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Method for optimal design of pipes for low-energy district heating, with focus on heat losses

机译:针对低能耗区域供热的管道的优化设计方法

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摘要

The synergy between highly energy-efficient buildings and low-energy district heating (DH) systems is a promising concept for the optimal integration of energy-saving policies and energy supply systems based on renewable energy (RE). Network transmission and distribution heat loss is one of the key factors in the optimal design of low-energy DH systems. Various pipe configurations are considered in this paper: flexible pre-insulated twin pipes with symmetrical or asymmetrical insulation, double pipes, and triple pipes. These technologies represent potential energy-efficient and cost-effective solutions for DH networks in low-heat density areas. We start with a review of theories and methods for steady-state heat loss calculation. Next, the article shows how detailed calculations with 2D-modeling of pipes can be carried out by means of computer software based on the finite element method (FEM). The model was validated by comparison with experimental measurements, analytical formulas, and data from the literature. We took into account the influence of the temperature-dependent conductivity coefficient of polyurethane insulation foam, which enabled us to achieve a high degree of accuracy. We also showed the influence of the soil temperature throughout the year. Finally, the article describes proposals for the optimal design of pipes for low-energy applications and presents methods for decreasing heat losses.
机译:高效节能建筑与低能耗区域供热(DH)系统之间的协同作用对于将节能政策与基于可再生能源(RE)的能源供应系统进行最佳整合是一个很有前途的概念。网络传输和分配的热损失是低能耗DH系统优化设计的关键因素之一。本文考虑了各种管道配置:具有对称或不对称隔热层的柔性预绝缘双管,双管和三联管。这些技术代表了低热密度地区DH网络的潜在节能和具有成本效益的解决方案。我们首先回顾用于稳态热损失计算的理论和方法。接下来,本文说明如何通过基于有限元方法(FEM)的计算机软件来进行二维管道建模的详细计算。通过与实验测量值,分析公式和来自文献的数据进行比较,对模型进行了验证。我们考虑了聚氨酯绝缘泡沫的温度相关电导率系数的影响,这使我们能够达到很高的精度。我们还显示了全年土壤温度的影响。最后,本文介绍了针对低能耗应用的管道的最佳设计方案,并提出了减少热量损失的方法。

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