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System Performance of an Indirect Collector Storage Preheater in Series with a Conventional Electric Resistance Water Heater

机译:与传统电阻热水器串联的间接收集器存储预热器的系统性能

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Solar integral collector storage (ICS) devices are a potentially low cost means of displacing a portion of the energy required for domestic water heating. However, since ICS systems are rarely used as a stand-alone system and are more typically utilized as a preheater for conventional water heaters, it is imperative to analyze the overall water heating system in order to determine the advantage of any improvements in the thermal performance of the ICS component. In particular, this paper analyzes the performance of a solar ICS heater, in divided and undivided storage configurations, in series with a conventional electric resistance water heater (ERWH) for a range of ICS storage volumes, heat exchanger NTU, initial ICS temperature, and ERWH storage volumes. The undivided storage configuration corresponds to the typical UPICS system whereas the divided storage configuration corresponds to a recently proposed concept for improving the thermal performance of the ICS device. The results show that the ICS preheater does provide significant increases in solar fraction when adequately sized. Although comparison of the divided to undivided storage concept, with the same total ICS storage volume, shows only modest gains of 5-10% in solar fraction, the ICS storage volume necessary to attain the same solar fraction is much less for the divided storage concept. The smaller required storage volume would, in turn, enable faster charging times and potentially higher initial temperatures thereby leading to even further improvements in overall system performance.
机译:太阳能积分收集器存储器(IC)器件是潜在的低成本方法,可以置换国内水供暖所需的一部分能量。然而,由于ICS系统很少用作独立系统并且更常用为传统热加热器的预热器,因此必须分析整个水加热系统,以便确定热性能的任何改进的优势ICS组件。特别是,本文分析了太阳能ICS加热器的性能,分开和未分割的存储配置,串联与传统的电阻热水器(ERWH)系列,用于一系列ICS存储体积,热交换器NTU,初始ICS温度和ERWH存储卷。未分割的存储配置对应于典型的Upics系统,而分割的存储配置对应于最近提出的概念,用于提高ICS设备的热性能。结果表明,在充分尺寸时,ICS预热器确实提供了太阳能分数的显着增加。虽然分为未分割的存储概念的比较,但具有相同的ICS存储量,虽然在太阳能分数中仅显示5-10%的适度增益,但达到相同的太阳能分数所需的ICS存储量对于分割储存概念而言要少得多。较小的所需存储体积又可以实现更快的充电时间,并可能更高的初始温度,从而导致整体系统性能进一步提高。

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