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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >A study on steam-water two phase flow distribution in a rectangular channel with different channel orientations
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A study on steam-water two phase flow distribution in a rectangular channel with different channel orientations

机译:不同沟道方向矩形通道中蒸汽水两相流分布的研究

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Experimental study on steam-water two phase vertical and inclined upward flow (15-90 degrees) was performed in a rectangular channel with cross section of 17 mm x 10 mm under atmospheric pressure to investigate the phase distribution and the average void fraction in the cross section which were obtained from the local void fraction measurement by a conductivity probe. The inlet superficial velocities of the steam and water varied from 0.72 to 3.85 m/s and from 0.11 to 0.3 m/s respectively. A high speed camera was used to identify the flow patterns. Experimental results show that the phase distribution curves are significantly affected by channel orientation and the average void fraction first decreases and then increases with the increase of orientation. Based on the drift-flux model, two parameters, namely, the distribution parameter (C-0) and the drift velocity (U-gm) have been studied in detail. Both the distribution parameter and the drift velocity are found to be functions of orientation. The distribution parameter decreases with the increase of orientation while the drift velocity first increases and then decreases with the increase of orientation., Based on the experimental data, an improved drift-flux model is proposed especially for the slug and churn flow, which predicts the void fraction in an inclined channel with good accuracy.
机译:在矩形通道中进行蒸汽水两相垂直和倾斜向上流动(15-90度)的实验研究在大气压下的横截面,横截面为17mm×10mm的横截面,以研究交叉的相分布和平均空隙率由电导率探针从局部空隙级分测量获得的部分。蒸汽和水的入口表面速度分别从0.72至3.85 m / s等于0.11至0.3 m / s。使用高速相机识别流动模式。实验结果表明,相位分布曲线受到信道取向的显着影响,平均空隙率首先降低,然后随着取向的增加而增加。基于漂移助焊剂模型,已经详细研究了两个参数,即分布参数(C-0)和漂移速度(U-GM)。分布参数和漂移速度都被发现是方向的函数。分布参数随着取向的增加而减小,而漂移速度首先增加,然后随着方向的增加而降低。,基于实验数据,提出了一种改进的漂移助焊剂模型,特别适用于SLUG和流失的流量。倾斜通道中的空隙率,精度良好。

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