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A Novel Method for Designing Fifth-Generation District Heating and Cooling Systems

机译:一种设计第五代区供暖和冷却系统的新方法

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摘要

District heating and cooling systems have been undergoing continuous development and have now reached the fifth-generation. In this innovative technology, connected buildings share local excess energy that otherwise would be wasted, which consequently reduces primary energy demands and carbon emissions. To date, the issue of implementing fifth-generation district systems on existing buildings has received scant attention, and our research addresses this challenging gap by proposing a novel method for designing these systems. We first explain the possible thermal interactions between connected buildings, and then present an analytical solution for the network energy balance, pipe design, and the prediction of fluid temperature under a fixed temperature difference control strategy. The analytical solution was validated against numerical simulations performed on 11 existing buildings located in Lund, Sweden using Modelica models. A diversity index metric between heating and cooling demands was also included in these models to assess the efficiency of the district system in the building cluster. The results from the analytical and numerical solutions were in complete agreement since Modelica is an equation-based modelling language. The developed models pave the way towards future investigations of different temperature control strategies and new business models that arise from the shift to the fifth-generation.
机译:地区供暖和冷却系统一直在持续发展,现在已经达到了第五代。在这项创新技术中,连接的建筑物共享局部多余能量,否则将浪费,从而降低了主要能量需求和碳排放。迄今为止,在现有建筑物上实施第五代地区系统的问题受到了很少的关注,我们的研究通过提出设计这些系统的新方法来解决这一具有挑战性的差距。我们首先解释连接建筑物之间的可能热相互作用,然后在固定温差控制策略下呈现网络能量平衡,管道设计和流体温度的预测的分析解决方案。通过使用Modelica Models的瑞典的11个现有建筑物执行的数值模拟验证了分析解决方案。这些模型中还包括加热和冷却需求之间的分集指数度量,以评估建筑物集群中区域系统的效率。由于Modelica是基于等式的建模语言,分析和数值解决方案的结果是完全的协议。开发的模型为未来的不同温度控制策略和新的商业模式的调查铺平了从转向到第五代的新商业模式。

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