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首页> 外文期刊>Solar Energy >Techno-economic assessment of a high-efficiency, low-cost solar-thermal power system with sodium receiver, phase-change material storage, and supercritical CO_2 recompression Brayton cycle
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Techno-economic assessment of a high-efficiency, low-cost solar-thermal power system with sodium receiver, phase-change material storage, and supercritical CO_2 recompression Brayton cycle

机译:具有钠接收器,相变材料存储和超临界CO_2再压缩布雷顿循环的高效,低成本太阳能热电系统的技术经济评估

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摘要

To achieve further substantial reductions in the cost of concentrating solar-thermal power systems, recent efforts have been directed towards changing the working fluid in the receiver, adopting new approaches to thermal energy storage, and incorporating higher-efficiency power cycles. In this study, we present a novel CSP system configuration under development in ASTRI research program in Australia, incorporating a tubular sodium receiver, a high-temperature phase-change material storage unit, and a supercritical CO2 power block. The model is implemented using the SolarTherm framework in the Modelica language, and simulated using Dymola software. The novel system was compared to a 'reference' system with a molten salt receiver, two-tank storage, and subcritical steam Rankine cycle. For verification, the reference system was also modelled using the System Advisor Model software, and differences of <1% in annual receiver output and <2% in net electrical output were achieved when comparing Modelica and SAM simulations, despite difference operating strategies and time resolution. The results of the analysis of the novel system showed an improvement of annual solar-to-electricity efficiency to 19.6%, up from 15.6% for the reference system. This was achieved as a result of higher power cycle efficiency, despite the reduction in optical and receiver efficiencies resulting from the higher working fluid temperature. The ASTRI system was economically optimised for financial performance using 2012 as the basis year, and reached a minimum levelised cost of electricity of 11.42 cAUD/kWh for a solar multiple of 2.2 and storage capacity of 8-9 h at the location of Alice Springs, Australia.
机译:为了实现太阳能热发电系统集中成本的进一步大幅度降低,最近的工作方向是改变接收器中的工作流体,采用新的热能存储方法,并引入更高效率的功率循环。在这项研究中,我们介绍了澳大利亚应科院研究计划中正在开发的新型CSP系统配置,其中包括管状钠接收器,高温相变材料存储单元和超临界CO2功率块。该模型使用Modelica语言的SolarTherm框架实现,并使用Dymola软件进行仿真。将该新型系统与带有熔融盐接收器,两罐存储和亚临界蒸汽兰金循环的“参考”系统进行了比较。为了进行验证,还使用System Advisor Model软件对参考系统进行了建模,尽管比较了不同的操作策略和时间分辨率,但比较Modelica和SAM仿真时,年度接收器输出的差异<1%,净电气输出的差异<2% 。新系统的分析结果表明,年太阳能发电效率从参考系统的15.6%提高到19.6%。尽管由于较高的工作流体温度而导致光学和接收器效率下降,但由于功率循环效率更高,因此可以实现这一目标。以2012年为基准年,对ASTRI系统进行了经济优化,以实现财务绩效,并在Alice Springs所在地以2.2的太阳能倍数和8-9 h的存储容量达到了11.42 cAUD / kWh的最低平均电费,澳大利亚。

著录项

  • 来源
    《Solar Energy》 |2020年第3期|885-900|共16页
  • 作者

  • 作者单位

    CSIRO Energy 10 Murray Dwyer Ct Mayfield West NSW 2304 Australia|Arizona State Univ ASU LightWorks POB 875402 Tempe AZ 85281 USA;

    CSIRO Energy 10 Murray Dwyer Ct Mayfield West NSW 2304 Australia;

    Australian Natl Univ Res Sch Elect Energy & Mat Engn Canberra ACT 2600 Australia;

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

    SolarTherm; Modelica; Annual performance; Central receiver system; High-temperature; Latent heat storage;

    机译:SolarTherm;Modelica;年度业绩;中央接收器系统;高温;潜热储存;

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