首页> 外文期刊>Journal of Heat Transfer >Film Condensation of R-134a on Tube Arrays With Plain and Enhanced Surfaces: Part II - Empirical Prediction of Inundation Effects
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Film Condensation of R-134a on Tube Arrays With Plain and Enhanced Surfaces: Part II - Empirical Prediction of Inundation Effects

机译:R-134a在具有平坦表面和增强表面的管阵列上的薄膜冷凝:第二部分-淹没效应的经验预测

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摘要

New predictive methods for R-134a condensing on vertical arrays of horizontal tubes are proposed based on visual observations revealing that condensate is slung off the array of tubes sideways and significantly affects condensate inundation and thus the heat transfer process. For two types of three-dimensional (3D) enhanced tubes, the Turbo-CSL and the Gewa-C, the local heat flux is correlated as a function of condensation temperature difference, the film Reynolds number, the tube spacing, and liquid slinging effect. The measured heat transfer data of the plain tube were well described by an existing asymptotic model based on heat transfer coefficients for the laminar wavy flow and turbulent flow regimes or, alternatively, by a new model proposed here based on liquid slinging. For the 26 fpi low finned tube, the effect of inundation was found to be negligible and single-tube methods were found to be adequate.
机译:基于视觉观察,提出了用于R-134a在水平管的垂直阵列上冷凝的新预测方法,该方法揭示了冷凝物侧向地从管阵列上甩下,并显着影响冷凝液的浸入,从而影响传热过程。对于Turbo-CSL和Gewa-C这两种类型的三维(3D)增强管,局部热通量与冷凝温度差,膜雷诺数,管间距和液体悬吊效果的函数相关。 。通过基于层状波浪流和湍流状态的传热系数的现有渐近模型,或者通过此处提出的基于液体吊索的新模型,可以很好地描述平管的测得的传热数据。对于26 fpi的低翅片管,淹没的影响可忽略不计,单管法已足够。

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