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A comparative study of two simulation tools for the technical feasibility in terms of modeling district heating systems: An optimization case study

机译:建模区供热系统技术可行性两种仿真工具的比较研究:优化案例研究

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摘要

District heating dynamic models arise as an alternative approach to in-situ experimental investigations. The main advantage of dynamic modeling and simulation is the possibility to avoid technical and operational risks that might occur during in-situ experimental investigations (e.g. heat demand is not met, damages in the energy systems etc.). Within this study, the authors present two models for an existing district heating system in Cottbus, Germany. One model is developed using the tool EBSILON Professional, while the other one is developed using the Simscape toolbox for physical modeling in Matlab/Simulink. The models were experimentally validated against measured data from the considered district heating system. The results show that the Simscape model has a better fit and better response than the EBSILON model. Yet, some discrepancies were found between the measured and the simulated data and, therefore, the uncertainties of the models were addressed. A comparative study between both tools is presented. The EBSILON models permit only unidirectional flow, whereas the Simscape toolbox permits reverse flow. Nevertheless, the EBSILON model outperforms the Simscape model in computation time. In addition, this study presents an approach for dynamic thermo-hydraulic modeling of district heating networks. This approach is utilized to examine the role of district heating networks as heat storage as an optimization configuration. The numerical results show less start-ups for additional heat sources. Yet, higher heat losses from the network are observed due to the installation of unburied pipelines.
机译:地区供热动态模型作为原位实验研究的替代方法。动态建模和仿真的主要优点是避免在原位实验研究期间可能发生的技术和操作风险(例如,不符合热需求,能量系统等损坏等)。在这项研究中,作者在德国Cottbus的现有地区供热系统中为现有地区供热系统提供了两种模型。使用工具EBSILON专业人员开发了一种型号,而另一个模型是使用Simscapt Toolbox开发的Matlab / Simulink中的物理建模。通过考虑的区域供热系统进行实验验证模型。结果表明,Simscape模型具有比EBSILON模型更好的合适和更好的响应。然而,在测量的数据和模拟数据之间发现了一些差异,因此,解决了模型的不确定性。提出了两种工具之间的比较研究。 EBSILON模型仅允许单向流动,而Simscape Toolbox允许反向流。尽管如此,EBSILON模型在计算时间中优于Simscape模型。此外,本研究提出了一种地区加热网络动态热水液建模的方法。这种方法用于检查地区加热网络作为优化配置作为蓄热器的作用。数值结果显示额外的热源的初始启动。然而,由于安装未挤压管道,观察到网络的较高热损失。

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