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Structural integrity assessment of turbine discs in presence of potential defects: probabilistic analysis and implementation

机译:存在潜在缺陷的涡轮盘结构完整性评估:概率分析和实施

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摘要

Rotor discs for gas turbines are heavy components usually designed following a safe-life approach, where the low-cycle fatigue design is based on life curves with suitable probabilistic margins. However, in such a component, there is the possible occurrence of undetected defects that can propagate at each startup-shutdown cycle, and therefore, defect acceptance criteria have to be defined for the different rotor regions (considering stress distribution and temperature). Moreover, the failure risk should be evaluated considering static fracture at overspeed as a potential failure mode. In order to make such an assessment for a turbine rotor disc, a semi-probabilistic approach for the integrity assessment-based current standards has been developed. The approach has then been implemented into a code able to process axis-symmetric Finite Element (FE) analyses of the disc and to produce maps for the expected life (for a given defect size) and for the acceptable defect (for a target life). The probabilistic assessment of turbine rotor discs is first discussed together with a sensitivity study about the most significant calculation assumptions. Then, details of the semi-probabilistic code are shown together with application to a turbine disc.
机译:燃气轮机的转子盘通常是按照安全寿命方法设计的重型部件,其中低周疲劳设计基于具有适当概率裕度的寿命曲线。但是,在这样的组件中,可能会出现未检测到的缺陷,这些缺陷会在每个启动停机循环中传播,因此,必须为不同的转子区域(考虑应力分布和温度)定义缺陷接受标准。此外,应将超速下的静态断裂视为潜在的故障模式,以评估故障风险。为了对涡轮转子盘进行这样的评估,已经开发了基于完整性评估的当前标准的半概率方法。然后将该方法实施为能够处理光盘的轴对称有限元(FE)分析并生成预期寿命(对于给定缺陷大小)和可接受缺陷(对于目标寿命)的映射的代码。 。首先讨论涡轮转子盘的概率评估,以及有关最重要计算假设的敏感性研究。然后,将显示半概率代码的详细信息以及在涡轮盘上的应用。

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