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Optimization of solar water heating systems through water replenishment

机译:通过补水优化太阳能热水系统

摘要

In a typical solar water heating system, cold water is replenished into the storage tank as soon as the load is served. However, it is possible to determine the water replenishment profile (i.e., the quantity of the cold makeup water to be supplied to the storage tank over a day) that optimizes the overall system. In this paper, the effect of water replenishment on the system sizing is studied and a novel strategy for water replenishment is proposed to improve the design and performance of solar water heating systems. Based on an analytical technique, an approximate water replenishment profile is proposed to size a solar water heating system near-optimally. The problem is analyzed using a methodology called design space approach. Design space of a solar water heating system identifies all possible and feasible designs on a collector area vs. storage volume diagram. For illustration of the proposed methodology, an example problem is solved. It is observed that the annualized system cost can be reduced by 13.7%. For the cost-optimal system configuration, a reduction of 12.7% in the collector area and 10.2% reduction in the storage volume are observed. The proposed methodology is particularly important and advantageous for large commercial and industrial solar water heating systems.
机译:在典型的太阳能热水系统中,一旦提供负载,就会将冷水补充到储水箱中。然而,可以确定使整个系统最佳化的水补充曲线(即,一天要供应到储水箱的冷补充水的量)。本文研究了补水对系统规模的影响,提出了一种新的补水策略,以改善太阳能热水系统的设计和性能。基于一种分析技术,提出了一种近似的补水曲线,以使太阳能热水系统的尺寸接近最佳。使用称为设计空间方法的方法分析该问题。太阳能热水系统的设计空间可在收集器面积与存储量图上识别所有可能可行的设计。为了说明所提出的方法,解决了示例问题。据观察,年化系统成本可以降低13.7%。对于成本最佳的系统配置,观察到收集器面积减少了12.7%,存储量减少了10.2%。所提出的方法对于大型商业和工业太阳能热水系统特别重要和有利。

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