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A New Model for Matching Advanced Boosting Systems to Automotive Diesel Engines

机译:一种与汽车柴油发动机的高级提升系统匹配的新模型

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Boosting technologies have been key enablers for automotive engines development through downsizing and downspeeding. In this situation, numerous multistage boosting systems have appeared in the last decade. The complexity arising from multistage architectures requires an efficient matching methodology to obtain the best overall powertrain performance. The paper presents a model aimed to choose the best 2-stage boosting system architecture able to meet required criteria on boosting pressure, EGR ratios for both short and long route loops while respecting the engine thermo-mechanical limits such as in-cylinder pressure, compressor outlet temperature and exhaust manifold temperature. The model includes filling-and-emptying 0D elements together with mean value. The engine model is set in a way that, for given requirements and boosting system layout, calculates in seconds if the requirements will be achieved and the position of variable geometry, waste-gate, EGR and by-pass valves. The model is thus inversed thanks to a new representation of turbine maps that converts the classical iterative matching procedure in straight forward. The model can be also used in a predictive manner to calculate the engine transient response. The model has been calibrated to 3 different turbocharged diesel engines. The model gives good results provided that wave effects are not important. This is the case of compact exhaust manifolds, typically used in turbocharged diesel engines, below 3500 rpm. Tuned intake air lines can be taken into account through a tuning parameter affecting boosting pressure. An example is given in the paper for the matching procedure in a 2-stage, double route EGR, including steady and transient results.
机译:通过缩小和跌倒,促进技术已成为汽车发动机开发的关键推动力。在这种情况下,众多多级增压系统在过去十年中出现。多级架构产生的复杂性需要有效的匹配方法来获得最佳的整体动力系性能。本文提出了一种模型,旨在选择能够满足升压压力的最佳标准的最佳2级提升系统架构,因为围绕缸内压力,压缩机等发动机热机械限制出口温度和排气歧管温度。该模型包括填充和排空的0d元素以及平均值。引擎型号设置为可用于给定的要求和提升系统布局,如果将实现要求和可变几何形状,废气门,EGR和旁路阀的位置,则计算出几秒钟。因此,由于涡轮机映射的新表示,该模型是逆时针转换了经典迭代匹配过程的新表示。该模型也可以以预测的方式使用以计算发动机瞬态响应。该模型已被校准为3个不同的涡轮增压柴油发动机。该模型提供了良好的结果,条件是波效果并不重要。这是紧凑型排气歧管的情况,通常用于涡轮增压柴油发动机,低于3500rpm。通过影响升压压力的调谐参数,可以考虑调谐进气管。本文给出了一个例子,用于在2级双线式EGR中的匹配过程,包括稳定和瞬态的结果。

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