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首页> 外文期刊>Arabian Journal for Science and Engineering >Performance Analysis and Simulation of a Diesel-Miller Cycle (DiMC) Engine
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Performance Analysis and Simulation of a Diesel-Miller Cycle (DiMC) Engine

机译:柴油机 - 米勒循环(DIMC)发动机的性能分析与仿真

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摘要

A comprehensive performance examination of an engine running on combination of the Diesel and Miller cycles called Diesel-Miller cycle in terms of effective power, density of the effective power, and effective thermal efficiency, which will be called engine performance (ENPER) characteristics, is conducted using a novel thermodynamic simulation model. The impacts of cycle design parameters such as cycle pressure ratio, equivalence ratio, effective compression ratio (r), bore/stroke ratio (d/L), average piston speed, friction coefficient, engine speed (N), stroke (L), and air inlet temperature and air inlet pressure on the ENPER characteristics have been investigated. Additionally, the energy losses depending on exhaust output, friction, incomplete combustion, heat transfer have been defined as a ratio of energy provided by fuel injection. Variable specific heat values with respect to temperature variation for working fluid are used to get realistic results. The results of the study are reasonable and unique, and they could be utilized by researchers and engineers studying on internal combustion engines.
机译:在有效功率,有效功率密度和有效的热效率方面,柴油和米勒周期组合的发动机综合性能检查,有效功率,有效的热效率,可称为发动机性能(Enper)特征,是使用新型热力学模拟模型进行。循环设计参数的影响,如循环压力比,等效比,有效压缩比(R),孔/行程比(D / L),平均活塞速度,摩擦系数,发动机速度(n),行程(L),还研究了进气温度和空气入口压力。另外,根据排气输出,摩擦,不完全燃烧,传热传热的能量损失被定义为燃料喷射提供的能量的比率。相对于工作流体的温度变化的可变特定热值用于获得现实的结果。该研究的结果是合理且独特的,并且可以通过研究人员和工程师在内燃机上进行研​​究。

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