Impacts of Using Exhaust Gas Recirculation and Various Amount of Dimethyl Ether Premixed Ratios on Combustion and Emissions on a Dual-Fuel Compression Ignition Engine

D. Stepanenko, Jacek Rudnicki, Zbigniew Kneba
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Abstract

In the presented research, the authors dealt with the specific properties of the combustion process of dimethyl ether (DME) in a combustion car (Volkswagen Golf IV) engine AJM 1.9 TDI PDE made by Volkswagen factory. Dimeth-yl ether is an alternative fuel produced most often from natural gas, which can be used in compression ignition engines as a single fuel or co-burned with diesel oil. This work describes the impacts of using exhaust gas recirculation (EGR) system and various diesel to DME substitution ratios from 0% to approximately 25% (on an energy basis), on the combustion process in a dual-fuel diesel engine. The engine has been modified so that DME fuel is introduced into the intake manifold just before the intake valves. The diesel fuel supply system, operation algorithms of the engine electronic control unit and other engine elements were left unchanged as it was built by the manufacturer.
使用废气再循环和不同量的二甲醚预混比例对双燃料压燃式发动机燃烧和排放的影响
在本研究中,作者研究了二甲醚(DME)在大众汽车厂生产的内燃汽车(大众高尔夫 IV)发动机 AJM 1.9 TDI PDE 燃烧过程中的具体特性。二甲醚是一种替代燃料,最常见的生产原料是天然气,可作为单一燃料或与柴油共同燃烧用于压燃式发动机。这项工作描述了使用废气再循环(EGR)系统和不同的柴油与二甲醚替代率(从 0% 到约 25%,以能量为基础)对双燃料柴油发动机燃烧过程的影响。对发动机进行了改装,使二甲醚燃料在进气门之前进入进气歧管。柴油供应系统、发动机电子控制单元的运行算法和其他发动机元件均保持制造商制造时的原样。
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