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Numerical analysis of the operation regulation in a solar heating system with seasonal water pool thermal storage

机译:季节性水池蓄热的太阳能采暖系统运行规律的数值分析

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A solar heating system with seasonal water pool thermal storage (SHS-SWPTS) was represented to investigate the year-round operating performance in the cold areas of China. According to the performance of solar collector, heat storage pool, water source heat pump (WSHP) and the water temperature operation of floor radiant heating system, a year-round operation control strategy of the above system was proposed. A simulation model with self-programmed control module was established in the TRNSYS simulation platform. And the accuracy of the simulation model was verified. The simulated model consists of designed collector area of 8000 m(2) and the volume of the seasonal storage pool of 13300 m(3). By simulating and analyzing the year-round running performance, several parameters were achieved, such as building dynamic heat load and outlet water temperature of the collector. Then, the rationality of system operation control strategy was analyzed. The results show that the heating load of the solar heating system can match the dynamic heat load of the building. During the initial heating stage, solar energy can guarantee 100% indirect heating and direct heating heat loads by running hot water storage pools. In addition, from mid-January to the end of the heating period (the beginning of April), the average COP of the WSHP is 4.3. And the monthly average solar energy guarantee rate of the system is between 70% and 75%. Thus, it is proved that this operation control strategy can improve the solar energy guarantee rate and system energy efficiency of seasonal solar energy heating system. (C) 2019 Elsevier Ltd. All rights reserved.
机译:一个具有季节性水池蓄热功能的太阳能供热系统(SHS-SWPTS)被用来调查中国寒冷地区全年的运营表现。根据太阳能集热器,蓄热池,水源热泵(WSHP)的性能以及地板辐射供暖系统的水温运行情况,提出了该系统全年运行的控制策略。在TRNSYS仿真平台上建立了带有自编程控制模块的仿真模型。并验证了仿真模型的准确性。模拟模型由设计的8000 m(2)的收集器面积和13300 m(3)的季节性存储池的容量组成。通过对全年运行性能的仿真分析,得出建筑物的动态热负荷和集热器的出水温度等多个参数。然后,分析了系统运行控制策略的合理性。结果表明,太阳能采暖系统的热负荷可以与建筑物的动态热负荷相匹配。在初始加热阶段,太阳能可以通过运行热水储水池来保证100%的间接加热和直接加热的热负荷。此外,从1月中旬到供暖期结束(4月初),WSHP的平均COP为4.3。该系统的每月平均太阳能保障率在70%至75%之间。因此,证明了该运行控制策略可以提高季节性太阳能供热系统的太阳能保障率和系统能效。 (C)2019 Elsevier Ltd.保留所有权利。

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