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Estimation of residual life of boiler tubes using steamside oxide scale thickness

机译:使用蒸汽侧氧化皮厚度估算锅炉管的剩余寿命

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摘要

In thermal power plants, remaining-life-estimation of boiler tubes is required at regular intervals for a safer and a better functionality of boilers. In this paper, a new method is proposed for the residual life estimation of service exposed boiler tubes using Non-Destructive Ultrasonic Oxide scale thickness measurements, average metal temperature and creep master curve. While steady state conduction heat transfer equations are solved to calculate the average metal temperature, creep master curve is generated from short term stress rupture data of rupture life less than 5000 h on a virgin material. In the present study, the residual life of T22 (2.25Cr-1Mo) service exposed Platen Superheater tube is estimated using two master creep curves, i.e. Larson-Miller Parametric (LMP) method of standard ASME T22 creep data and Wilshire approach of short term stress rupture data of T22. As the residual life is calculated from fundamental conduction heat transfer theory and creep rupture data, the proposed method can be applied for different grades of boiler materials.
机译:在火力发电厂中,需要定期估算锅炉管的剩余寿命,以使锅炉更安全,功能更好。本文提出了一种使用无损超声氧化皮厚度测量,平均金属温度和蠕变主曲线估算服务暴露锅炉管剩余寿命的新方法。求解稳态传导传热方程以计算平均金属温度时,原始材料的短期应力断裂数据(断裂寿命小于5000 h)会生成蠕变主曲线。在本研究中,使用两条主蠕变曲线(即标准ASME T22蠕变数据的Larson-Miller参数化(LMP)方法和短期Wilshire方法)估算了T22(2.25Cr-1Mo)服务暴露的压板过热器管的剩余寿命。 T22的应力破裂数据。由于根据基本传导热传递理论和蠕变破裂数据计算了剩余寿命,因此该方法可适用于不同等级的锅炉材料。

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