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Experimental research on the turbulent convection heat transfer of supercritical pressure CO_2 in a serpentine vertical mini tube

机译:蛇形垂直微型管中超临界压力CO_2湍流对流换热的实验研究

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摘要

Convection heat transfer characteristics of supercritical pressure CO_2 in vertical straight tubes were investigated experimentally and numerically extensively by the researchers. However, in some practical applications, the channel may not be straight but rather serpentine. The integrated effects of buoyancy and centrifugal forces on the convection heat transfer behavior of supercritical fluids in serpentine tubes need to be studied thoroughly. This paper presents experimental investigations of the turbulent convection heat transfer of supercritical pressure CO_2 in a serpentine vertical mini tube with an inner diameter of 0.953 mm and curvature diameter of 8.01 mm for various inlet Reynolds numbers, heat fluxes, and flow directions. Infrared temperature measurement was used to measure the continuous distribution of the wall temperature. The effects of variations in thermophysical properties, integrated effect of buoyancy force and centrifugal force were analyzed through comparison the heat transfer performance between the upward and the downward flow in serpentine tube and straight tube under similar experimental conditions. It was found that the heat transfer performance was better in the serpentine tube than in the straight tube because of the secondary flow attributable to centrifugal forces. At relative low Bo", the heat transfer in the serpentine vertical tube for downward flow performed better than upward flow due to the effect of gravitational buoyancy on the intensity of turbulence. At relative high Bo~*, in contrast with the existing research on turbulent convection heat transfer of supercritical fluid in straight vertical tubes, the turbulent convection heat transfer in the serpentine vertical tube for upward flow performed better than downward flow and no heat transfer deterioration occurred in the serpentine vertical tube.
机译:研究人员通过实验和数值研究了超临界压力CO_2在垂直直管中的对流传热特性。但是,在某些实际应用中,通道可能不是笔直的而是蛇形的。浮力和离心力对蛇形管中超临界流体对流传热行为的综合影响需要深入研究。本文介绍了在不同入口雷诺数,热通量和流动方向下,内径为0.953 mm且曲率直径为8.01 mm的蛇形垂直微型管中,超临界压力CO_2的湍流对流换热的实验研究。红外温度测量用于测量壁温的连续分布。通过比较蛇形管和直管在相似实验条件下的向上和向下流动之间的传热性能,分析了热物理性质的变化,浮力和离心力的综合效应。已经发现,由于归因于离心力的二次流,在蛇形管中的传热性能比在直管中更好。在较低的Bo“下,由于重力浮力对湍流强度的影响,蛇形垂直管中向下流动的传热效果优于向上流动。在较高Bo〜*下,与现有的湍流研究相反超临界流体在垂直直管中的对流传热中,蛇形垂直管中向上流动的湍流对流传热比向下流动好,蛇形垂直管中没有传热恶化。

著录项

  • 来源
    《International Journal of Heat and Mass Transfer》 |2015年第12期|552-561|共10页
  • 作者单位

    Key Laboratory for CO_2 Utilization and Reduction Technology of Beijing, Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, China;

    Key Laboratory for CO_2 Utilization and Reduction Technology of Beijing, Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, China;

    Key Laboratory for CO_2 Utilization and Reduction Technology of Beijing, Key Laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Thermal Engineering, Tsinghua University, Beijing 100084, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Supercritical pressure carbon dioxide; Turbulent convection heat transfer; Serpentine tube; Buoyancy effect; Centrifugal force;

    机译:超临界压力二氧化碳;湍流对流换热;蛇形管;浮力作用;离心力;

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