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Solidification and downstream meniscus prediction in the planar-flow spin casting process

机译:平面流旋转铸造过程中的凝固和下游弯月面预测

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mathematical model describing the fluid flow, heat transfer and solidification in planar-flow spin casting is introduced. Asymptotic solutions are derived, including expressions for key physical quantities such as the solid/liquid and liquid/gas interfaces. The time-dependent fluid flow in the turning and nearly rectilinear regions is investigated numerically. A recirculation region, in which vorticity accumulates over time, is shown to form immediately downstream of the nozzle. A significant part of this region is periodically washed downstream. As its vorticity diffuses, it eventually fills a large portion of the available gap. This large recirculation region, which restricts the mass flow by almost entirely blocking the gap, is proposed as the physical mechanism for the detachment of the downstream meniscus. (C) 2007 Elsevier Ltd. All rights reserved.
机译:介绍了描述平面流旋转铸造中的流体流动,传热和凝固的数学模型。得出了渐近解,包括关键物理量的表达式,例如固体/液体和液体/气体界面。数值研究了转向区域和近似直线区域中随时间变化的流体流动。随着时间的流逝,在其中形成累积的涡流的再循环区域紧接在喷嘴的下游。该区域的很大一部分会定期向下游冲洗。随着涡旋的扩散,它最终填补了可用间隙的很大一部分。提出了这种大的再循环区域,该再循环区域通过几乎完全阻塞间隙来限制质量流量,被认为是用于分离下游弯液面的物理机制。 (C)2007 Elsevier Ltd.保留所有权利。

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