Condensation of R-134a inside dimpled helically coiled tube-in-shell type heat exchanger
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Condensation of R-134a inside dimpled helically coiled tube-in-shell type heat exchanger

机译:R-134A内部凹陷螺旋螺旋卷管式壳体型热交换器的凝结

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Highlights?Dimple helically coiled tube gives a higher heat transfer coefficient.?The effect of mass flux, vapor quality and saturation temperature are considered.?Flow transitions for dimpled helically coiled tube occurred at lower vapor quality.?Dimple helically coiled tube yields a higher pressure drop than straight tube.AbstractIn this study, condensation heat transfer coefficients and frictional pressure drops of R-134a inside a dimpled helically coiled tube are experimentally investigated. The inner tubes comprise of one smooth straight tube, one smooth helically coiled tube and one dimpled helically coiled tube. The experimental measurements are carried out at saturation temperature of 35°, and 45?°C with mass flux of 75, 115, 156 and 191?kg?m?2?s?1. The experimental data of a smooth and dimpled helically coiled tube have been plotted on the mass flux versus vapor quality flow map and Tailtel and Dukler flow map. The transitions between different flow regimes have also been discussed. Moreover, the effect of mass flux, vapor quality and saturation temperature of R-134a on the heat transfer coefficients and pressure drops are examined. Comparisons between smooth straight tube, smooth helically coiled tube and dimpled helically coiled tube are also discussed. The dimple helically coiled tube produces a higher heat transfer coefficient and frictional pressure drop compared to smooth helically coiled tube and smooth straight tube. The correlations have been proposed to predict the Nusselt number and frictional pressure drop multiplier during condensation of R-134a inside horizontal dimpled helically coil tube.]]>
机译:<![cdata [ 亮点 凹坑螺旋盘管给出更高的传热系数。 质量磁通量,蒸气质量的效果考虑饱和温度。 凹陷螺旋盘管的流动过渡发生在较低的蒸气质量下。 凹坑螺旋盘管产生更高的p水杆掉落而不是直管。 抽象 在本研究中,实验研究了凹陷螺旋盘管内R-134a的冷凝传热系数和摩擦压降。内管包括一个平滑的直管,一个光滑的螺旋螺旋管和一个凹陷的螺旋盘管。实验测量在35°的饱和温度下进行,45°C,75,115,156和191Ω·kg?m ?2 ?s ?1 。在质量磁通与蒸气质量流图和Tailtel和Dukler流程图上绘制了光滑和凹陷螺旋盘绕管的实验数据。还讨论了不同流动制度之间的过渡。此外,研究了R-134a对传热系数和压降r-134a的质量磁通,蒸汽质量和饱和温度的影响。还讨论了光滑直管之间的比较,光滑的螺旋盘管和涡流螺旋盘管。与光滑的螺旋盘管和光滑的直管相比,凹坑螺旋盘管产生更高的传热系数和摩擦压降。已经提出了相关性来预测在水平透过螺旋线圈管内的R-134a缩合期间的露珠数和摩擦压降乘法。 ]]>

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