首页> 外文会议>ASME Internal Combustion Engine Division technical conference >AN EXPERIMENTAL INVESTIGATION ON PERFORMANCE, COMBUSTION AND EMISSION CHARACTERISTICS OF A LOW HEAT REJECTION ENGINE USING DIESEL AND DIETHYL ETHER BLENDS
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AN EXPERIMENTAL INVESTIGATION ON PERFORMANCE, COMBUSTION AND EMISSION CHARACTERISTICS OF A LOW HEAT REJECTION ENGINE USING DIESEL AND DIETHYL ETHER BLENDS

机译:柴油和二乙基醚共混物对低热阻发动机性能,燃烧和排放特性的实验研究

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This research work investigates the performance, combustion and emission characteristics of a low heat rejection engine operated on diesel and diethyl ether blends. The combustion chamber walls of the diesel engine insulated by ceramic material were referred to as low heat rejection (LHR) engine. In the LHR engine, an improvement in fuel economy would be obtained by recovering the waste heat rejected to the cooling system as useful work. Initially, the diesel fuel was tested in the conventional engine as a baseline reading for comparison. Then the engine was insulated by coating the engine components of the piston crown and the cylinder liner with aluminum titanate using plasma spray method. In this work, the experiments are conducted using diesel and diethyl ether blends in a conventional and low heat rejection engine at constant speed condition. The experimental results indicate that the brake thermal efficiency increases with increased percentage of diethyl ether in the blends. The maximum brake thermal efficiency was found to be 33.24% for LHR engine using diesel-diethyl ether blend (Diesel 85% & Diethyl ether 15% by volume) at full load condition. The emissions of carbon monoxide and hydrocarbon are decreased due to better combustion characteristics and higher NO_x emissions are observed with low heat rejection engine (LHR) compared to the conventional engine using diesel and blended fuels.
机译:这项研究工作研究了在柴油和乙醚混合物中运行的低排热发动机的性能,燃烧和排放特性。由陶瓷材料绝缘的柴油发动机的燃烧室壁称为低排热(LHR)发动机。在LHR发动机中,通过将排入冷却系统的废热作为有用功进行回收,可以提高燃油经济性。最初,在常规发动机中对柴油进行了测试,以作为比较的基准读数。然后,通过等离子喷涂法用钛酸铝涂覆活塞顶和气缸套的发动机部件,从而使发动机绝缘。在这项工作中,实验是使用柴油和乙醚混合物在传统的低排热发动机中以恒定速度进行的。实验结果表明,制动热效率随着共混物中二乙醚含量的增加而增加。发现在柴油机-二乙醚混合物(柴油为85%,二乙醚为15%(体积))的情况下,LHR发动机的最大制动热效率为33.24%。一氧化碳和碳氢化合物的排放由于更好的燃烧特性而减少,与使用柴油和混合燃料的传统发动机相比,低排热发动机(LHR)观察到更高的NO_x排放量。

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