Full-Scale Vibration Testing of Nozzle Guide Vanes

G. Macoretta, B. Monelli, P. Neri, F. Bucciarelli, D. Checcacci, Enrico Giusti
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Abstract

An increasing number of turboexpanders are equipped with Nozzle Guide Vane (NGV) as the first stator stage. By varying the throat area of the first stator vane the NGV enables an additional control methodology to the line-up power output allowing higher operational flexibility and higher efficiency at partial load and partial speed. The design of this component might become critical for enabling high expander availability considering its exposure to high temperature, thermal loading, and fluid induced vibrations. This is especially true also considering that the vibration frequencies of this sub-assembly are influenced by internal clearances and by the value of the friction coefficient, which leaves a relevant margin of error when using numerical methods (such as FEM) for predicting the actual structural behavior of this component. In this paper, the design of a full-scale test bench for the determination of both friction coefficients and modal behavior of a nozzle guide vane geometry is described. The bench enables us to simulate the pre-load due to aerodynamic forces on the NGV airfoil simulating the actual working conditions of bushes and bearings.
喷嘴导叶全尺寸振动试验
越来越多的涡轮膨胀机采用喷嘴导叶(NGV)作为第一定子级。通过改变第一个定子叶片的喉道面积,NGV可以对机组功率输出提供额外的控制方法,从而在部分负载和部分速度下实现更高的操作灵活性和效率。考虑到膨胀器暴露在高温、热载荷和流体诱发振动下,该组件的设计对于实现膨胀器的高可用性至关重要。考虑到该组件的振动频率受到内部间隙和摩擦系数值的影响,这一点尤其正确,这在使用数值方法(如FEM)预测该组件的实际结构行为时留下了相关的误差范围。本文描述了一个全尺寸试验台的设计,用于确定喷嘴导叶几何形状的摩擦系数和模态行为。该工作台使我们能够模拟由于NGV翼型上的空气动力而产生的预载荷,模拟轴套和轴承的实际工作条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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