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Thermal characteristics of air-water two-phase flow in a vertical annularly corrugated tube

机译:垂直环形波纹管中的空气水两相流的热特性

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This investigation studies the thermal characteristics of a vertical annularly corrugated tube with air/water two-phase flow. The recirculating flow formed in the cavities of the corrugated sections of the tube plays a significant role in improving the heat transfer. Additionally, corrugation should affect the flow and thermal characteristics of the upward non-boiling air/water two-phase flow, which necessitates an investigation of the characteristics of this type of flow. A constant heat flux of 800 W was applied to the tube by means of a heated wire. The inlet, outlet and wall temperatures of the corrugated tube were measured to calculate the heat transfer coefficient of the corrugated tube. Also, a Canon SX530 camera was used for recording the pictures of the two-phase flow. The air and water flow rates were varied in the range of 1 to 5 and 2 to 8 (lit/min), respectively. The results showed that the transition between flow patterns occurs sooner in the corrugated tube. Besides, the size of the bubbles in the corrugated tube is smaller than the in smooth tube. It was revealed that the two-phase flow in the corrugated tube have enhanced thermal characteristics compared to that of the smooth tube.
机译:该研究研究了具有空气/水两相流的垂直环形波纹管的热特性。在管的波纹部分的空腔中形成的再循环流动在改善传热方面起着重要作用。另外,波纹应影响向上的非沸腾空气/水两相流的流动和热特性,这需要调查这种流动的特性。借助于加热的线将800W的恒定热通量施加到管中。测量波纹管的入口,出口和壁温度以计算波纹管的传热系数。此外,CANON SX530相机用于记录两相流的图片。空气和水流速分别在1至5和2至8(点燃/分钟)的范围内变化。结果表明,流动图案之间的过渡在波纹管中优先发生。此外,波纹管中的气泡的尺寸小于光滑管。据透露,与光滑管相比,波纹管中的两相流具有增强的热特性。

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