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Application of composite furnace module cooling systems in a flash furnace reaction shaft

机译:复合炉组件冷却系统在闪速反应炉中的应用

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The use of Composite Furnace Module cooling systems has been shown to give improved refractory performance in a number of above bath locations in WMC flash furnaces. To test the behaviour of modules in contact with a melt, a set of instrumented modules ahve been installed in the reaction shaft of a nickel flash furnace. The location was chosen to provide a suitably harsh environment to ensure rigorous testing, while still allowing relatively easy access for module installation. The modules were continuously monitored to provide information on the module performance, as well as the temperature in the shaft itself. The shaft temperature showed significant transient behaviour, which resulted in heat fluxes through the modules ranging from 10 to 92 kW m-2. The modules were capable of handling the highest heat flux with no risk of the coolant boiling. This paper details the design and operation of the modules over a period of seven weeks.
机译:事实证明,在WMC闪蒸炉的许多上述熔池位置,使用复合熔炉模块冷却系统可提高耐火性能。为了测试与熔体接触的模块的行为,已在镍闪蒸炉的反应竖井中安装了一组仪器模块。选择该位置是为了提供适当的恶劣环境以确保进行严格的测试,同时仍允许相对容易地进行模块安装。对模块进行连续监控,以提供有关模块性能以及轴本身温度的信息。轴温度显示出明显的瞬态行为,这导致通过模块的热通量在10到92 kW m-2之间。这些模块能够处理最高的热通量,而没有冷却液沸腾的危险。本文详细介绍了这些模块的设计和操作历时七个星期。

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