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Analysis of the Exhaust Gas Recirculation System Performance in Modern Diesel Engines

机译:现代柴油机废气再循环系统性能分析

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Exhaust gas recirculation (EGR) is extensively employed in diesel combustion engines to achieve nitrogen oxides emission targets. The EGR is often cooled in order to increase the effectiveness of the strategy, even though this leads to a further undesired impact on particulate matter and hydrocarbons. Experimental tests were carried out on a diesel engine at a dynamometer rig under steady-state speed and load working conditions that were considered relevant for the New European Driving Cycle. Two different shell and tube-type EGR coolers were compared, in terms of the pressure and temperature of the exhaust and intake lines, to evaluate thermal effectiveness and induced pumping losses. All the relevant engine parameters were acquired along EGR trade-off curves, in order to perform a detailed comparison of the two coolers. The effect of intake throttling operation on increasing the EGR ratio was also investigated. A purposely designed aging procedure was run in order to characterize the deterioration of the thermal effectiveness and verify whether clogging of the EGR cooler occurred. The EGR mass flow-rate dependence on the pressure and temperature upstream of the turbine as well as the pressure downstream of the EGR control valve was modeled by means of the expression for convergent nozzles. The restricted flow-area at the valve-seat passage and the discharge coefficient were accurately determined as functions of the valve lift.
机译:排气再循环(EGR)广泛用于柴油发动机中,以实现氮氧化物的排放目标。 EGR通常被冷却以提高该策略的有效性,即使这会对颗粒物和碳氢化合物产生进一步的不良影响。在测功机平台上的柴油机上,在被认为与新欧洲行驶周期有关的稳态速度和负载工作条件下进行了实验测试。根据排气管和进气管的压力和温度,比较了两种不同的壳管式EGR冷却器,以评估热效率和引起的泵送损失。沿EGR权衡曲线获取所有相关的发动机参数,以便对两个冷却器进行详细比较。还研究了进气节流操作对提高EGR率的影响。运行了专门设计的老化程序,以表征热效率的下降并验证EGR冷却器是否发生堵塞。借助于收敛喷嘴的表达式对取决于涡轮上游压力和温度以及EGR控制阀下游压力的EGR质量流量进行了建模。根据气门升程,准确确定气门座通道的受限流量区域和排放系数。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2013年第8期|081601.1-081601.13|共13页
  • 作者单位

    Energy Department,IC Engines Advanced Laboratory, Politecnico di Torino,C.so Duca degli Abruzzi, 24,Torino 10129, Italy;

    Energy Department,IC Engines Advanced Laboratory, Politecnico di Torino,C.so Duca degli Abruzzi, 24,Torino 10129, Italy;

    Energy Department,IC Engines Advanced Laboratory, Politecnico di Torino,C.so Duca degli Abruzzi, 24,Torino 10129, Italy;

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