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Effect of partially wet-surface condition on the performance of fin-tube heat exchanger

机译:部分湿表面条件对翅片管换热器性能的影响

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PurposeThis study aims to investigate heat and mass transfer in a one-row heat exchanger. The required equations are obtained based on two-dimensional model analysis in a cell of the heat exchanger. By using finite difference approach, the obtained equations are solved to determine distribution of temperature and the efficiency of the heat exchanger in the case of partially wet surface. In this research, Lewis Number as unity and water vapor saturation as parabolic are assumed. Obtained results show that increase in thermal conductivity fin leads to decreasing thermal resistance; therefore, temperature changes in radial from center to out of fin are reduced and efficiency of fin increases.Design/methodology/approachIn this regard, fin material plays a significant role in fin efficiency. Changes in airflow also result in an efficiency increase by temperature and relative humidity, and efficiency is decreased by airflow velocity increase, and these changes are almost linear. Moreover, the fins with more wet surface are more sensitive to changes in fin dimensions and air flow characteristics, and it is a result of conjugate heat transfer mechanism, in which latent heat transfer in the fins with more wet surface has a significant role.FindingsThermal property and geometry of the fin under wet conditions play a more important role than the fin under dry conditions. Changes in airflow result in an efficiency increase by temperature and relative humidity, and efficiency is decreased by airflow velocity increase, and these changes are almost linear. Fins with more wet surface are more sensitive to changes in fin dimensions and air flow characteristics.Originality/valueEffects of the temperature of water supply and mass flow rate were considered in the study. The results had good agreement with actual data.
机译:目的本研究旨在研究单排热交换器中的传热和传质。在热交换器的单元中基于二维模型分析获得所需的方程式。通过使用有限差分法,求解所获得的方程式,以确定在部分潮湿的表面情况下的温度分布和热交换器的效率。在这项研究中,假设路易斯数为单位,水蒸气饱和度为抛物线。获得的结果表明,导热鳍片的增加导致热阻的降低。因此,减小了从中心到翅片径向的温度变化,提高了翅片的效率。设计/方法/方法在这方面,翅片材料在翅片效率中起着重要作用。气流的变化还会由于温度和相对湿度而导致效率增加,而效率会随着气流速度的增加而降低,并且这些变化几乎是线性的。此外,具有更多湿润表面的鳍片对鳍片尺寸和气流特性的变化更敏感,这是共轭传热机制的结果,其中共潜热传递在具有更多湿润表面的鳍片中具有重要作用。湿条件下鳍的特性和几何形状比干条件下鳍更重要。气流的变化导致效率随温度和相对湿度的增加而增加,效率随气流速度的增加而降低,这些变化几乎是线性的。表面较湿的鳍片对鳍片尺寸和气流特性的变化更敏感。原始数据/值研究了供水温度和质量流量的影响。结果与实际数据吻合良好。

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