Electric-Based Heating System for Cold Start and Idling Performances Enhancement of Carburetor Engine Fueled with Bio-Ethanol

T. N. Duy, K. Duc, Truc Nguyen The
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Abstract

Bio-ethanol, one of the most popular alternative fuels, has been applied widely in the world to replace conventional fuel in internal combustion engines, especially in spark ignition engines. Bio-ethanol fuel is characterized by higher heat of vaporization value and low Reid vapor pressure in comparison with conventional gasoline fuel. These properties contribute to the lower temperature of the intake mixture and less effective mixture formation, which then affect engine performance, especially at cold starting and idling conditions. In this study, an electric-based heating system (EHS) was designed to increase intake air temperature, enhancing cold starting ability and idling stability. The experimental results show that, with the EHS, the cold start ability of the testing engine improves remarkably at low ambient temperature conditions. In addition, the cold idling speed of the test engine in the case of using EHS is more stable than the case without the system.
提高生物乙醇燃料化油器发动机冷启动和怠速性能的电加热系统
生物乙醇是最受欢迎的替代燃料之一,已在全球广泛应用于内燃机,特别是火花点火发动机,以替代传统燃料。与传统汽油燃料相比,生物乙醇燃料具有汽化热值高、里德蒸汽压低的特点。这些特性导致进气混合气温度较低,混合气形成效果较差,进而影响发动机性能,尤其是在冷启动和怠速工况下。本研究设计了一种电加热系统(EHS)来提高进气温度,从而增强冷启动能力和怠速稳定性。实验结果表明,使用 EHS 后,测试发动机在低环境温度条件下的冷启动能力显著提高。此外,在使用 EHS 的情况下,试验发动机的冷怠速比不使用该系统的情况下更加稳定。
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