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A Model of Thermal Energy Storage According to the Convention of Bond Graphs (Bg) and State Equations (Se)

机译:基于键合图(Bg)和状态方程(Se)约定的热能存储模型

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The main advantage of the use of the Bond Graphs method and State Equations for modeling energy systems with a complex structure (marine power plants, hybrid vehicles, etc.) is the ability to model the system components of different physical nature using identical theoretical basis. The paper presents a method of modeling thermal energy storage, which is in line with basic BG theory. Critical comments have been put forward concerning multiport energy storage introduced by other authors or the so-called C-field. In suggested approach, the decision not to use pseudo Bond Graphs has been justified as not being in line with basic BG theory. On the basis of molecular physics it was considered that the state variable, in physical and mathematical sense, should be temperature rather than entropy. Examples of the application of the proposed approach to thermodynamic processes and heat exchange have been presented. The application of a single graph as a model for thermal energy storage has been illustrated by a way of numerical simulation examples.
机译:使用Bond Graphs方法和状态方程式对具有复杂结构的能源系统(船用发电厂,混合动力汽车等)进行建模的主要优点是能够使用相同的理论基础对具有不同物理性质的系统组件进行建模。本文提出了一种与基本BG理论相一致的热能存储建模方法。对于其他作者或所谓的C场引入的多端口能量存储,已经提出了批评意见。在建议的方法中,不使用伪债券图的决定被证明是不符合基本BG理论的。根据分子物理学,人们认为状态变量在物理和数学上应该是温度而不是熵。已经提出了将所提出的方法应用于热力学过程和热交换的例子。通过数值模拟示例说明了单个图形作为热能存储模型的应用。

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