Heat Transfer Model for Liquid-Liquid Taylor Flow in Mini-Scale Coiled Tubing

W. Adrugi, Y. Muzychka, K. Pope
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引用次数: 1

Abstract

In this paper, an experimental study on heat transfer enhancement using non-boiling liquid-liquid Taylor flow in mini scale coiled tubing for constant wall temperature conditions is conducted. Coiled copper tubing with different radii of curvature and lengths were used as test sections. Segmented slug flow with water and three low viscosity silicone oils (1 cSt, 3 cSt, 5 cSt) were used to examine the effect of Prandtl number on heat transfer rates in coiled tubing. Additionally, benchmark tests were conducted of single-phase flow in a straight tube. The experimental results are compared with models for liquid-liquid Taylor flow in straight and coiled tubing. This research provides new insights on the enhanced heat transfer rates attainable with using liquid-liquid Taylor flow in mini scale coiled tubing. This enhancement occurs due to internal circulation and secondary flow in the fluid segments.
小尺度连续油管中液-液泰勒流的传热模型
本文在恒壁温度条件下,对小型连续油管中非沸腾液-液泰勒流强化换热进行了实验研究。采用不同曲率半径和长度的连续铜管作为试样。采用水和3种低粘度硅油(1 cSt, 3 cSt, 5 cSt)的分段段塞流,研究了普朗特数对连续油管传热速率的影响。此外,还进行了直管内单相流动的基准试验。实验结果与直管和连续管中液-液泰勒流模型进行了比较。该研究为在小型连续油管中使用液-液泰勒流提高传热率提供了新的见解。这种增强是由于流体段的内循环和二次流动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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