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Refrigerant Condensation Flow Regimes in Enhanced Tubes and Their Effect on Heat Transfer Coefficients and Pressure Drops

机译:增强管中的制冷剂冷凝流状态及其对传热系数和压降的影响

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摘要

Flow regimes influence the heat and mass transfer processes during two-phase flow, implying that any statistically accurate and reliable prediction of heat transfer and pressure drop during flow condensation should be based on the analysis of the prevailing flow pattern. Many correlations for heat transfer coefficient and pressure drop during flow condensation completely ignored flow regime effects and treated flows as either annular or non-stratified flow or as stratified flow. This resulted in correlations of poor accuracy and limited validity and reliability. Current heat transfer coefficient, pressure drop, and void fraction models are based on the local flow pattern, though, resulting in deviations of around 20% from experimental data. There are, however, several inconsistencies and anomalies regarding these models, which are discussed in this paper. A generalized solution methodology for two-phase flow problems still remains an elusive goal, mainly because gas-liquid flow systems combine the complexities of turbulence with those of deformable vapor-liquid interfaces. The paper focuses on the state of the art in correlating flow condensation in micro-fin tubes and proposes flow regime-based correlations of heat transfer coefficient and pressure drop for refrigerant condensation in smooth, helical micro-fin, and herringbone micro-fin tubes.
机译:流动状态会影响两相流动过程中的传热和传质过程,这意味着在统计学上准确,可靠地预测流动冷凝过程中的传热和压降都应基于对主流流动模式的分析。流动冷凝过程中传热系数和压降的许多相关关系完全忽略了流动状态的影响,并将流动视为环形或非分层流或分层流。这导致准确性差,有效性和可靠性受限的相关性。但是,当前的传热系数,压降和空隙率模型基于局部流型,因此与实验数据的偏差约为20%。但是,关于这些模型存在一些不一致和异常之处,本文将对此进行讨论。对于两相流问题的通用解决方案方法仍然是一个遥不可及的目标,主要是因为气液流系统将湍流的复杂性与可变形的气液界面的复杂性结合在一起。本文着重研究微翅片管中的流动冷凝相关技术,并提出了基于流态的传热系数与压降之间的相关关系,用于光滑,螺旋微翅片和人字形微翅片管中的制冷剂冷凝。

著录项

  • 来源
    《Heat Transfer Engineering》 |2008年第6期|506-520|共15页
  • 作者单位
  • 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
  • 关键词

  • 入库时间 2022-08-18 00:19:45

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