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Study on Formation and Development of Surface Wave of Liquid Metal Lithium Jet for IFMIF

机译:IFMIF液态金属锂射流表面波的形成与发展研究

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The international fusion materials irradiation facility (IFMIF) presents an intense neutron source to develop fusion reactor materials. The liquid metal Lithium (Li) jet with a free surface is planned as a target irradiated by two deuteron beam to generate intense neutrons and it is thus important to obtain information on the surface wave characteristic for the safety and the efficiency of system in the IFMIF. We have been studying on surface wave characteristics experimentally using the liquid metal Li circulation facility at Osaka University (Li loop) and numerically using computational fluid dynamics (CFD) code, FLUENT. The CFD simulation has been used in order to establish the mechanism of the formation and development of the surface wave of the liquid Li jet. The introduction of a two-staged contraction nozzle is planned in the IFMIF and the 1/2.5 size of the IFMIF's nozzle has been also used and tested in our Li loop. These nozzles have a concave wall at each contraction part, and it was then predicted that Goertler vortices in the boundary layer inside the nozzle was generated and flowed out from the nozzle exit at the high velocity condition in our previous simulation. The Li free surface flow simulation including the flow inside the nozzle set in our Li loop was conducted to compare simulation results with experimental results and to evaluate the influence of Goertler vortices on the surface wave formation and development. In our simulation, large eddy simulation and volume of fluid models are used as turbulence model and interface tracking method, respectively. Our simulation result indicates that both transverse vortices due to gas-liquid shear stress and longitudinal vortices induced by Goertler vortices downstream the nozzle exit contribute to the formation of three-dimensional wave of the Li free surface flow at the velocity of 15 m/s. It was found that the vortex structure and the flow pattern under the free surface due to the flow inside the nozzle strongly contributed the development of the surface wave of the liquid Li jet.
机译:国际聚变材料辐照设施(IFMIF)提供了强大的中子源来开发聚变反应堆材料。计划将具有自由表面的液态金属锂(Li)射流作为目标,由两个氘核束辐照以产生强中子,因此对于IFMIF中系统的安全性和效率而言,获取有关表面波特性的信息非常重要。我们一直在使用大阪大学的液态金属Li循环设施(Li回路)进行实验研究表面波特性,并使用计算流体力学(CFD)代码FLUENT进行了数值研究。为了建立液态锂射流表面波的形成和发展机理,已使用CFD模拟。 IFMIF计划引入两级收缩喷嘴,IFMIF喷嘴的1 / 2.5尺寸也已在我们的Li回路中使用和测试。这些喷嘴在每个收缩部分都有一个凹壁,然后可以预测,在我们先前的模拟中,喷嘴内部边界层中的Goertler涡流是在高速条件下从喷嘴出口产生并流出的。进行了无锂表面流动模拟,包括在我们的Li回路中设置的喷嘴内部的流动,以将模拟结果与实验结果进行比较,并评估Goertler涡旋对表面波形成和发展的影响。在我们的模拟中,大涡模拟和流体模型分别用作湍流模型和界面跟踪方法。我们的模拟结果表明,由于气液剪切应力引起的横向涡流和喷嘴出口下游的Goertler涡流引起的纵向涡流均有助于以15 m / s的速度形成Li自由表面流的三维波。已经发现,由于喷嘴内部的流动而在自由表面下的涡旋结构和流动模式对液体Li射流的表面波的发展有很大的贡献。

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