Thermal-fluid-structure interaction analysis of bladed disk system based on Kriging model and hypothetic elastomer method

L. Zhang, Xin Li
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引用次数: 1

Abstract

A partitioned time marching algorithm is used for the thermal-fluidstructure interaction analysis based on solutions of the fluid (include thermal) and structure (include thermal) sub-problems. The finite volume method is used for the fluid sub-problem, and the finite element method is used for structure sub-problem. A new data exchange method is presented by Kriging model, which could be used for data exchange on the coupled interface from fluid to structure and structure to fluid. A flow field mesh update method is presented based on the hypothetic elastomer finite element method. A case of multi-field coupling analysis of single-stage bladed disk system in a compressor is investigated. The effect of different loading modes on mechanics characteristics of bladed disk system is discussed. [Received 17 August 2016; Revised 14 November 2016; Accepted 16 November 2016]
基于Kriging模型和假设弹性体方法的叶盘系统热流固耦合分析
基于流体(含热)子问题和结构(含热)子问题的解,采用分段时间推进算法进行热-流-固耦合分析。流体子问题采用有限体积法,结构子问题采用有限元法。基于Kriging模型,提出了一种新的数据交换方法,可用于流体与结构、结构与流体耦合界面上的数据交换。提出了一种基于假设弹性体有限元法的流场网格更新方法。以某型压气机单级叶盘系统为例,进行了多场耦合分析。讨论了不同加载方式对叶片盘系力学特性的影响。[2016年8月17日收到;2016年11月14日修订;接受2016年11月16日]
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