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Behavior of the compound wall copper-steel receiver with stratified two-phase flow regimen in transient states when solar irradiance is arriving on one side of receiver

机译:当接收器的一侧到达太阳辐射时,具有两相分层流态的复合壁铜钢接收器在瞬态下的行为

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摘要

Direct steam generation (DSG) in parabolic trough concentrators can cause some instabilities in steel absorbers. These instabilities are caused mainly along the stratified two-phase flow related to the boiling process of water. These instabilities are manifested as a transient state and shown as a bending of the absorber, causing a rupture of the glass envelope of the receiver. This bending has been associated with the thermal gradient produced by the boiling of water, and the effects are related to the thermal conductivity of the absorber, the flow pattern and heating of the absorber from below around solar noon. When solar beam irradiance is arriving on one side of the absorber, the bending, which is always upwards, can be up to 50 mm. This is the worst condition because the temperature difference is at its maximum at a transient state. This paper presents the results of a bimetallic absorber (copper-steel), which should reduce such deflections due to the high thermal conductivity of the copper and the mechanical resistance of the steel. In order to compare the results of the theoretical model with experimental results, it was necessary to build a bimetallic absorber 3 m long with a 31.7 mm internal diameter and a thickness of 2.6 mm. The bending obtained experimentally was between 5 and 10 mm, depending on the mass flow and the temperature difference in the wall receiver. As a main conclusion, the bending of the receiver is acceptable, eliminating the rupture of the glass envelope, and it may be used in DSG of parabolic trough collectors at low flows. The objective of this work is to apply DSG to low power generation with parabolic trough plants.
机译:抛物槽式选矿机中的直接蒸汽产生(DSG)可能会导致钢制吸收塔不稳定。这些不稳定性主要是由于与水的沸腾过程有关的分层两相流引起的。这些不稳定性表现为过渡状态,并表现为吸收体的弯曲,从而导致接收器的玻璃外壳破裂。这种弯曲与水沸腾产生的热梯度有关,其影响与吸收器的热导率,流型和吸收器在太阳午后从下方加热有关。当太阳光束辐照到达吸收器的一侧时,始终向上的弯曲可能会高达50 mm。这是最坏的情况,因为在瞬态下温度差最大。本文介绍了双金属吸收器(铜钢)的结果,由于铜的高导热性和钢的机械阻力,这种吸收器应减少这种挠曲。为了将理论模型的结果与实验结果进行比较,有必要制造一个3 m长,内径为31.7 mm,厚度为2.6 mm的双金属吸收器。实验中获得的弯曲度在5到10毫米之间,具体取决于壁接收器中的质量流量和温度差。作为主要结论,接收器的弯曲是可以接受的,从而消除了玻璃外壳的破裂,并且可以在低流量的抛物线形槽式收集器的DSG中使用。这项工作的目的是将DSG应用于带有抛物线槽装置的低功率发电。

著录项

  • 来源
    《Solar Energy》 |2004年第3期|p.195-198|共4页
  • 作者

    Vicente Flores; Rafael Almanza;

  • 作者单位

    Instituto de Ingenieria, Universidad National Autonoma de Mexico, Ciudad Universitaria, Coyoacan, Mexico, DF 04510, Mexico;

  • 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 太阳能技术;
  • 关键词

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