首页> 外文会议>ASME/JSME Joint Fluids Engineering Conference >FLOW STRUCTURE AND PRESSURE LOSS OF TWO-PHASE FLOW IN HELICALLY COILED TUBES
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FLOW STRUCTURE AND PRESSURE LOSS OF TWO-PHASE FLOW IN HELICALLY COILED TUBES

机译:在螺旋盘绕管中的两相流流量和压力损失

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In the steam generator of the prototype FBR (Fast Breeder Reactor) in Japan, heat exchange tubes of helical coil type are utilized. The gas-liquid two-phase flows in the helical coil tube have different characteristic from straight tubes due to the effects of centrifugal acceleration in the curved tubes. In our study, the interfacial structure of the gas-liquid two-phase flows in the helical coil tube is visualized to provide the flow pattern map. Simultaneously, the pressure loss and its local fluctuation are measured in order to investigate the dynamic characteristics of the two-phase flow appearing in the helical coil tube. The result reveals that the bubbly flow regime extends and the stratified flow vanishes compared the gas-liquid flow in a horizontal straight tube. Moreover, the slug flow has asymmetric structure due to the effect of centrifugal acceleration. On the contrary the pressure loss is basically not remarkably different from the straight tube except the fact that the pressure has a high fluctuation component.
机译:在日本原型FBR(快速育种反应器)的蒸汽发生器中,利用螺旋线圈的热交换管。由于离心加速度在弯曲管中的影响,螺旋线圈管中的气液两相流量具有不同的特性。在我们的研究中,可视化螺旋卷管中的气液两相流的界面结构以提供流动模式图。同时,测量压力损失及其局部波动,以研究出现在螺旋卷管中的两相流的动态特性。结果表明,气泡流动调节延伸并且分层流量消失在水平直管中的气液流比较。此外,由于离心加速度的效果,块流具有不对称的结构。相反,除了压力具有高波动分量的事实之外,压力损失基本上没有显着不同。

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