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首页> 外文期刊>Fusion Engineering and Design >DEM simulation of packing mono-sized pebbles into prismatic containers through different filling strategies
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DEM simulation of packing mono-sized pebbles into prismatic containers through different filling strategies

机译:通过不同的填充策略将单个鹅卵石包装到方形容器中的DEM模拟

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摘要

The packing structure of the pebbles influences the thermo-mechanical behavior of the pebble beds in fusion breeder blankets. The packing structures at the wall of the container plays an important role in the extraction of heat energy out of the pebble bed to the surroundings. The packing fraction varies from the wall to the bulk region (away from wall). Hence, it is essential to understand the variation of packing fraction across the pebble bed. Packing structures were previously studied through X-ray tomography experiments and computer simulations. Computer simulations of packing were done using random closed packing algorithm, but without considering the gravity effect. Such simulations were able to predict only the wall-effect. In this paper, the packing structures are generated using discrete element method (DEM) by pouring the pebbles into prismatic containers under gravity. DEM simulations reveal that the extent of wall effect on the packing structure is not the same in all the directions. Due to the presence of gravity, the bottom wall (i.e. in the direction of gravity) induces regular packing up to 6 layers while the lateral walls influence is seen only up to 4 layers. Further, it is shown that the packing structure is also influenced by various filling strategies. The present work studies the evolution of packing structure through various filling strategies with an emphasis on the extent of wall effect on the packing structure.
机译:卵石的堆积结构影响融合育种毯中卵石床的热机械行为。容器壁上的填料结构在将热能从卵石床中提取到周围环境中起着重要作用。填充分数从壁到主体区域(远离壁)变化。因此,必须了解整个卵石床的装填率的变化。堆积结构以前是通过X射线断层摄影实验和计算机模拟研究的。装箱的计算机模拟是使用随机封闭式装箱算法完成的,但没有考虑重力效应。这样的模拟只能预测墙效应。在本文中,通过在重力作用下将卵石倒入棱柱形容器中,使用离散元方法(DEM)来生成填充结构。 DEM模拟表明,壁对填料结构的影响程度在所有方向上都不相同。由于重力的存在,底壁(即在重力方向上)引起规则的堆积,最多堆积6层,而侧壁的影响最多可见到4层。此外,表明包装结构也受到各种填充策略的影响。本工作通过各种填充策略研究填充结构的演变,重点是壁对填充结构的影响程度。

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