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Method to investigate and plan the application of low temperature district heating to existing hydraulic radiator systems in existing buildings

机译:调查和规划低温区域供热在现有建筑物中现有液压散热器系统中的应用

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摘要

This study presents a method to adapt existing hydronic systems in buildings to take advantage of low temperature district heating (LTDH). Plate radiators connected to double string heating circuits were considered in an optimization procedure, based on supply and return temperatures, to obtain the required logarithmic mean temperature difference (LMTD) for a low temperature heating system. The results of the analysis are presented as the average reduction of LMTD over the heating season compared to the base case design conditions. Two scenarios were investigated based on the assumption of a likely cost reduction in the end users' energy bills of 1% for each 1 °C reduction of return and average supply and return temperatures. The results showed possible discounts of 14% and 16% respectively, due to more efficient operation of the radiators. These were achieved without any intervention in the thermal envelope or to the heating systems, through simply adjusting the temperatures according to demand and properly controlling the plate radiators with thermostatic radiator valves (TRVs).
机译:这项研究提出了一种适应建筑物中现有水力系统的方法,以利用低温区域供热(LTDH)。在优化程序中,根据供气和回气温度,考虑了与双管束加热回路相连的板式散热器,以获得低温加热系统所需的对数平均温差(LMTD)。分析结果表示为与基本案例设计条件相比,采暖季节LMTD的平均减少量。基于以下假设,对两种情况进行了调查:假设每降低1°C的回报率和平均供应与返回温度,最终用户的能源账单中的成本可能降低1%。结果表明,由于散热器的更有效运行,折价分别为14%和16%。通过简单地根据需要调节温度并使用恒温散热器阀(TRV)适当地控制平板散热器,就可以在不影响热包络或加热系统的情况下实现这些目标。

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