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THERMO-MECHANICAL TRANSIENT ANALYSIS CONCEPTUAL OPTIMIZATION OF A FIRST STAGE BUCKET

机译:第一阶段水桶的热力瞬态分析和概念优化

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This paper presents a thermo-mechanical analysis of a first stage bucket during a gas turbine start-up. This analysis uses two simulation techniques, Computational Fluid Dynamics (CFD) for the conjugate heat transfer and flow analysis, and Finite Element Analysis (FEA) for the thermo-structural analysis.Computational three dimensional models were developed using two commercial codes, including all elements of the real bucket, to avoid geometric simplifications. An interface was developed to transfer the three-dimensional behavior of bucket temperatures during turbine start-up from CFD analysis to subsequent FEA analysis, imposing them as a thermal load. This interface virtually integrates the computational models, although they have different grids.The results of this analysis include temperature evolution and related stresses, as well as the thermo-mechanical stresses and zones where they are present. These stresses are dominated by thermal mechanisms, so a new temperature start-up curve is proposed where the maximum calculated stress decline around 100 MPa, and almost all stresses are lower throughout the transient analysis. The results are compared to experimental data reported in the literature obtaining acceptable approximation.
机译:本文介绍了燃气轮机启动过程中第一级叶片的热力学分析。该分析使用两种模拟技术:用于共轭传热和流动分析的计算流体动力学(CFD)和用于热结构分析的有限元分析(FEA)。 为了避免几何简化,使用两个商业代码(包括实际铲斗的所有元素)开发了计算三维模型。开发了一个接口,可将汽轮机启动过程中叶片温度的三维行为从CFD分析转换为随后的FEA分析,并将其作为热负荷。尽管它们具有不同的网格,但该接口实际上集成了计算模型。 分析的结果包括温度变化和相关应力,以及存在的热机械应力和区域。这些应力受热机制支配,因此提出了一条新的温度启动曲线,其中最大的计算应力下降了约100 MPa,并且在整个瞬态分析中几乎所有应力都较低。将结果与文献中报道的实验数据进行比较,以获得可接受的近似值。

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