首页> 外文会议>FISITA world automotive congress >APPLICATION OF A SECONDARY COOLANT CIRCUIT TO CHARGE AIR AND EGR COOLING SYSTEM FOR SEGMENT C CARS AND HIGH PERFORMANCE ENGINES
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APPLICATION OF A SECONDARY COOLANT CIRCUIT TO CHARGE AIR AND EGR COOLING SYSTEM FOR SEGMENT C CARS AND HIGH PERFORMANCE ENGINES

机译:二次冷却回路在段C车和高性能发动机的空气和EGR冷却系统中的应用

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The paper presents the simulation and experimental results about theapplication of a secondary coolant circuit at low temperature to a high performance engine onsegment C Alfa Romeo car.The secondary coolant has been used to cool down the charge air at the compressor outlet andthe EGR applying specific components to the system; the heat is then rejected to externalambient by means of a secondary radiator placed in front of the normal production coolingmodule.Both aspects of performance improvement and emission reduction have been investigated incomparison to the normal production cooling system and other innovative systems aimed tothese purposes.A simulation of the complete system has been performed by means of a 1D code in order toget a first design of the indirect charge air cooler, the EGR cooler, the secondary radiator andthe additional electric coolant pump. CAD model of each heat exchanger have been built upin order to allow their installation on vehicle. Tests on bench and on road have beenperformed in order to check the experimental behaviour of the system.Simulation and experimental results show that with such a system it is possible to get betterperformances from the engine and lower emissions when compared to the normal productionequipment.The paper try to assess how much such a system can contribute to fulfil the future emissionlimits.Finally, taking into consideration as a basis the normal production cooling system, aneconomical analysis has been set up in order to evaluate the impacts on cost of such asolution.
机译:本文给出了关于机器人的仿真和实验结果。 低温二次冷却剂回路在高性能发动机上的应用 C段阿尔法罗密欧车。 二次冷却剂已用于冷却压缩机出口处的增压空气,并 EGR将特定组件应用于系统;然后热量被散发到外部 通过放置在正常生产冷却装置前面的辅助散热器来达到环境温度 模块。 性能改进和减排的两个方面都已在2007年进行了研究。 与常规生产冷却系统和其他旨在降低温度的创新系统进行比较 这些目的。 整个系统的仿真已通过一维代码进行,以便 获得间接增压空气冷却器,EGR冷却器,辅助散热器和 附加的电动冷却液泵。建立了每个热交换器的CAD模型 为了允许它们安装在车辆上。已经在长凳和公路上进行了测试 执行以检查系统的实验行为。 仿真和实验结果表明,利用这样的系统,可能会变得更好 与正常生产相比,发动机的性能和更低的排放 设备。 本文试图评估这种系统可以为满足未来排放做出多少贡献 限制。 最后,以正常的生产冷却系统为基础, 进行了经济分析,以评估这种方法对成本的影响。 解决方案。

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