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首页> 外文期刊>International Journal of Heat and Mass Transfer >Inverse heat problem of determining unknown surface heat flux in a molten salt loop
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Inverse heat problem of determining unknown surface heat flux in a molten salt loop

机译:确定熔盐环中未知表面热通量的反热问题

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摘要

Inverse heat transfer problems typically rely on temperature measurements for estimating unknown boundary heat flux, such as that in the water tubes of steam boilers or central receivers in solar tower power plants. In this work, an experimental facility consisting of a molten salt loop that simulates a tube of a solar tower receiver is presented to obtain the outer tube surface temperatures under solar tower power plant operating conditions. The external surface f the pipe in the test section is heated in a controlled manner with an induction heater, which provides a very high nonuniform heat flux. An inverse thermal method has been applied to obtain the incident heat flux onto the receiver tube from the outer surface temperature measurements. To solve the inverse problem, a transient two-dimensional numerical model of a circular pipe flowing molten nitrate salt and subjected to a nonhomogeneous circumferential heat flux has been developed. The heat flux calculation with the inverse method is in accordance with the heat flux estimation based on the calibration of the induction heater. A good agreement between the experimental and calculated temperatures is observed. Furthermore, the deflection of the tube caused by the nonhomogeneous heat flux is measured and is compared to the deflection calculated from the radial temperature profile from the inverse problem solution, and a good agreement between both results is observed. (C) 2019 Elsevier Ltd. All rights reserved.
机译:反热传递问题通常依赖于估计未知边界热通量的温度测量,例如在太阳能塔发电厂的蒸汽锅炉或中央接收器的水管中。在这项工作中,提出了一种由熔融盐环组成的实验设施,该设施包括模拟太阳能塔接收器的管以获得太阳能塔电厂运行条件下的外管表面温度。在测试部分中的外表面F以受控的方式加热测试部分,其具有感应加热器,其提供非常高的不均匀热通量。已经施加了逆热方法,以从外表面温度测量获得接收器管中的入射热通量。为了解决逆问题,已经开发出熔融硝酸盐和对非均匀周向热通量流动的圆形管道的瞬态二维数值模型。具有逆方法的热通量计算是基于感应加热器的校准的热通量估计。观察到实验和计算的温度之间的良好一致性。此外,测量由非均匀热通量引起的管的偏转,并与从逆问题解决方案的径向温度曲线计算的偏转进行比较,并且观察到两个结果之间的良好一致性。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer 》 |2019年第8期| 503-516| 共14页
  • 作者单位

    Univ Carlos III Madrid ISE Res Grp Thermal & Fluid Engn Dept Avda Univ 30 Madrid 28911 Spain;

    Univ Carlos III Madrid ISE Res Grp Thermal & Fluid Engn Dept Avda Univ 30 Madrid 28911 Spain;

    Castilla La Mancha Univ Dept Mecan Aplicada & Ingn Proyectos ETS Ingenieros Ind Albacete Campus Univ S-N Albacete 02071 Spain|Renewable Energy Res Inst Sect Solar & Energy Efficiency C Invest S-N Albacete 02071 Spain;

    Univ Carlos III Madrid ISE Res Grp Thermal & Fluid Engn Dept Avda Univ 30 Madrid 28911 Spain;

    Univ Carlos III Madrid ISE Res Grp Thermal & Fluid Engn Dept Avda Univ 30 Madrid 28911 Spain;

  • 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

    Inverse heat conduction problem; Inductor coil; Central receiver; Tube bending;

    机译:反导热问题;电感线圈;中央接收器;管弯曲;

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