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Technical and cost analyses of two different heat storage systems for residential micro-CHP plants

机译:住宅微型热电联产厂两种不同蓄热系统的技术和成本分析

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摘要

The heat storage system represents a key component for micro-cogeneration plants since it permits to store the unused thermal energy during electricity production for a later use. Nevertheless, it also represents a consistent additional cost that has to be taken into account in order to evaluate the profitability of the micro-CHP system with respect to the separate generation. In this paper the results of a technical and of a cost analysis of two different types of thermal energy storage systems for residential micro-CHP plants are presented. Indeed, in the present work hot water thermal energy storage systems and latent heat thermal energy storage systems have been dimensioned for different micro-CHP systems producing electrical and thermal energy for two different buildings situated in Italy. For each analysed micro-CHP system an adequate thermal energy storage capacity is estimated on the basis of the operational logic and of the electric and thermal loads, and the sizing of the cylindrical tank and of the coil heat exchanger relative to both types of thermal energy storage systems is performed. Comparisons in terms of components cost between hot water thermal energy storage systems and latent heat thermal energy storage systems are performed as well.
机译:蓄热系统代表了微型热电联产厂的关键组件,因为它可以在发电过程中存储未使用的热能,以备以后使用。然而,它也代表了必须考虑到的一贯的额外费用,以便评估微型热电联产系统相对于单独发电的利润。本文介绍了住宅微型热电联产工厂两种不同类型的热能存储系统的技术和成本分析结果。实际上,在当前的工作中,热水热能存储系统和潜热热能存储系统已针对不同的微型热电联产系统进行了尺寸设计,这些微型热电联产系统为位于意大利的两个不同建筑物产生电能和热能。对于每个分析的微型热电联产系统,根据运行逻辑以及电气和热负荷,以及相对于两种热能的圆柱罐和盘管热交换器的尺寸,估算出足够的热能存储容量执行存储系统。还进行了热水储热系统和潜热储热系统在组件成本方面的比较。

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