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Thermoeconomic optimization of Solar Heating and Cooling systems

机译:太阳能供热和制冷系统的热经济优化

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摘要

In the paper, the optimal thermoeconomic configuration of Solar Heating and Cooling systems (SHC) is investigated. In particular, a case study is presented, referred to an office building located in Naples (south Italy); for such building, three different SHC configurations were analyzed: the first one is based on the coupling of evacuated solar collectors with a single-stage LiBr-H2O absorption chiller equipped with a water-to-water electrical heat pump, to be used in case of insufficient solar radiation; in the second case, a similar layout is considered, but the capacities of the absorption chiller and the solar field are smaller, since they are requested to balance just a fraction of the total cooling load of the building selected for the case study; finally, in the third case, the electric heat pump is replaced by an auxiliary gas-fired heater. A zero-dimensional transient simulation model, developed in TRNSYS, was used to analyze each layout from both thermodynamic and economic points of view. In particular, a cost model was developed in order to assess the owning and operating costs for each plant layout. Furthermore, a mixed heuristic-deterministic optimization algorithm was implemented in order to determine the set of the synthesis/design variables able to maximize the overall thermo-economic performance of the systems under analysis. For this purpose, two different objective functions were selected: the Pay-Back Period and the overall annual cost. Possible public funding, in terms of Capital Cost Contributions and/or feed-in tariff, were also considered. The results are presented on monthly and weekly basis, paying special attention to the energy and monetary flows in the optimal configurations. In particular, the thermoeconomic analysis and optimization showed that a good funding policy for the promotion of such technologies should combine a feed-in tariff with a slight Capital Cost Contribution, allowing to achieve satisfactory Pay-Back Periods.
机译:在本文中,研究了太阳能加热和冷却系统(SHC)的最佳热经济配置。特别是,提出了一个案例研究,涉及位于那不勒斯(意大利南部)的一栋办公楼。对于此类建筑物,分析了三种不同的SHC配置:第一种是基于抽空的太阳能集热器与配备了水对水电热泵的单级LiBr-H2O吸收式制冷机的耦合,用于以下情况:太阳辐射不足;在第二种情况下,考虑采用类似的布局,但是吸收式制冷机和太阳能场的容量较小,因为要求它们仅平衡为案例研究选择的建筑物的总制冷负荷的一小部分;最后,在第三种情况下,用辅助燃气加热器代替电热泵。在TRNSYS中开发的零维瞬态仿真模型用于从热力学和经济角度分析每种布局。特别是,开发了一种成本模型,以评估每种工厂布局的拥有和运营成本。此外,为了确定能够最大化分析系统总体热经济性能的综合/设计变量集,实施了混合启发式确定性优化算法。为此,选择了两个不同的目标函数:投资回收期和年度总成本。还考虑了可能的公共资金,包括资本成本分摊和/或上网电价。结果按月和每周列出,并特别注意最佳配置下的能源和货币流量。特别是,热经济分析和优化表明,促进此类技术的良好融资政策应将上网电价与少量资本成本贡献相结合,从而实现令人满意的投资回收期。

著录项

  • 来源
    《Energy Conversion & Management》 |2011年第2期|p.1562-1573|共12页
  • 作者单位

    Department of Energetics, Applied Thermofluidodynamics and Environmental Conditioning (DETEC) - University of Naples Federico II, P.le Tecchio 80, 80125 Naples, Italy;

    Department of Energetics, Applied Thermofluidodynamics and Environmental Conditioning (DETEC) - University of Naples Federico II, P.le Tecchio 80, 80125 Naples, Italy;

    Department of Technologies (DIT) - University of Naples "Parthenope" Centra Direzionale IS.5, 80143 Naples, Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    solar heating and cooling; dynamic simulation; thermoeconomics; optimization;

    机译:太阳能加热和冷却;动态仿真热经济学;优化;

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