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Two-Phase Flow Characteristics During Connective Boiling of Halocarbon Refrigerants Inside Horizontal Small-Diameter Tubes

机译:水平小直径管内卤代烃制冷剂的连通沸腾过程中的两相流动特性

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摘要

Two-phase flow observations were performed for R134a and R245fa in 1.1-and 2.32-mm ID horizontal tubes. The tests were run for mass velocities ranging from 100 to 600 kg/m2-s and saturation temperatures of 22, 31, and 41℃. Additionally, an objective method to characterize two-phase flow patterns was developed. This method is based on simultaneous processing of signals from the following devices: a pair of diodes laser-sensors with a transparent tube between them within which the two-phase flow occurs, a micro-piezoelectric pressure transducer to determine the variation in the local pressure, and a microthermocouple within the fluid. The method was developed based on the k-means clustering algorithm, which consists of the gradual agglomeration of data of similar average characteristics. Simultaneous images of two-phase flow were obtained through a high-speed camera (10,000 frames/s) and used to identify the following flow patterns: bubbly, elongated bubbles, churn, and annular flows. The maps obtained by the objective method were compared against flow pattern results segregated based on flow visualization and a reasonable agreement was obtained between them. The vapor quality for the transition between churn and annular flow pattern decreases with decreasing the tube diameter, whereas the vapor quality for the transition between elongated bubbles and churn flow decreases with increasing tube diameter. Effects of saturation temperature and mass velocity were also verified. Additionally, elongated bubble velocities, frequencies, and lengths were determined based on the analysis of high-speed videos and the processing of signals of the diode/laser-sensor. The elongated bubble velocity was correlated as a linear function of the two-phase superficial velocity. A new image treatment method was developed to automatically identify the entrainment frequencies, which were segregated according to two groups: low and high frequency. The former group was characterized by frequencies lower than 20 Hz and the later by 50-500 Hz frequency ranges.
机译:在内径为1.1和2.32毫米的水平管中对R134a和R245fa进行了两相流动观察。测试的速度范围为100至600 kg / m2-s,饱和温度为22、31和41℃。此外,开发了一种表征两相流场的客观方法。此方法基于以下设备的信号同时处理:一对二极管激光传感器,它们之间具有透明管,在该管内发生两相流;微压电压力传感器确定局部压力的变化,以及流体中的微热电偶。该方法是基于k均值聚类算法开发的,该算法由具有相似平均特征的数据的逐步聚集组成。通过高速摄像机(10,000帧/秒)获得两相流的同时图像,并用于识别以下流型:气泡状,细长气泡,搅动和环形流。将通过客观方法获得的图与基于流动可视化分离的流动模式结果进行比较,并在它们之间获得合理的一致性。随着管直径的减小,搅动和环形流动模式之间过渡的蒸气质量降低,而随着管直径的增大,细长气泡和搅动流之间的过渡蒸气质量降低。还验证了饱和温度和质量速度的影响。另外,基于高速视频的分析和二极管/​​激光传感器信号的处理,确定了拉长的气泡速度,频率和长度。伸长的气泡速度与两相表面速度的线性函数相关。开发了一种新的图像处理方法来自动识别夹带频率,该夹带频率根据低频和高频分为两组。前一组的特征是频率低于20 Hz,后一组的频率范围是50-500 Hz。

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  • 来源
    《Heat Transfer Engineering》 |2013年第15期|1073-1087|共15页
  • 作者单位

    Department of Me-chanical Engineering, Escola de Engenharia de Sao Carlos, University of Sao Paulo, Av. Trabalhador Sao Carlense, 400 Centre, Sao Carlos, SP 13566-590,Brazil;

    Department of Me-chanical Engineering, Escola de Engenharia de Sao Carlos, University of Sao Paulo, Av. Trabalhador Sao Carlense, 400 Centre, Sao Carlos, SP 13566-590,Brazil;

    Department of Me-chanical Engineering, Escola de Engenharia de Sao Carlos, University of Sao Paulo, Av. Trabalhador Sao Carlense, 400 Centre, Sao Carlos, SP 13566-590,Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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