首页> 外文会议>14th International Conference on Nuclear Engineering 2006(ICONE14) vol.4 >EFFECT OF OBSTACLE SHAPE ON THE DEPOSITION RATE IN ANNULAR TWO-PHASE FLOW
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EFFECT OF OBSTACLE SHAPE ON THE DEPOSITION RATE IN ANNULAR TWO-PHASE FLOW

机译:障碍物形状对环形两相流沉积速率的影响

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In annular two-phase flow, it is known that the deposition rate of droplets markedly increases if an obstacle is placed in a flow channel. In most of the available models to evaluate the obstacle effect on deposition rate, turbulence augmentation at the downstream of obstacle is considered as the key mechanism of the deposition enhancement. In this study, it was examined where the increase of droplet deposition occurred around the obstacle to reveal the primary cause of deposition enhancement. The test section was a round tube of 5 mm in inside diameter and air and water were used as test fluids; the double film extraction technique was adopted to measure the deposition rate. To specify the position where the deposition enhancement occurred, the liquid film was extracted at the upstream, middle and downstream of the flow obstacle. As a result, it was indicated that the significant amount of droplets was deposited not only at the downstream of flow obstacle but also at the upstream of obstacle. Using five tubular obstacles of different inside and outside diameters, the influence of obstacle geometry on the deposition rate was investigated. It was shown that the position of deposition enhancement was influenced significantly by the obstacle geometry.
机译:在环形两相流中,已知如果在流道中放置障碍物,则液滴的沉积速率显着增加。在评估障碍物对沉积速率影响的大多数可用模型中,障碍物下游的湍流增强被认为是沉积增强的关键机制。在这项研究中,检查了障碍物附近液滴沉积的增加,以揭示沉积增强的主要原因。测试部分是一个内径为5毫米的圆管,空气和水用作测试流体。采用双膜萃取技术测量沉积速率。为了确定发生沉积增强的位置,在流动障碍物的上游,中间和下游提取液膜。结果表明,不仅在流动障碍物的下游而且在障碍物的上游也沉积了大量的液滴。使用五个不同内径和外径的管状障碍物,研究了障碍物几何形状对沉积速率的影响。结果表明,沉积物增强的位置受到障碍物几何形状的显着影响。

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