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Designing Furnace Lining/Cooling Systems to Operate with a Competent Freeze Lining

机译:设计炉衬/冷却系统以使用有效的防冻衬板

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The formation of a freeze lining on the hot face of furnace sidewalls to increase campaign life is an accepted concept in industry today. This is achieved through a well-engineered sidewall cooling system typically consisting of cooled copper elements, either on their own or in combination with a refractory lining. The design of the lining/cooling system to form and maintain a competent freeze lining is discussed. Heat losses under normal operating conditions are calculated as an input to the furnace energy balance. The lining/cooling system is evaluated under extreme operating conditions as this ultimately determines campaign life. Variables to be evaluated include freeze lining thickness and formation rate, copper element temperatures, cooling medium used, and required cooling density and arrangement. Steady-state and transient thermal FEA are used as tools to evaluate the lining/cooling system design.
机译:在炉侧壁的热面上形成冻结衬里,以增加竞选生活是今天的行业概念。这是通过经过精心设计的侧壁冷却系统来实现的,通常由冷却的铜元件组成,无论是单独的还是与耐火衬里组合。讨论了衬里/冷却系统的设计,形成和维持胜任冻结衬里。正常操作条件下的热损失计算为对炉能量平衡的输入。衬里/冷却系统在极端操作条件下评估,因为这最终决定了竞选寿命。待评估的变量包括冷冻衬里厚度和形成速率,铜元件温度,使用冷却介质,以及所需的冷却密度和布置。稳态和瞬态热FEA用作评估衬里/冷却系统设计的工具。

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