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Heat capacity and heat transfer coefficient estimation for a dynamic thermal model of rail vehicles

机译:轨道车辆动态热模型的热容和热传递系数估算

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This paper provides a method for estimating the parameters of a dynamic thermal rail vehicle model and reference values of these parameters. A linear dynamic discrete time system is used to model the thermal behaviour of the vehicle relevant for thermal comfort and air conditioning. The heat capacities and the heat transfer coefficients are stated for various vehicle classes. While dynamic thermal models are state of the art in buildings, cars and rail vehicles, no reference values can be found for these parameters. This paper shows how to estimate the heat capacity and the heat transfer coefficient from measured data for a given thermal model structure. Two different measurement data sources are used: special experiments and existing measurements. While specially designed experiments are only possible for new measurements, it is shown that satisfying results can be obtained with existing measurements. Measurement data from 13 vehicles are used to provide reference values for all passenger vehicles classes: tram, metro, regional and main-line. If all assumptions are satisfied, simulation results of the indoor air temperature agree well with measurements. Reference values for parameters of a dynamic thermal model are the basis for a wide application of such models in the rail vehicle industry.
机译:本文提供了一种估算动态热轨道车辆模型的参数以及这些参数的参考值的方法。线性动态离散时间系统用于对与热舒适度和空调相关的车辆热行为进行建模。列出了各种车型的热容量和传热系数。尽管动态热模型是建筑物,汽车和铁路车辆中的最新技术,但找不到这些参数的参考值。本文展示了如何根据给定热模型结构的实测数据估算热容量和传热系数。使用了两种不同的测量数据源:特殊实验和现有测量。尽管专门设计的实验仅适用于新的测量,但事实表明,使用现有的测量可以获得令人满意的结果。来自13辆车辆的测量数据用于为所有乘用车类别(电车,地铁,区域和干线)提供参考值。如果满足所有假设,则室内空气温度的模拟结果与测量结果非常吻合。动态热模型参数的参考值是此类模型在轨道车辆行业中广泛应用的基础。

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