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Long duration blade loss simulations including thermal growths for dual-rotor gas turbine engine

机译:长时间叶片损失模拟,包括双转子燃气涡轮发动机的热增长

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摘要

This paper presents an approach for blade loss simulation including thermal growth effects for a dual-rotor gas turbine engine supported on bearing and squeeze film damper. A nonlinear ball bearing model using the Hertzian formula predicts ball contact load and stress, while a simple thermal model estimates the thermal growths of bearing components during the blade loss event. The modal truncation augmentation method combined with a proposed staggered integration scheme is verified through simulation results as an efficient tool for analyzing a flexible dual-rotor gas turbine engine dynamics with the localized nonlinearities of the bearing and damper, with the thermal growths and with a flexible casing model. The new integration scheme with enhanced modeling capability reduces the computation time by a factor of 12, while providing a variety of solutions with acceptable accuracy for durations extending over several thermal time constants. (C) 2008 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于叶片损失模拟的方法,该方法包括支撑在轴承和挤压膜阻尼器上的双转子燃气涡轮发动机的热增长效应。使用赫兹公式的非线性滚珠轴承模型可以预测滚珠的接触载荷和应力,而简单的热模型则可以估算叶片损耗事件期间轴承部件的热增长。通过仿真结果验证了模态截断增强方法与拟议的交错积分方案相结合的方法,该方法是一种有效的工具,可用于分析具有轴承和阻尼器局部非线性,具有热增长且具有柔性的柔性双转子燃气涡轮发动机动力学套管模型。具有增强的建模能力的新集成方案将计算时间减少了12倍,同时为各种跨越多个热时间常数的持续时间提供了具有可接受精度的各种解决方案。 (C)2008 Elsevier Ltd.保留所有权利。

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