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Latest developments on he ii co-current two-phase flow studies

机译:并流两相流研究的最新进展

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Large scale experiments were performed with the support of CERN to simulate and understand the LHC HeII cooling circuit. This paper describes the latest results obtained in HeII co-current two-phase flow configuration. First we summarize thermal and hydraulic behaviour of flows obtained in a 40 mm I.D., 86 m long tube inclined at 1.4percent which resembles closely the LHC heat exchanger tube. For low vapour velocities, the flow pattern is found to be stratified. A model based on this observation has been developed and fits very well the measured pressure losses. However the wetted surface predicted by the model underestimates the measured one, notably for high vapour velocities. In this case, liquid droplets entrainment occures. Droplets falling on the tube wall augment the wetted surface. So we infer that for higher vapour velocities, the stratified two-phase flow model cannot be applied anymore. In order to validate the range of availability of the model, and begin to draw a flow pattern map, a 20 mm I.D. horizontal test loop was built and experiments were performed. First results are presented here, including the observation of the stratified-annular flow transition.
机译:在欧洲核子研究组织(CERN)的支持下进行了大规模实验,以模拟和了解LHC HeII冷却回路。本文介绍了在HeII并流两相流配置中获得的最新结果。首先,我们总结了在40 mm内径,86 m长,倾斜1.4%的管中获得的流动的热力和水力行为,该管与LHC换热器管非常相似。对于低蒸汽速度,发现流型是分层的。已经开发了基于此观察的模型,该模型非常适合测得的压力损失。然而,模型预测的湿润表面会低估所测得的表面,特别是对于高蒸汽速度而言。在这种情况下,发生液滴夹带。落在管壁上的液滴会增加润湿的表面。因此我们推断出,对于更高的蒸汽速度,分层两相流模型不再适用。为了验证模型的适用范围,并开始绘制流型图,内径20毫米。建立了水平测试回路并进行了实验。此处提供了第一个结果,包括对分层环形流动过渡的观察。

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