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Effect of batch initial velocity on the glass furnace efficiency

机译:分批初始速度对玻璃熔炉效率的影响

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摘要

Glass manufacturing is a heat intensive process. There is a direct coloration between the batch distribution techniques and the furnace energy consumption, productivity, and quality of the glass manufactured. All four major segments (float, container, fibre, and specialty glasses) would benefit from using an optimised batch distribution technique where possible. Oscillating batch chargers (OBC) have been in use since the early 70s, despite their superior batch shape, coverage, and in turn positive effects on the energy consumption (Soleimanian, TMS 2013) and productivity of the furnace they are almost exclusively used in container glass manufacturing. The OBC’s main difference compared with other charging methods is its ability to directly influence the batch initial velocity. This paper reports on results achieved in two CFD models (in Flow 3D and GFM) used to study effect of the machine on the overall energy consumption in the doghouse and the melt space.
机译:玻璃制造是一个热量密集的过程。批次分配技术与熔炉能耗,生产率和所制造玻璃的质量之间存在直接的关联。在可能的情况下,使用优化的批次分配技术将使所有四个主要部分(浮法,容器,纤维和特种玻璃)受益。自70年代初以来就一直使用振荡式批料充电器(OBC),尽管它们具有出色的批料形状,覆盖范围,并且反过来又对能耗(Soleimanian,TMS 2013)和熔炉生产率产生了积极影响,它们几乎专门用于容器中玻璃制造。与其他装料方法相比,OBC的主要区别在于其直接影响批次初始速度的能力。本文报告了在两种CFD模型(在Flow 3D和GFM中)中获得的结果,这些模型用于研究机器对狗舍和熔体空间中的整体能耗的影响。

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