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An Automated Approach to Building and Simulating Dynamic District Heating Networks

机译:建设和模拟动态区供暖网络的自动化方法

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In Nordic countries, district heating accounts for a large share of the consumers' heat demand. In Sweden, roughly 50% of the total heat demand is attributed to district heating. Which, over the past few years, is equivalent to around 50 TWh, and imposes a difficult balance between supply and demand for the suppliers of district heating. For large networks the propagation of heat from supplier to end-user can vary several hours. Further complexities of large networks, which can consist of multiple overlapping rings, is that during transient conditions the flow can actually change direction. A dynamic modeling library has been developed in Modelica using OpenModelica for district heating networks. Methods for modeling, handling data, simulating and the visualization of results has been developed using Matlab. The model has been validated using data from Malarenergi AB, a local provider of district heating in Vasteras, Sweden. The model provides to an acceptable degree in predicting the heat propagation and temperature distribution in a localized case study. Adding a higher level of robustness, the model has the capacity to handle bi-directional and reversing flows in complex ring structures. Through this work, the combination of OpenModelica and Matlab, a framework for automating the building and simulation of district heating networks is obtainable. The implications of automating network modeling from computer-aided design drawings allows for a quick robust overview of how the network is working and how prospective additions to the network could impact the end-users. Furthermore, incorporating visual aspects for heat propagation in a network contributes to a higher understanding of complex network structures.
机译:在北欧国家,区供暖占消费者热需求的大量份额。在瑞典,大约50%的总热需求归因于地区供暖。在过去的几年中,哪些相当于50 TWH,并对地区供暖供应商之间的供需难以平衡。对于大型网络,从供应商到最终用户的热量传播可能会有所不同。大型网络的其他复杂性可以由多个重叠环组成,是在瞬态条件下,流动实际上可以改变方向。使用OpenModelica用于区供暖网络的Modelica开发了一种动态建模库。使用MATLAB开发了用于建模,处理数据,模拟和结果可视化的方法。该模型已经使用来自瑞典弗斯塔斯的地方供暖器的本地供暖提供商的Malarenergi AB的数据进行了验证。该模型提供了可接受的程度,以预测局部案例研究中的热传播和温度分布。添加更高级别的鲁棒性,该模型具有在复杂的环结构中处理双向和反转流的能力。通过这项工作,可以获得OpenModelica和MATLAB的组合,这是一个自动化建筑和仿真区域供暖网络的框架。从计算机辅助设计图纸自动化网络建模的意义允许的网络如何工作,以及如何预期增加的网络可能会影响最终用户的快速稳健的概述。此外,在网络中包含用于热传播的视觉方面有助于对复杂网络结构的更高理解。

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