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首页> 外文期刊>Solar Energy >Levelized cost of electricity evaluation of liquid sodium receiver designs through a thermal performance, mechanical reliability, and pressure drop analysis
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Levelized cost of electricity evaluation of liquid sodium receiver designs through a thermal performance, mechanical reliability, and pressure drop analysis

机译:通过热性能,机械可靠性和压降分析,对液钠接收器设计进行电价评估

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摘要

The receiver in a concentrated solar power (CSP) tower system accounts for a considerable proportion of plant capital costs, and its role in converting radiant solar energy into thermal energy affects the cost of generated electricity. It is imperative to utilize a receiver design that has a high thermal efficiency, excellent mechanical integrity, minimal pressure drop, and low cost in order to maximize the potential of the CSP system. In the present work, thermal, mechanical, and hydraulic models are presented for a liquid tubular billboard receiver in a representative CSP plant. A liquid sodium heat transfer fluid as well as a number of receiver configurations of heat transfer area, tube diameter, and tube material have been analysed. The thermal analysis determines tube surface temperatures for an incident heat flux, thereby allowing for the calculation of thermal losses and efficiency. The mechanical analysis is carried out to establish creep deformation and fatigue damage that the receiver may undergo through a life service. The hydraulic analysis is concerned with calculating the required pumping power for each configuration. Results show that thermal efficiency increases for a decreasing heat transfer area, however reducing receiver area comes at the penalty of increasing tube surface temperatures and thermal stresses. The selection of tube diameter is critical, with small diameters yielding the greatest thermal efficiency and mechanical life, however the increased pressure drop reduces the overall plant efficiency due to a necessary increase in pumping power. The optimum receiver configuration is established by finding an appropriate trade-off between thermal performance, service life, pressure drop, and material costs, by using the levelized cost of electricity (LCOE) as the objective function. The analysis highlights necessary trade-offs required to optimise the design of a solar receiver.
机译:集中式太阳能(CSP)塔式系统中的接收器占工厂资本成本的很大一部分,其将辐射太阳能转换成热能的作用会影响发电成本。必须利用具有高热效率,出色的机械完整性,最小的压降和低成本的接收器设计,以使CSP系统的潜力最大化。在当前的工作中,为代表性的CSP工厂中的液体管状广告牌接收器提供了热,机械和液压模型。已经分析了液态钠传热流体以及传热面积,管直径和管材料的许多接收器构造。热分析确定入射热通量的管表面温度,从而可以计算热损失和效率。进行机械分析以建立接收器可能会终身使用的蠕变变形和疲劳损伤。水力分析与计算每种配置所需的泵送功率有关。结果表明,热效率随着传热面积的减小而增加,但是减小接收器的面积会增加管表面温度和热应力。管道直径的选择至关重要,小直径的管道可产生最大的热效率和机械寿命,但是由于必须增加泵送功率,因此增加的压降会降低整个设备的效率。通过使用均等的电费(LCOE)作为目标函数,可以在热性能,使用寿命,压降和材料成本之间找到适当的折衷,从而确定最佳的接收器配置。分析强调了优化太阳能接收器设计所需的必要权衡。

著录项

  • 来源
    《Solar Energy》 |2018年第5期|472-485|共14页
  • 作者单位

    Univ Limerick, Sch Engn, Bernal Inst, Stokes Labs, Limerick, Ireland;

    Univ Limerick, Sch Engn, Bernal Inst, Stokes Labs, Limerick, Ireland;

    Vast Solar, Level 10,17-19 Bridge St, Sydney, NSW 2000, Australia;

    Univ Limerick, Sch Engn, Bernal Inst, Stokes Labs, Limerick, Ireland;

  • 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

    Liquid sodium receiver; LCOE; Thermohydraulic analysis; Mechanical analysis;

    机译:钠液接收器;LCOE;热力学分析;力学分析;

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