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Analysis and Research on Energy-Saving Reconstruction of Building Heating System

机译:建筑加热系统节能重建分析与研究

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A building heating system had high energy consumption and did not meet the requirements of environmental protection, so it was needed to be reformed. After recalculating the heat load, it was found that the heat source, pipe network specification, and radiator area of the original heating system were oversized. After comparing with a gas-fired boiler, the heat source was transformed into the water source heat pump system. The water supply temperature of the water source heat pump was lower than that of the boiler. Generally, it seemed necessary to increase the radiator area. However, after calculation and verification, when the supply and return water temperature was 65/58°C, the system operated continuously and the original pipe network and radiator could still ensure the indoor temperature of 16°C. The total cost of transformation was 11.5 million Chinese Yuan. After analyzing the operation data of the new system, the water source heat pump system could save 82.6% energy compared with the original system and 29.6% cost compared with the central heating system. The transformation is successful, and the experience is worth popularizing.
机译:建筑加热系统具有高能耗,不符合环保要求,因此需要改革。重新计算热负荷后,发现原始加热系统的热源,管网规格和散热器面积超大。与燃气锅炉进行比较后,将热源转化到水源热泵系统中。水源热泵的供水温度低于锅炉。通常,似乎有必要增加散热器区域。但是,在计算和验证后,当供应和返回水温为65/58°C时,系统连续操作,原始管道网络和散热器仍然可以确保室内温度为16°C。转型总成本为1150万元人民币。在分析新系统的运行数据后,与中央供热系统相比,水源热泵系统可节省82.6%的能量和29.6%的成本。转型是成功的,体验值得推感。

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