首页> 外文会议>EPD congress;TMS annual meeting amp; exhibition; 20090215-19;20090215-19; San Francisco, CA(US);San Francisco, CA(US) >INFLUENCE OF THE SUBMERGED ENTRY NOZZLE GEOMETRY ON THE HEAT TRANSFER INSIDE THE CONTINUOUS CASTING MOLD
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INFLUENCE OF THE SUBMERGED ENTRY NOZZLE GEOMETRY ON THE HEAT TRANSFER INSIDE THE CONTINUOUS CASTING MOLD

机译:浸入式喷嘴几何形状对连铸模具内传热的影响

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Two of the most important phenomena which govern the continuous casting process and determine the quality of the product are the fluid flow and the heat transfer. Steel flows into the mold through the ports of a bifurcated submerged entry nozzle (SEN), which directs the jet to the mold narrow faces where the superheat contained is dissipated on the solidifying shell. Many important aspects of the fluid flow in the mold are transient and difficult to control. However, the time-averaged flow pattern in the mold is greatly influenced by the nozzle geometry, the submergence depth and the mold dimensions. The aim of this work is to analyze the relationship between the heat transfer and the fluid flow pattern inside the mold using the CFD technique at several operating conditions.
机译:控制连续铸造过程并决定产品质量的两个最重要的现象是流体流动和传热。钢通过分叉式浸入式注嘴(SEN)的端口流入模具,该注口将射流引向模具狭窄的表面,在此处热量所产生的热量消散在凝固的壳体上。模具中流体流动的许多重要方面都是瞬态的,难以控制。但是,模具中的时间平均流型受喷嘴几何形状,浸入深度和模具尺寸的影响很大。这项工作的目的是在几个操作条件下使用CFD技术分析模具内部的传热和流体流动模式之间的关系。

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