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Strategy for low-temperature operation of radiator systems using data from existing digital heat cost allocators

机译:使用现有数字热成本分配器数据的散热器系统的低温操作策略

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The low-temperature operation of existing radiator systems connected to district heating is hindered by various factors, including non-ideal local control by users. The use of only a few of the available radiators to provide the necessary thermal comfort in an apartment is a common example. This requires a higher supply temperature and results in a high return temperature. This study investigated the potential of minimising the supply temperature of the radiator system to stimulate the use of all the available radiators in each apartment. Data from existing electronic heat cost allocators were used to detect the number of radiators not being used at any given time. A thermal/hydraulic model of the radiator system of a building was created to calculate the minimum supply temperature required according to the maximum pump operation. Energy-weighted average supply and return temperatures of 44 degrees C and 30 degrees C, respectively, could be achieved when all the radiators were used. The investigation showed that under the minimum supply temperature and a sufficient hydraulic balance, the required heat could only be delivered if all the available radiators were used. A good hydraulic balance could be secured by appropriately setting the balancing valves in each riser. (C) 2021 Elsevier Ltd. All rights reserved.
机译:通过各种因素阻碍了与地区加热的现有散热器系统的低温操作,包括用户非理想的本地控制。仅使用少数可用的散热器在公寓内提供必要的热舒适度是一个常见的例子。这需要更高的供应温度并导致高回流温度。本研究调查了最小化散热器系统供应温度的可能性,以刺激每个公寓中所有可用散热器的使用。来自现有电子热成本分配器的数据用于检测未在任何给定时间使用的散热器的数量。建筑物的散热器系统的热/液压模型是为了计算根据最大泵运行所需的最小供应温度。当使用所有辐射器时,分别可以实现44摄氏度的能量加权平均供应和返回温度。该研究表明,在最小供应温度和足够的液压平衡下,只能在使用所有可用辐射器时才能提供所需的热量。通过在每个提升板中适当地设置平衡阀,可以确保良好的液压平衡。 (c)2021 elestvier有限公司保留所有权利。

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