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Thermoeconomic analysis of storage systems for solar heating and cooling systems: A comparison between variable-volume and fixed-volume tanks

机译:太阳能供热和制冷系统存储系统的热经济学分析:可变容量和固定容量储罐之间的比较

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摘要

The paper investigates different control strategies for the thermal storage management in SHC (Solar Heating and Cooling) systems. The SHC system under investigation is based on a field of evacuated solar collectors coupled with a single-stage LiBr-H_2O absorption chiller; auxiliary thermal energy is supplied by a gas-fired boiler. The SHC is also equipped with a novel thermal storage system, consisting in a variable volume storage tank. It includes three separate tanks and a number of mixers and diverters managed by novel control strategies, based on combinations of series/parallel charging and discharging approaches. The aim of this component is to vary the thermal storage capacity as a function of the combinations of solar radiation availability and user thermal/cooling energy demands. The system allows one to increase the number of active tanks when the time shift between solar energy and user demand is high. Conversely, when this time shift is low, the number of active tanks is automatically reduced. In addition, when the solar energy in excess cannot be stored in such tanks, a heat exchanger is also used in the solar loop for producing DHW (Domestic Hot Water). The analysis is carried out by means of a zero-dimensional transient simulation model, developed by using the TRNSYS software. In order to assess the operating and capital costs of the systems under analysis, an economic model is also proposed. In addition, in order to determine the set of the synthesis/ design variables which maximize the system profitability, a parametric analysis was implemented. The novel variable-volume storage system, in both the proposed configurations, was also compared with a constant-volume storage system from the energy and economic points of view. The results showed that the presented storage system allows one to save up to 20% of the natural gas used by the auxiliary boiler only for very high solar fractions. In all the other cases, marginal savings are achieved by the variable-volume storage tanks system.
机译:本文研究了SHC(太阳能供热和制冷)系统中热量存储管理的不同控制策略。正在研究的S​​HC系统基于抽空的太阳能集热器和单级LiBr-H_2O吸收式制冷机的结合。辅助热能由燃气锅炉提供。 SHC还配备了新颖的蓄热系统,该系统包含在可变容积的储罐中。它基于串联/并联充电和放电方法的组合,包括三个独立的储罐以及由新颖的控制策略管理的多个混合器和分流器。该组件的目的是根据太阳辐射可用性和用户热/冷能需求的组合来改变储热容量。当太阳能和用户需求之间的时间偏移很大时,该系统允许增加活动水箱的数量。相反,当此时间偏移较低时,活动坦克的数量会自动减少。另外,当多余的太阳能不能存储在这种罐中时,在太阳能回路中还使用热交换器来产生DHW(家庭热水)。分析是通过使用TRNSYS软件开发的零维瞬态仿真模型进行的。为了评估所分析系统的运营和资本成本,还提出了一种经济模型。另外,为了确定使系统收益最大化的综合/设计变量的集合,实施了参数分析。从能源和经济的角度,还将两种建议配置中的新型可变容量存储系统与恒定容量存储系统进行了比较。结果表明,所提出的存储系统仅在太阳能非常高的情况下,最多可以节省辅助锅炉使用的20%的天然气。在所有其他情况下,可变容积储罐系统可实现少量节省。

著录项

  • 来源
    《Energy》 |2013年第15期|600-616|共17页
  • 作者单位

    DII, Univ. of Naples Federico Ⅱ, P.leTecchio 80, 80125 Naples, Italy;

    DII, Univ. of Naples Federico Ⅱ, P.leTecchio 80, 80125 Naples, Italy;

    DII, Univ. of Naples Federico Ⅱ, P.leTecchio 80, 80125 Naples, Italy,DiT, Univ. of Naples Parthenope, Centro Direz. IS.C4, 80143 Naples, Italy;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar cooling; Storage; TRNSYS;

    机译:太阳能冷却;存储;TRNSYS;

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