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Vehicle Warm-Up Analysis with Experimental and Co-Simulation Methods

机译:利用实验和协同模拟方法进行车辆预热分析

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A high accuracy of full-vehicle thermal models are required to predict the vehicle heat-up behaviour at every conceivable combination of driving cycle and ambient air temperature down to -20 °C. Within this work a methodology for modelling the thermal behaviour of an IC-engine is presented. The focus lies on the heat-path beginning with the combustion process followed by heat conduction through the combustion chamber walls and convective heat transfer between engine structure and coolant. The thermal engine model is coupled with other models (HVAC-system, powertrain, etc.) by an independent co-simulation platform in order to describe the virtual vehicle as a whole. Finally, the model validation is performed with two different driving cycles at two different start temperatures. Using the described full-vehicle model the potential of a heat storage system is discussed for several heat-up strategies.
机译:需要高精度的整车热模型来预测在可能的任何驾驶循环和低至-20°C的环境空气温度下的车辆升温行为。在这项工作中,提出了一种用于建模IC引擎热行为的方法。重点在于从燃烧过程开始的热路径,然后是通过燃烧室壁的热传导以及发动机结构和冷却液之间的对流传热。热力发动机模型通过独立的联合仿真平台与其他模型(HVAC系统,动力总成等)耦合,以便整体描述虚拟车辆。最后,在两个不同的起始温度下以两个不同的驾驶循环执行模型验证。使用所描述的整车模型,讨论了几种加热策略的储热系统潜力。

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