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CREEP-FATIGUE DAMAGE EVALUATION OF MODIFIED GRADE 91 HEADERS USING DAMAGE COUPLED UNIFIED VISCOPLASTIC MODEL

机译:基于损伤耦合统一粘弹塑性模型的改进91级割台蠕变疲劳损伤评估

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A case study for life prediction of Grade 91 heat recovery steam generator (HRSG) superheater outlet header of typical combined cycle power plants (CCPP) is presented in this paper. The effect of high cycling and fast startup along with elevated design temperature and pressure on the creep life is studied. A consistent material model based on MPC Omega is used to evaluate the creep damage of HRSG header components. In addition, a robust unified constitutive model (UCM) based on continuum damage mechanics (CDM) (see [1]) is used for creep-fatigue damage evaluation of the header components. The performance of the UCM is compared against creep and damage focused models in predicting the life of HRSG header components subjected to steady operation condition with low cycle fatigue scenario.
机译:本文以典型的联合循环电厂(CCPP)91级余热回收蒸汽发生器(HRSG)过热器出口集管的寿命预测为例。研究了高循环和快速启动以及升高的设计温度和压力对蠕变寿命的影响。基于MPC Omega的一致材料模型用于评估HRSG割台组件的蠕变损伤。另外,基于连续损伤力学(CDM)(见[1])的鲁棒统一本构模型(UCM)被用于联管箱部件的蠕变疲劳损伤评估。将UCM的性能与针对蠕变和损伤的模型进行比较,以预测在低循环疲劳情况下稳定运行条件下HRSG割台组件的寿命。

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