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Development of a simulation method for evaluating Marangoni convection with free surface for tungsten divertor

机译:评估钨分流器自由表面Marangoni对流的模拟方法的开发

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A tungsten (W) divertor has been developed for tokamak-type nuclear fusion reactors, such as ITER. Because the divertor will be repetitively subjected to high heat flux when plasma disruption or edge localized mode occurs, W at the surface of the divertor will be melted and solidified during reactor operation. The surface shape of the W divertor after or during such a heat load strongly influences its lifetime. Thus, evaluating the behavior of W in such conditions is important. An important driving force in molten metal is Marangoni convection due to a difference in surface tension resulting from a temperature gradient at the surface. To clarify the mechanism of Marangoni convection in molten W, a simulation method that can simultaneously treat surface deformation and convection in molten W, including Marangoni convection, is required. We have been developing such a simulation code based on the constrained interpolation profile combined unified procedure method. In this paper, we simulated molten W under a given temperature gradient or heat load and validated the model by simulating the flow in a molten W pool with a temperature gradient. The development process of Marangoni convection in molten W with a free surface was evaluated.
机译:钨(W)偏滤器已被开发用于托卡马克型核聚变反应堆,例如ITER。因为当发生等离子体破坏或边缘局限模式时,分流器将反复经受高热通量,所以在反应器运行期间,分流器表面的W将熔化并凝固。在这样的热负荷之后或期间,W偏滤器的表面形状强烈地影响其寿命。因此,在这种条件下评估W的行为很重要。熔融金属中的重要驱动力是Marangoni对流,这是由于表面温度梯度导致的表面张力差异所致。为了弄清楚Marangoni对流在熔融W中的机理,需要一种能够同时处理熔融W中的表面变形和对流(包括Marangoni对流)的模拟方法。我们已经基于约束插值曲线组合统一过程方法开发了这样的仿真代码。在本文中,我们模拟了给定温度梯度或热负荷下的熔融W,并通过模拟具有温度梯度的熔融W池中的流动来验证模型。评估了具有自由表面的熔融W中Marangoni对流的显影过程。

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