首页> 外文会议>ASME(American Society of Mechanical Engineers) Power Conference; 20070717-19; San Antonio,TX(US) >IMPORTANCE OF PHYSICS-BASED PROGNOSIS FOR IMPROVING TURBINE RELIABILITY - RRA 501KB GAS TURBINE BLADE CASE STUDY
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IMPORTANCE OF PHYSICS-BASED PROGNOSIS FOR IMPROVING TURBINE RELIABILITY - RRA 501KB GAS TURBINE BLADE CASE STUDY

机译:基于物理的预测对提高涡轮机可靠性的重要性-RRA 501KB燃气轮机叶片案例研究

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摘要

Prognosis and health monitoring (PHM) technology needs to be developed to meet the challenges posed by aging gas and steam turbines in power plants, transportation systems, gas pipelines, and other industries. It is necessary to use physics based residual life prediction and life extension techniques to take into account the state of damage due to prior service. This paper focuses on the requirements of the technology and the state of the development to date. In this study, Life Prediction Technologies Inc.'s (LPTi's) prognosis tool known as XactLIFE~TM was successfully used to establish the fracture critical location of RRA 501KB first stage gas turbine blades under steady state loads and to compute the average life to creep crack initiation in the blade airfoils. The analysis used typical engine operating data from the field in terms of engine speed and average turbine inlet temperature (TIT). The blade is known to suffer airfoil untwist and lengthening during service and this is obviously followed by stress rupture failure. The primary objectives of the case study are to show how prognosis can allow a user to predict fracture critical locations to avoid failures.
机译:需要开发预后和健康监控(PHM)技术,以应对发电厂,运输系统,天然气管道和其他行业中老化的燃气轮机和蒸汽轮机带来的挑战。有必要使用基于物理学的剩余寿命预测和寿命延长技术来考虑由于先前服务而造成的损坏状态。本文着重于技术要求和迄今为止的发展状况。在这项研究中,成功​​使用了生命预测技术公司(LPTi)的诊断工具XactLIFE〜TM来确定RRA 501KB一级燃气轮机叶片在稳态载荷下的断裂临界位置,并计算出平均蠕变寿命叶片翼型产生裂纹。该分析使用了根据发动机转速和平均涡轮进口温度(TIT)得出的典型发动机运行数据。众所周知,叶片在使用过程中会遭受翼型的扭曲和拉长,这显然会导致应力破坏。案例研究的主要目标是显示预后如何使用户能够预测骨折的关键部位以避免发生故障。

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