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Experimental Investigation on the Interfacial Characteristics of Stratified Air-water Two-phase Flow in a Horizontal Pipe

机译:水平管中分层空气两相流界面特征的实验研究

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The interfacial wave characteristics of stratified air-water two-phase flow in a horizontal pipe were experimentally investigated by using the flush-mounted constant electric current method (CECM) sensors. The experiments were conducted in a horizontal two-phase flow loop 9.5 m long (L) consisting of transparent acrylic pipe of 26 mm i.d. (D). To obtain the stratified flow pattern, the superficial gas and liquid velocities were set to 1.02 - 3.77 m/s and 0.016 - 0.92 m/s, respectively. Several interfacial wave patterns as described by several investigators were identified. The common parameters such as liquid hold-up, probability distribution function, wave velocity and wave frequency were investigated as the function of the liquid and gas flow rates. The interfacial curvature was calculated on the basis of the liquid hold-up data from the CECM sensors and the liquid film thickness data from the image processing technique in the previous work. As a result, it was found that the mean liquid hold-up decreases with the increase of the superficial gas velocity. In the same sub flow pattern, the wave velocity increases as the superficial gas velocity increases. On the other hand, in the two-dimensional wave region, the dominant frequency decreases with the increase of the superficial liquid velocity.
机译:通过使用嵌合安装的恒定电流法(CECM)传感器,通过使用嵌合恒定电流方法进行实验研究了水平管中分层空气两相流的界面波特性。实验在水平两相流回路9.5M长(L)中,由26mm I.D的透明丙烯酸管组成。 (d)。为了获得分层的流动模式,浅表气体和液体速度分别设定为1.02-3.77m / s和0.016-0.92 m / s。鉴定了几种研究人员所述的几种界面波模式。作为液体和气流速率的函数研究了诸如液体阻塞,概率分布函数,波速度和波频等的常见参数。基于来自CECM传感器的液体阻滞数据和来自前一项工作中的图像处理技术的液体膜厚度数据计算界面曲率。结果,发现平均液体保持随着浅表气体速度的增加而降低。在相同的子流动模式中,随着浅表气体速度的增加,波速度增加。另一方面,在二维波区域中,随着浅表液体速度的增加而降低了显性频率。

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