首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.4 >EXPERIMENTAL STUDY ON CONTACT ANGLE OF WATER DROPLET IN HIGH-TEMPERATURE CONDITION
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EXPERIMENTAL STUDY ON CONTACT ANGLE OF WATER DROPLET IN HIGH-TEMPERATURE CONDITION

机译:高温条件下水滴接触角的实验研究

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In recent decades, a number of reports have pointed out the importance of the influence of wall wettability on gas-liquid two-phase flow with a gas-liquid or liquid-gas phase change. However, very limited experimental data can be obtained about the wall surface wettability in BWRs high-temperature condition, or in the range from 250 to 300 ℃. From this point of view, we conducted an experimental study of surface wettability of droplet using a pressure vessel, we measured contact angles of water droplet under various ambient pressures (7.7, 14 and 15 MPa), atmospheric gases (nitrogen and argon), and test plate materials (aluminum, stainless 304, Zircaloy). In addition, experimental correlation was derived based on energy balance. The data obtained in this study will provide more accurate assessment of heat transfer in subchannels of BWRs.
机译:近几十年来,许多报告指出了壁润湿性对具有气-液或液-气相变的气-液两相流的影响的重要性。但是,关于BWR的高温条件或在250至300℃范围内的壁表面润湿性,只能获得非常有限的实验数据。从这个角度出发,我们使用压力容器对液滴的表面润湿性进行了实验研究,我们测量了在各种环境压力(7.7、14和15 MPa),大气气体(氮气和氩气),测试板材料(铝,不锈钢304,Zircaloy)。另外,基于能量平衡得出了实验相关性。这项研究中获得的数据将提供对BWR子通道中传热的更准确评估。

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