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Review of Thermodynamic Diesel Engine Simulations Under Transient Operating Conditions

机译:瞬态运行条件下热力学柴油发动机模拟回顾

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Study and modelling of transient operation is an important scientific objective. This is due to the fact that the majority of daily vehicle driving conditions involve transient operation, with non-linear situations experienced during engine transients. Thus, proper interconnection is needed between engine, governor, fuel pump, turbocharger and load. This paper surveys the publications available in the open literature concerning diesel engine simulations under transient operating conditions. Only those models that include both full engine thermodynamic calculations and dynamic powertrain modelling are taken into account, excluding those that focus on control design and optimization. Most of the attention is concentrated to the simulations that follow the filling and emptying modelling approach. A historical overview is given covering, in more detail, research groups with continuous and consistent study of transient operation. One of the main purposes of this paper is to summarize basic equations and modelling aspects concerning in-cylinder calculations, friction, turbocharger, engine dynamics, governor, fuel pump operation, and exhaust emissions during transients. The various limitations of the models are discussed together with the main aspects of transient operation (e.g., turbocharger lag, combustion and friction deterioration), which diversify it from the steady-state. Some of the most important findings in the field during the last 30 years are presented and discussed. The survey extends to special cases of transient diesel engine simulation, such as second-law analysis, response when the turbocharger compressor experiences surge, and whole vehicle performance. Several methods of improving transient response are also mentioned, based on the various simulations. An easy-to-read tabulation of all research groups dealing with the subject, that includes details about each model developed and engines/parameters studied, is also provided at the end of the paper.
机译:瞬态操作的研究和建模是一个重要的科学目标。这是由于大多数日常车辆驾驶条件涉及瞬态操作,在发动机瞬变期间经历的非线性情况。因此,发动机,调速器,燃料泵,涡轮增压器和负载之间需要适当的互连。本文在瞬态运行条件下调查了开放文献中的公开文献中的出版物。仅考虑那些包括全发动机热力学计算和动态动力传动建模的模型,不包括那些专注于控制设计和优化的模型。大多数关注都集中在遵循填充和清空建模方法的模拟中。历史概述更详细地涵盖了具有持续和一致的瞬态操作的研究组。本文主要目的之一是总结基本方程和建模方面有关圆柱形计算,摩擦,涡轮增压器,发动机动力学,调速器,燃料泵运行和瞬态排气排放的建模方面。模型的各种局限性与瞬态操作(例如,涡轮增压器滞后,燃烧和摩擦劣化)一起讨论的主要方面,这将其从稳态分开。在过去30年中,该领域中的一些最重要的发现是举报和讨论的。该调查扩展到瞬态柴油发动机仿真的特殊情况,如二级分析,当涡轮增压器压缩机经历浪涌和整个车辆性能时响应。还基于各种仿真提到了几种改善瞬态响应的方法。还提供了一个易于阅读的列表,其中包括所开发的每个模型的细节和所研究的引擎/参数,也在纸张的末尾提供。

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