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首页> 外文期刊>Heat Transfer Engineering >Evaluation of Existing Heat Transfer Correlations in Designing Helical Coil Evaporators for Low-Temperature Organic Rankine Cycles via Inverse Design Approach
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Evaluation of Existing Heat Transfer Correlations in Designing Helical Coil Evaporators for Low-Temperature Organic Rankine Cycles via Inverse Design Approach

机译:通过逆设计方法对螺旋线圈蒸发器设计螺旋线圈蒸发器的现有传热相关性的评价

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摘要

For evaluating the heat transfer correlations from literature in designing helical coil evaporators for low-temperature organic Rankine cycles (ORC), an inverse evaporator design methodology is used. This is done by taking four already performed measurements with different working fluid mass flow rates (0.21-0.23 kg/s) and saturation pressures (1.93-3.05 MPa, reduced pressures of 0.51-0.82) at the helical coil evaporator (66 m long) in an already operational experimental solar/thermal ORC system as real-case references for the evaporator inverse design's boundary conditions. R-404A is considered as the working fluid. The heating water inlet temperature is changed between 353 K and 373 K. The total length is inversely calculated via 15 helical coil two-phase heat transfer correlations for each case. Their end designs are compared with the actual length. Results show that the correlations can be used interchangeably for designing helical coil evaporators for low-temperature ORCs since the heat transfer resistance is dominant on the shell-side. For evaluating the sensitivity of these results, a secondary analysis was made by means of changing the shell-side correlation's accuracy from its initial value of 10% to more accurate 7%. Predictions with several correlations design shorter heat exchangers at reduced pressures less than 0.7.
机译:为了评估从文献中的传热相关性在设计螺旋线圈蒸发器中用于低温有机朗肯循环(ORC),使用逆蒸发器设计方法。这是通过在螺旋线圈蒸发器(长66米长)的不同工作流体质量流量(0.21-0.23kg / s)和饱和压力(1.93-3.05MPa,0.51-0.82的压力降低)的情况下进行四次进行在已经运行的实验性太阳能/热兽人系统中,作为蒸发器反向设计的边界条件的实际情况。 R-404a被认为是工作流体。加热进水温度在353k和373k之间变化。总长度是通过每种情况的15个螺旋线圈两相传热相关的逆向计算的。他们的结局设计与实际长度进行了比较。结果表明,相关性可互换地用于设计用于低温兽人的螺旋线圈蒸发器,因为传热阻力在壳侧占主导地位。为了评估这些结果的灵敏度,通过将壳侧相关性的精度从10%的初始值改变为更准确的7%来进行二次分析。具有几个相关性的预测设计较短的热交换器,降低压力小于0.7。

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  • 来源
    《Heat Transfer Engineering》 |2019年第16期|1137-1152|共16页
  • 作者单位

    Univ Ghent Dept Flow Heat & Combust Mech Campus Ufo T4 Sint Pietersnieuwstr 41 Ghent Belgium|Strateg Res Ctr Mfg Ind Flanders Make Lommel Belgium;

    Univ Ghent Dept Flow Heat & Combust Mech Campus Ufo T4 Sint Pietersnieuwstr 41 Ghent Belgium|Strateg Res Ctr Mfg Ind Flanders Make Lommel Belgium;

    Agr Univ Athens Dept Nat Resources & Agr Engn Athens Greece;

    Univ Ghent Dept Flow Heat & Combust Mech Campus Ufo T4 Sint Pietersnieuwstr 41 Ghent Belgium|Strateg Res Ctr Mfg Ind Flanders Make Lommel Belgium;

    Univ Ghent Dept Flow Heat & Combust Mech Campus Ufo T4 Sint Pietersnieuwstr 41 Ghent Belgium|Strateg Res Ctr Mfg Ind Flanders Make Lommel Belgium;

  • 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
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