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Energy Saving Performance of Distributed Heating and Cooling System

机译:分布式供热制冷系统的节能性能

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An advanced distributed heating and cooling system utilizing small-scale high-performance heat pumps was designed to replace the central heating and cooling system for the AIST laboratory buildings, which have a total floor area of 36,100 m~2, of which 20,100 m~2 is occupied by laboratories. In the old system, the total primary energy required for hot water was 44 TJ, and it was 12 TJ for chilled water in FY 2001. The new system is composed of small-sized high-performance heat pumps, with an average coefficient of performance (COP) of 3.1. After the reconstruction, the energy consumption was reduced to 37%, and with a total energy saving of 44 TJ for one year. The total CO_2 emission is estimated to be 26%, a reduction of 3000 tons per year. The energy saving is caused by the high-performance small-scale heat pumps, the high-performance total system design that takes laboratory into account, and the suitable operation of the system.
机译:设计了一种先进的利用小型高性能热泵的分布式供热和制冷系统,以取代AIST实验室建筑的中央供热和制冷系统,该建筑的总占地面积为36,100 m〜2,其中20,100 m〜2被实验室占用。在旧系统中,热水的总一次能源为44 TJ,在2001财年为冷水为12 TJ。新系统由小型高性能热泵组成,平均性能系数(COP)的3.1。重建后,能耗降低到了37%,一年总共节省了44 TJ的能源。估计总的CO_2排放量为26%,每年减少3000吨。节能是由高性能的小型热泵,将实验室考虑在内的高性能的整体系统设计以及系统的适当运行引起的。

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