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Simulation of a Pneumatic Hybrid Powertrain with VVT in GT-Power and Comparison with Experimental Data

机译:GT功率VVT气动混合动力系统仿真与实验数据比较

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摘要

In the study presented in this paper, experimental data from a pneumatic hybrid has been compared to the results from a simulation of the engine in GT-Power. The engine in question is a single-cylinder Scania D12 diesel engine, which has been converted to work as a pneumatic hybrid. The base engine model, provided by Scania, is made in GT-Power and it is based on the same engine configuration as the one used during real engine testing. During pneumatic hybrid operation the engine can be used as a 2-stroke compressor for generation of compressed air during vehicle deceleration and during vehicle acceleration the engine can be operated as a 2-stroke air-motor driven by the previously stored pressurized air. There is also a possibility to use the stored pressurized air in order to supercharge the engine when there is a need for high torque, like for instance at take off after a standstill or during an overtake maneuver. Previous experimental studies have shown that the pneumatic hybrid is a promising concept and a possible competitor to the electric hybrid. This paper consists mainly of two parts. The first one describes an attempt to recreate the real engine as a computer model with the aid of the engine simulation software GT-power. A model has been created and the results have been validated against real engine data. The second part describes a parametric study where different parameters and their effect on pneumatic hybrid performance have been investigated.
机译:在本文提出的研究中,将气动混合动力车的实验数据与GT-Power中的发动机仿真结果进行了比较。有问题的发动机是单缸斯堪尼亚D12柴油发动机,已转换为气动混合动力。斯堪尼亚提供的基本发动机模型是用GT-Power制造的,它基于与实际发动机测试期间使用的发动机相同的发动机配置。在气动混合动力操作期间,发动机可以用作二冲程压缩机,以在车辆减速期间产生压缩空气,而在车辆加速期间,发动机可以用作由先前存储的压缩空气驱动的二冲程空气发动机。当需要高扭矩时,例如在停止后的起飞或超车操作期间,也有可能使用存储的压缩空气为发动机增压。先前的实验研究表明,气动混合动力车是一个有前途的概念,并且可能是电动混合动力车的竞争对手。本文主要包括两个部分。第一个描述了通过引擎仿真软件GT-power将真实引擎重新创建为计算机模型的尝试。已经创建了一个模型,并已针对实际发动机数据验证了结果。第二部分描述了参数研究,其中研究了不同的参数及其对气动混合动力性能的影响。

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