基于键合图传递路径分析和传递率理论的航空发动机振动传播分析

Seyed-Ehsan Mir-Haidari, K. Behdinan
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引用次数: 2

摘要

近年来,由于全球能源商品价格的上涨,航空发动机制造商正在投资于先进的航空发动机技术,以降低运营成本。这些创新技术包括整体重量减轻,以开发高效的航空发动机。由于这些情况,由于各种载荷条件,如转子载荷力,航空发动机的整体暴露于振动传递显著增加。由于技术的进步和对乘客舒适度的要求,减少飞机机身的振动传递受到了人们的广泛关注。本文对键图传递路径分析(TPA)进行了广泛的研究,并对其应用进行了探讨。Bond Graph TPA是一种可靠可行的理论方法,可在设计阶段应用于各种大型机械系统,在原型设计前解决噪声和振动问题,显著降低开发成本。键合图传递路径分析(Bond graph transfer path analysis, TPA)由于其高效的分析特性,与现有的经验TPA方法(如操作路径分析)相比,具有优势。本文在一个简化的航空发动机模型上实现键合图TPA,以确定航空发动机不同位置的振动贡献,从而提出最小化振动传递的结构设计准则。
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Aero-Engine Vibration Propagation Analysis Using Bond Graph Transfer Path Analysis and Transmissibility Theory
In recent times, due to the increase in global energy commodities prices, aero-engine manufacturers are investing in advanced aero-engine technologies to reduce the operating costs. These innovative technologies include overall weight reductions to develop efficient aero-engines. Due to these circumstances, the overall exposure of the aero-engine to vibration transfer due to various loading conditions such as the rotor loading forces has significantly increased. Due to advancement in technologies and demand for greater passenger comfort, vibration transfer reduction to the aircraft fuselage has received prominent attention. In this paper, an analytical transmissibility study called the bond graph Transfer Path Analysis (TPA) has been extensively studied and its applications are explored. Bond Graph TPA is a reliable and feasible theoretical methodology that can be implemented on various large mechanical systems in the design stages to tackle noise and vibration problems before prototyping to significantly reduce the development costs. Bond graph transfer path analysis (TPA) is an advantageous method compared to the existing empirical TPA methodologies such as the Operational Path Analysis due to its efficient analytical nature. In this paper, bond graph TPA has been implemented on a reduced aero-engine model to determine vibration contribution at various aero-engine locations to propose structural design guidelines to minimize the vibration transfer.
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