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Techno-economic evaluation of solar-assisted heating and cooling systems with sorption module integrated solar collectors

机译:用于吸附模块集成太阳能收集器的太阳能辅助加热和冷却系统的技术经济评价

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Currently the use of solar energy for heating and cooling isn't widespread. In order to reduce primary energy consumption in the built environment along with improving the thermal performance of the current building stock, retrofit solutions are required to utilise renewable energy. Using solar energy to reduce primary energy consumption is seen as a possible solution. With the precipitous fall in the prices of crystalline solar photovoltaic modules, utilising this technology to reduce electrical energy consumption for cooling is an attractive solution. Recently, a sorption module integrated collector has been developed in order to improve cost-effectiveness and simplify solar thermal heating and cooling systems. A techno-economic analysis has been performed to evaluate solar photovoltaic cooling and solar thermal cooling systems for residential renewable energy retrofit. The analysis is based on potential energy and cost savings according to simulated heating and cooling loads under climatic conditions of Madrid, Spain. Simplified models were used to determine heating and cooling demands and the solar energy contribution to heating and cooling loads. Additionally, given the sorption collector's unique capacity to store solar energy thermally and provide cooling at night an analysis has been carried out to identify the combined benefit of solar-assisted heating and cooling via photovoltaics during the day and solar sorption at night. For system sizes between 5m~2 and 20m~2 solar fractions between 16% and 64% could be achieved which translated to annual energy cost savings between ?153 to ?615.
机译:目前使用太阳能进行加热和冷却并不普遍。为了降低建筑环境中的主要能耗以及提高当前建筑物的热性能,需要改造解决方案来利用可再生能源。利用太阳能降低初级能源消耗被视为可能的解决方案。随着晶体太阳能光伏模块的价格下降,利用该技术降低电气消耗的冷却是一种吸引力的解决方案。最近,已经开发了一种吸附模块集成集成器,以提高成本效益,简化太阳能热加热和冷却系统。已经进行了技术经济分析,以评估用于住宅可再生能源改装的太阳能光伏冷却和太阳能热冷却系统。根据西班牙马德里的气候条件下,根据模拟的加热和冷却负荷,分析基于潜在的能量和成本节约。简化模型用于确定加热和冷却需求以及对加热和冷却负荷的太阳能贡献。另外,考虑到吸附收集器的独特能力在夜间存储太阳能的独特能力,并在夜间提供冷却,已经进行了分析,以确定白天通过光伏加热和冷却的综合效益在白天和夜间的太阳能吸附。对于5m〜2和20m〜2的系统尺寸,可以实现16%和64%之间的太阳能分数,这转化为153至615之间的年度能源成本节省。

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