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Rapid energy flow calculation method for integrated electrical and thermal systems

机译:集成电气和热系统的快速能量流量计算方法

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摘要

The specific solution methodologies adopted for solving multi-energy flow problems involving integrated energy systems (IESs), such as integrated electrical and thermal energy systems, suffer from a number of deficiencies, such as the choice of iterative initial values when using Newton-Raphson method, poor numerical stability and computational efficiency issues. While the computational complexity of the district heating system model increases dramatically as the scale of the system increases. As such, the development of a new solution algorithm suitable for application to the complex models of large IESs is urgently required. Therefore, this paper proposes a rapid multi-energy flow calculation method for integrated electrical and thermal energy systems. Firstly, an equivalent function of the pipeline pressure drop equation is derived to avoid the iterative and simultaneous solution of crucial pipeline parameters. Secondly, a linear equation is introduced to decouple and transform a typical ring district heating system into a collection of radial district heating systems, which can be rapidly solved with high-precision. Numerical applications of the proposed approach to the Barry Island system verify that the approach provides accurate and highly efficient multi-energy flow calculations.
机译:用于解决涉及集成能量系统(IESS)的多能量流量问题的具体解决方法,例如集成电气和热能系统,遭受许多缺陷,例如使用牛顿-Raphson方法时的迭代初始值的选择,数值稳定性和计算效率问题不佳。虽然由于系统的规模增加,地区供热系统模型的计算复杂性急剧增加。因此,迫切需要开发适合应用于大型IESS复杂模型的新解决方案算法。因此,本文提出了一种用于集成电气和热能系统的快速多能量流量计算方法。首先,导出流水线压降方程的等效功能,以避免关键管道参数的迭代和同时解。其次,引入线性方程以将典型的环形电热系统与径向区供热系统的集合隔离并将其转换为径向区供热系统,这可以以高精度迅速解决。建议方法的数值应用验证了该方法提供了准确且高效的多能量流量计算。

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