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Thermal performance of peripheral-finned tube evaporators under frosting

机译:结霜条件下外围翅片管蒸发器的热性能

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摘要

This study presents an experimental and theoretical evaluation of frost formation on the moist air side of a peripheral finned-tube (PFT) heat exchanger. Previous studies of this compact geometry correlated the friction and heat transfer parameters above the dew-point temperature of the air (no frost or condensate formation). Here, for the first time, the thermal-hydraulic performance of a PFT heat exchanger is analyzed under frosting. A PFT heat exchanger prototype was evaluated experimentally in a closed-loop wind tunnel calorimeter to determine the influence of the tube wall temperature, air velocity and psychromet-ric properties (temperature and relative humidity) on the heat transfer rate, air-side pressure drop and frost buildup on the surface. The thermal and hydrodynamic behavior of the enhanced air-side surface was analyzed using a distributed heat exchanger model in which mass, momentum and energy balances are applied to one-dimensional control volumes in the air flow direction. The model treats the air flow path as a porous medium in which the porosity, equivalent particle diameter and thermal properties vary as a function of time due to the frost accumulation. Good agreements (within 20% average error) between the model predictions and the experiments for the air-side pressure drop and heat transfer rate have been found. The enthalpy effectiveness was found to drop from 0.68 for dry to 0.50 under severe frosting, which suggests that the PFT heat exchanger continues to be effective under frost.
机译:这项研究提出了在外围翅片管(PFT)热交换器的潮湿空气侧结霜的实验和理论评估。先前对这种紧凑的几何形状的研究将高于空气露点温度(无霜或冷凝物形成)的摩擦和传热参数关联起来。在这里,首次在结霜条件下分析了PFT热交换器的热工水力性能。在闭环风洞热量计中对PFT热交换器原型进行了实验评估,以确定管壁温度,空气速度和拟态特性(温度和相对湿度)对传热速率,空气侧压降的影响和结霜在表面上。使用分布式换热器模型分析了增强的空气侧表面的热和流体动力学行为,其中,质量,动量和能量平衡在空气流动方向上应用于一维控制体积。该模型将空气流动路径视为多孔介质,由于结霜,其孔隙率,等效粒径和热特性会随时间变化。在模型预测与空气侧压降和传热速率的实验之间已经找到了很好的一致性(平均误差在20%以内)。发现在严酷的结霜下,焓的有效性从干燥的0.68下降到0.50,这表明PFT热交换器在结霜下仍然有效。

著录项

  • 来源
  • 作者单位

    Polo - Research Laboratories for Emerging Technologies in Cooling and Thermophysics, Department of Mechanical Engineering, Federal University of Santa Catarina, Florianopolis, SC 88040900, Brazil;

    Department of Mechanical Engineering, University of Michigan, Ann Arbor, MI 48109, USA;

    Polo - Research Laboratories for Emerging Technologies in Cooling and Thermophysics, Department of Mechanical Engineering, Federal University of Santa Catarina, Florianopolis, SC 88040900, Brazil;

  • 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

    Peripheral finned-tube; Frost formation; Heat transfer enhancement; Heat exchanger;

    机译:外围翅片管;霜冻形成;传热增强;热交换器;

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