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双跨转子系统的临界转速影响因素分析 被引量:2
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作者 潘宏刚 李根稼 +2 位作者 郭宝仁 孟昭发 高宇 《汽轮机技术》 北大核心 2023年第2期115-118,135,共5页
建立双跨转子系统模型,利用Ansys软件进行转子临界转速计算,并与理论计算结果比较,以保证结果的正确性。用有限元软件分析研究了支承变化、轮盘变化以及联轴器变化3种影响因素对双跨转子系统临界转速的影响。结果分析表明:在转子上增大... 建立双跨转子系统模型,利用Ansys软件进行转子临界转速计算,并与理论计算结果比较,以保证结果的正确性。用有限元软件分析研究了支承变化、轮盘变化以及联轴器变化3种影响因素对双跨转子系统临界转速的影响。结果分析表明:在转子上增大支承刚度会增大双跨转子的临界转速,而在支承位置的偏移中,两段转子的临界转速表现出不同的变化趋势。增大转子上的轮盘质量,双跨转子的临界转速减小,偏移转子上的轮盘位置,双跨转子的临界转速增大。增大联轴器的刚度,双跨转子的临界转速增大,联轴器的位置处于中心时,临界转速最大,向两边偏移,临界转速减小。为汽轮机转子系统设计和处理汽轮机运行过程中由于结构数据变化引起临界转速改变提供参考。 展开更多
关键词 有限元 联轴器 轮盘变化 支承变化 临界转速
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Transient reliability optimization for turbine disk radial deformation
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作者 费成巍 白广忱 +2 位作者 唐文忠 蔡逸思 高海峰 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第2期344-352,共9页
The radial deformation design of turbine disk seriously influences the control of gas turbine high pressure turbine(HPT) blade-tip radial running clearance(BTRRC). To improve the design of BTRRC under continuous opera... The radial deformation design of turbine disk seriously influences the control of gas turbine high pressure turbine(HPT) blade-tip radial running clearance(BTRRC). To improve the design of BTRRC under continuous operation, the nonlinear dynamic reliability optimization of disk radial deformation was implemented based on extremum response surface method(ERSM), including ERSM-based quadratic function(QF-ERSM) and ERSM-based support vector machine of regression(SR-ERSM). The mathematical models of the two methods were established and the framework of reliability-based dynamic design optimization was developed. The numerical experiments demonstrate that the proposed optimization methods have the promising potential in reducing additional design samples and improving computational efficiency with acceptable precision, in which the SR-ERSM emerges more obviously. Through the case study, we find that disk radial deformation is reduced by about 6.5×10–5 m; δ=1.31×10–3 m is optimal for turbine disk radial deformation design and the proposed methods are verified again. The presented efforts provide an effective optimization method for the nonlinear transient design of motion structures for further research, and enrich mechanical reliability design theory. 展开更多
关键词 turbine disk radial deformation reliability-based transient design optimization extremum response surface method support vector machine regression
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