采用激光诱导荧光法结合数字图像处理技术对水平管外降膜流动的液膜厚度进行了测量
得到了常温常压下水在水平光滑管和Turbo-CII强化管外降膜流动的过程中
液膜厚度随流量、管周角度和液体分布装置布液高度变化的规律.采用Fluent软件对单根水平管外的流动情况进行了二维数值模拟
并把计算结果和实验结果进行了对比.实验和模拟结果表明:上半周的液膜厚度比下半周的大
且在水平管上半周沿顺时针方向随着角度的增大而变小
而在水平管下半周变化不大
液膜最薄点出现在水平管下半周靠近90°附近的位置;液膜厚度随着流量的增大而变大
随着布液高度的增大而变小;管外液膜流动有波动
上半周的液膜波动比较大
Turbo-CII强化管外液膜表面的波动要比光滑管的小.
The measurement of the falling film thickness outside a horizontal tube of a falling film evaporator was performed with the laser induced fluorescence method and the image processing technique. The influences of feeder height
flow rate
and surface geometry configuration on the falling film thickness were explored during the subcooled liquid flowing outside a horizontal plain tube and a Turbo-CII tube at the ambient temperature and pressure. The two-dimension simulation on the water film flow around a plain tube was conducted with the Fluent
and the calculation results were compared with the experimental data. The results show that the film thickness at the upper semi-circular is greater than that at the lower semi-circular. Moreover
it decreases with the increase in the angle in the clockwise direction at the upper semi-circular
and changes slightly at the lower semi-circular. Further
the smallest value of the film thickness is near the 90° location at the lower semi-circular
and the film thickness increases with the increase in Re value and decreases with the increase in the feeder height. In addition
the film wave is stronger at the upper semi-circular
and the wave on the Turbo-CII tube is weaker than that on the plain tube.
{"db_type":"WWJDREF","db_name":"国际期刊","reference_articles":[{"patent_date":"2004-12-15","unit":"Heat Transfer Engineering","flag":"[J]","issue":"8","year":2004,"author":"D. Gstoehl;J. F. Roques;P. Crisinel;J. R. Thome","index":1,"title":"Measurement of Falling Film Thickness Around a Horizontal Tube Using a Laser Measurement Technique"},{"patent_date":"2002-06-15","unit":"Applied Thermal Engineering","flag":"[J]","issue":"5","year":2002,"author":"P Desevaux;D Homescu;P.K Panday;J.P Prenel","index":2,"title":"Interface measurement technique for liquid film flowing inside small grooves by laser induced fluorescence"},{"patent_date":"2001-06-15","unit":"Desalination","flag":"[J]","issue":"1","year":2001,"author":"K. Bourouni;M.T. Chaibi;L. Tadrist","index":3,"title":"Analytical analysis of heat transfer in liquid film dripping around a horizontal tube"}],"articles_count":3}
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