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Design of a simple control strategy for a community-size solar heating system with a seasonal storage

机译:具有季节性存储的社区大小太阳能加热系统简单控制策略的设计

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The presented paper focuses on the design of different control strategies of a cold climate community-size solar thermal system located in Finland. The system was designed on TRNSYS software in order to perform dynamic simulation. A solar thermal system operating with various control strategies has been designed with an integrated ground source heat pump and a seasonal borehole storage to provide domestic hot water (DHW) and space heating (SH) for community-size demand. The system has two short term storage tanks, a hot tank and a warm tank. The impact of the considered system solutions on electricity consumption has been evaluated and compared as a function of the different collector control modes and different tank configurations (short term tanks sizes). Results have shown that the proposed system was able to provide a 78-83% renewable energy fraction. Total electricity consumption of the heating system varied by 20% between the best and the worst cases. Furthermore, system performance was better when solar energy was mainly stored in the warm tank. During a 5-year simulation, the annual seasonal storage efficiency improved from 0.23 to 0.31, whereas the heat pump electricity consumption reduced from 57.17 MWh to 45.93 MWh. The demand in winter was met mainly through ground heat and the rest was provided by the heat pump compressor. However, the demand in summer was met almost completely by solar energy.
机译:本文侧重于位于芬兰的寒冷气候社区大小太阳能热系统的不同控制策略设计。该系统是在Trnsys软件上设计的,以便执行动态仿真。使用各种控制策略运行的太阳能热系统,采用集成的地面源热泵和季节性钻孔储存,提供家庭热水(DHW)和空间加热(SH),用于社区大小的需求。该系统有两个短期储罐,热罐和暖罐。考虑了系统解决方案对电力消耗的影响得到了评估,并将其与不同的收集器控制模式和不同罐配置(短期罐尺寸)进行比较。结果表明,所提出的系统能够提供78-83%的可再生能源级分。供暖系统的总电力消耗在最佳和最糟糕的情况下变化了20%。此外,当太阳能主要储存在暖罐中时,系统性能更好。在5年的仿真过程中,年龄季节性储存效率从0.23提高到0.31,而热泵电量从57.17毫巴减少到45.93米。冬季需求主要通过地热来满足,其余的热泵压缩机提供。然而,通过太阳能几乎完全遇到了夏季的需求。

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