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Modeling of an integrated solar system

机译:集成太阳能系统的建模

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The feasibility of using low-cost solar collection and storage technology to provide energy for residential units is investigated. Different construction strategies were compared including traditional housing practice against newly innovative ideas such as low radiant heating system, desiccant dehumidification, integrated low-cost solar collection, and phase-change material (PCM) storage. The selected building, located in Blacksburg, VA, integrated a solar thermal roof collection system consisting of a low-temperature flat-plate collector integrated within a concrete building envelope linked to a PCM storage tank. For the considered location and weather conditions (Blacksburg, VA), the proposed collection and storage solar system can supply 88% of the building's space heating and hot water needs averaged throughout the year saving the homeowner approximately 61.5% of the annual heating bills. However, the use of a storage system is not economical for the considered conditions. The paper also shows a month-by-month demand and supply distributions for the modeled building's heating and hot water needs.
机译:研究了使用低成本太阳能收集和存储技术为住宅单元提供能源的可行性。比较了不同的建筑策略,包括传统的住房实践与新的创新想法,例如低辐射采暖系统,干燥剂除湿,集成低成本太阳能收集和相变材料(PCM)存储。选定的建筑物位于弗吉尼亚州的布莱克斯堡,集成了一个太阳能热屋顶收集系统,该系统由一个低温平板收集器组成,该收集器集成在一个与PCM储罐相连的混凝土建筑物围护结构中。对于考虑到的位置和天气条件(弗吉尼亚州布莱克斯堡),拟议中的收集和存储太阳能系统可以满足建筑物平均88%的空间供暖需求,全年平均需要热水,可为房主节省约61.5%的年度取暖费用。但是,对于所考虑的条件,使用存储系统并不经济。该文件还显示了建模建筑物的供暖和热水需求的逐月需求和供应分布。

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