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Debottlenecking High Temperature Metallurgical Plants Through Modeling and Simulation

机译:通过建模和仿真对高温冶金厂进行瓶颈消除

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Debottlenecking of high temperature processes within an existing metallurgical plant can significantly increase the throughput to meet new production demands. Modeling and simulation can help to fulfil that aim through incremental changes and operational improvements, rather than the more expensive option of building new plants and facing new environmental and infrastructure challenges. This paper describes a methodology of how modeling tools can be used to simulate the processing steps, how to estimate their existing and ultimate capacities, and how to determine the minimum cost points for a plant capacity expansion. This technique is presented through a generic description that can be applied to different metallurgical processing studies. We start with heat-and-mass balances, draw a bottleneck diagram, brainstorm capacity increase options, and prepare a cost-capacity curve. Hatch has successfully applied this technique to a number of plant capacity studies, with great benefits to our industrial clients (Adham et al. in A Success Path from Process R&D to Commercial Plants, Montreal, Canada, [1]).
机译:现有冶金厂中高温工艺的瓶颈消除可以显着提高产量,以满足新的生产需求。建模和仿真可以通过不断的变化和运营改进来帮助实现该目标,而不是建造新工厂并面对新的环境和基础架构挑战的更昂贵选择。本文介绍了一种方法模型,该模型说明了如何使用建模工具来模拟加工步骤,如何估计其现有和最终产能以及如何确定工厂扩容的最低成本点。通过一般性描述介绍了该技术,该描述可应用于不同的冶金工艺研究。我们从热质平衡开始,画出瓶颈图,集思广益,增加产能,并绘制成本-容量曲线。哈奇(Hatch)已成功地将此技术应用于许多工厂的产能研究,对我们的工业客户大有裨益(Adham等人,《从过程研发到商业工厂的成功之路》,加拿大蒙特利尔,[1])。

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