴油燃料燃烧对气态燃料燃烧的影响。在本文中,我们讨论了基于双燃料发动机专有的多相模型的燃烧模拟测试结果。从模拟中获得的结果可单独分析单个燃料的燃烧过程,从而扩展了从发动机实验测试中获得的知识。

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