首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >INVESTIGATION AND DEVELOPMENT OF CONDENSATION HEAT TRANSFER CORRELATIONS FOR STRAIGHT AND HELICALLY COILED TUBES
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INVESTIGATION AND DEVELOPMENT OF CONDENSATION HEAT TRANSFER CORRELATIONS FOR STRAIGHT AND HELICALLY COILED TUBES

机译:直管和螺旋管的冷凝传热相关性的研究与开发

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This paper introduces a set of developed condensation heat transfer correlations used in both straight and helically coiled tube systems. A literature search found that there are no applicable heat transfer correlations for two-phase flow in a helically coiled tube. As such, a study was first undertaken on condensation heat transfer in a straight tube. The investigation into condensation heat transfer for a fluid flowing in a straight tube began with a review of existing correlations. It is assumed that the annular flow is the dominant flow pattern over most of the condensing length of the tube. Depending upon the experimental methods and the theoretical and/or numerical approach, the results obtained by using the (existing) correlations show some degree of inconsistency over the ranges of parameters. Thus, it is not a simple matter to select a proper condensation heat transfer correlation for a straight tube system. This resulted in the development of generalized correlations for specific fluids such as water and R134a by employing least-squared property curves in terms of parameters such as Reynolds number based on the liquid, vapor quality and reduced pressure for each fluid considered. As a consequence, a number of plausible condensation heat transfer correlations in a coiled tube for specific fluids mentioned above are proposed employing the two-phase fluid flow Coiling Influence Factor (CIF_(TP)) for heat transfer obtained by using the Coiling Influence Factor for liquid and vapor (CIF_1 and CIF_v) respectively along with a vapor quality as a weighting parameter.
机译:本文介绍了一套开发的用于直管和螺旋盘管系统的冷凝传热相关性。文献搜索发现在螺旋盘管中两相流没有适用的传热相关性。因此,首先对直管中的冷凝热传递进行了研究。对在直管中流动的流体进行冷凝热传递的研究始于对现有相关性的回顾。假定在管道的大部分冷凝长度上,环形流是主要的流型。根据实验方法以及理论和/或数值方法,通过使用(现有)相关性获得的结果在参数范围内显示出一定程度的不一致。因此,为直管系统选择合适的冷凝传热相关性不是一件容易的事。通过在参数(例如基于液体的雷诺数,所考虑的每种流体的雷诺数)和参数(例如雷诺数)方面采用最小二乘性质曲线,从而导致开发了特定流体(例如水和R134a)的广义相关性。结果,提出了在上述盘管中用于特定流体的许多可能的冷凝传热相关性,该建议采用两相流体流动的卷积影响因子(CIF_(TP)),该系数通过使用液体和蒸气(CIF_1和CIF_v)以及蒸气质量作为加权参数。

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