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A thermal-electrical analogy transient model of district heating pipelines for integrated analysis of thermal and power systems

机译:热电系统供暖管道的热电器类比瞬态模型,用于热电动力系统综合分析

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District heating networks have an ability to store heat to improve the flexibility of power systems, but it lacks a compatible method to analyze thermal and power system together. Based on the thermal-electric analogy method and inspired by the electromagnetic transient analysis approaches, this paper develops a thermal-electrical analogy transient model for district heating pipelines (DHPs), which offers the matrix formulas to describe the variations of fluid temperature and stored heat with time in the pipelines, instead of the traditional partial differential equations. For a heating pipe with the length 20 km, applying the thermal-electrical analogy transient model gives the variations of the outlet temperatures and the stored heat of the pipe under step, periodic and sinusoidal inlet temperatures, where the outlet temperatures keep unchanged before 300 min due to time delay. From 300 to 380 min, the outlet temperature rises to approach the inlet temperatures, i.e. the thermal non-regular regime, but 1 degrees C lower due to heat loss. After 380 min, they vary in the same trend as the inlet temperatures, i.e. the thermal regular regime, but have 380 min delay. Besides, the heat stored in the pipe and its variation frequency depend on the amplitude and phase differences of inlet and outlet temperatures.
机译:地区采暖网络有能力储存热量以提高电力系统的灵活性,但缺乏将热电部和电力系统分析在一起的兼容方法。基于热电类别方法和电磁瞬态分析方法的启发,该论文开发了用于区供热管道(DHPS)的热电模糊瞬态模型,其提供了矩阵公式来描述流体温度和储存的热量的变化随着时间的推移,而不是传统的局部微分方程。对于长度20 km的加热管,施加热电模拟瞬态模型可以在步骤,周期性和正弦入口温度下提供出口温度和管道的储存热量的变化,其中出口温度在300分钟之前保持不变由于时间延迟。从300到380分钟,出口温度上升以接近入口温度,即热量常规制度,但由于热量损失,1摄氏度降低。 380分钟后,它们与入口温度相同的趋势,即热常规制度,但具有380分钟的延迟。此外,存储在管道中的热量及其变化频率取决于入口和出口温度的幅度和相位差。

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