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Prevention of Airheater Corrosion

机译:防止空气加热器腐蚀

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摘要

Most sugar mill boilers are fitted with airheaters for improved combustion performance and efficiency matching to factory requirements. Irrespective of boiler design, capacity or operating conditions the vast majority of airheaters inevitably experience corrosion in specific sections, suually on the inside of the tubes at the cold air inlet. Full or partial tube replacement is expensive. More importantly, as the corrosion proceeds the output of the boiler will progressively be restriected due to air bypassing the furnace and convection bank and overloading the induced draft fan. In some cases, the output restriction can be severe enough to restrict factory operations and crushing rate. This paper describes measurements and computer modelling carried out on a sugar mill boiler with the aim of establishing the cause of airheater tube corrosion. The measurements show that even when average gas flow temperatures at the outlet of the airheater are well above the dew-point (below which water condensation and subsequent corrosion occurs), low tube metal temperatures can occur at the cold air side tubes of the airheater at alloperating conditions. The computer modelling has shown that the major contributors to low tube metal temperatures and therefore dew-point corrosion are the poor gas and airflow distributions into the airheater. The information gained was used to carry out modifications to an airheater on a recently built boiler that was experiencing significant corrosion as well as tube blockages. The modifications at the gas inlet and air inlet were designed using the CFD computer package FURNACE. Results are presented which show that the modificatiosn have significantly reduced the airheater corrosion and almost completely eliminated the occurrence of tube blockages.
机译:大多数糖厂锅炉都装有空气加热器,以提高燃烧性能和效率,以符合工厂的要求。无论锅炉的设计,容量或运行条件如何,绝大多数空气加热器不可避免地会在特定区域遭受腐蚀,通常是在冷空气入口处的管子内部腐蚀。全部或部分管子更换很昂贵。更重要的是,随着腐蚀的进行,由于空气绕过炉膛和对流排并且导致引风机过载,锅炉的输出将逐渐受到限制。在某些情况下,产量限制可能严重到足以限制工厂运营和破碎率。本文介绍了在制糖厂锅炉上进行的测量和计算机建模,目的是确定空气加热器管腐蚀的原因。测量结果表明,即使当空气加热器出口处的平均气流温度远高于露点时(低于该露点,水就会凝结并随后发生腐蚀),在空气加热器的冷空气侧管处也会出现较低的金属管温度。所有工作条件。计算机模型表明,造成管金属温度低和露点腐蚀的主要原因是气体和气流在空气加热器中的分布不均。所获得的信息用于对最近建造的,遭受严重腐蚀以及管道堵塞的锅炉的空气加热器进行修改。进气口和进气口的修改是使用CFD计算机软件包FURNACE设计的。结果表明,这种改进显着降低了空气加热器的腐蚀,并几乎完全消除了管子堵塞的发生。

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