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Numerical assessment of thick walled power plant components under creep fatigue load with advanced models for deformation and lifetime

机译:用先进的变形和寿命模型对厚壁电站构件的蠕变疲劳载荷进行数值评估。

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摘要

Renewable energy sources are changing the operation mode of conventional power plants significantly. Load changes cause fatigue deformation and damage, where traditionally creep effects dominated. In thick walled components the fatigue is concentrated on the inside (where temperature changes are quickest), but through plastification and stress rearrangement during operation the deformation behaviour of the entire component is affected. In this work, the time and temperature dependent deformation of components is described by finite element analysis based on a viscoplastic deformation Chaboche type model. Creep fatigue damage is evaluated by a mechanism based creep fatigue crack growth model and applied by a post-processor program with automatic load cycle detection. An introduction to verification efforts within the HWT-II test rig (at GKM Mannheim) and by full scale component test (MACPLUS project) are given.
机译:可再生能源正在极大地改变传统发电厂的运行模式。载荷变化会导致疲劳变形和损坏,而传统上,蠕变效应占主导地位。在厚壁部件中,疲劳集中在内部(温度变化最快),但是在操作过程中通过塑化和应力重排,会影响整个部件的变形行为。在这项工作中,基于粘塑性变形Chaboche型模型的有限元分析描述了组件随时间和温度变化的变形。蠕变疲劳损伤是通过基于机制的蠕变疲劳裂纹扩展模型评估的,并通过具有自动载荷循环检测功能的后处理器程序进行应用。介绍了在HWT-II测试台(位于曼海姆GKM)和全尺寸组件测试(MACPLUS项目)中进行验证的工作。

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