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Analytical model for erosion behaviour of impacted fly-ash particles on coal-fired boiler components

机译:燃煤锅炉部件受粉煤灰颗粒侵蚀行为的解析模型

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Fly ash particles entrained in the flue gas from boiler furnaces in coal-fired power stations can cause serious erosive wear on steel surfaces along the flow path. Such erosion can significantly reduce the operational life of the boiler components. A mathematical model embodying the mechanisms of erosion on behaviour, has been developed to predict erosion rates of coal-fired boiler components at different temperatures. Various grades of steels used in fabrication of boiler components and published data pertaining to boiler fly ash have been used for the modelling. The model incorporates high temperature tensile properties of the target metal surface at room and elevated temperatures and has been implemented in an user-interactive in-house computer code (EROSIM-1), to predict the erosion rates of various grades of steel. Predictions have been found to be in good agreement with the published data. The model is calibrated with plant and experimental data generated from a high temperature air-jet erosion-testing facility. It is hoped that the calibrated model will be useful for erosion analysis of boiler components.
机译:燃煤电站锅炉炉膛烟气中夹带的粉煤灰颗粒会在沿流动路径的钢表面上造成严重的腐蚀磨损。这种腐蚀会大大缩短锅炉部件的使用寿命。已经开发出体现行为腐蚀机理的数学模型,以预测不同温度下燃煤锅炉部件的腐蚀速率。用于锅炉部件制造的各种等级的钢和与锅炉粉煤灰有关的公开数据已用于建模。该模型结合了室温和高温下目标金属表面的高温拉伸特性,并已在用户交互的内部计算机代码(EROSIM-1)中实现,以预测各种等级钢的腐蚀速率。预测与发布的数据非常吻合。该模型已根据工厂和从高温喷气侵蚀测试设备生成的实验数据进行了校准。希望该校准模型将对锅炉部件的腐蚀分析有用。

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