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Magnetohydrodynamic pressure drops in geometric elements forming a HCLL blanket mock-up

机译:磁流体动压在形成HCLL橡皮布模型的几何元素中下降

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The helium cooled lead lithium (HCLL) blanket concept is one of the designs that will be tested and validated in the experimental reactor ITER. The liquid metal, which is slowly circulated in the blanket, interacts with the magnetic field that confines the fusion plasma leading to modifications of velocity and pressure distributions compared to the ones in hydrodynamic flows. Experiments have been performed to investigate magnetohydrodynamic flows in a scaled mock-up of a HCLL blanket. One of the aims is identifying the geometric elements that give rise to the main contributions to the total pressure head in the module. Parametric studies have been carried out to assess the influence of flow rate and magnetic field intensity on pressure drops.
机译:氦冷却铅锂(HCLL)覆盖层概念是将在实验反应堆ITER中进行测试和验证的设计之一。在橡皮布中缓慢循环的液态金属与限制聚变等离子体的磁场相互作用,与流体动力学流动相比,导致速度和压力分布发生变化。已经进行了实验,以研究按比例放大的HCLL橡皮布的磁流体动力学流动。目的之一是确定对模块中总压头产生主要贡献的几何元素。已经进行了参数研究,以评估流速和磁场强度对压降的影响。

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