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Multi-field coupling dynamic characteristics based on Kriging interpolation method

机译:基于克里格插值法的多场耦合动力学特性

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Multi-field coupling problems are taken more and more attention mainly because of the higher requirement of load, efficiency, and reliability in aero-engine operation. This research takes an aero-engine compressor as the research object, 3D flow field and structural models are established. For the method of cyclic symmetric, single-sector model is selected as the calculation domain. Considering the influence of former stator wakes, compressor flow field is simulated. The article analyzes the distribution law of unsteady aerodynamic load on rotor blade. Based on Kriging model, load transfer of aerodynamic pressure and temperature is achieved from flow field to blade structure. Then the effects of centrifugal force, aerodynamic pressure and temperature load are discussed on compressor vibration characteristic and structural strength. The results show dominant fluctuation frequencies of aerodynamic load on rotor blade are manly at frequency doubling of stator-rotor interaction, especially at one time frequency (1xf(0)). Magnitude and pulsation amplitude on pressure surface are far greater than that on suction surface. Load transfer with Kriging model has a higher precision, it can meet the requirement of multi-field coupling dynamic calculation. In multi-field coupling interaction, temperature load makes the natural vibration frequencies decrease obviously, centrifugal force is the main source of deformation and stress. Bending stress induced by aerodynamic pressure and temperature load can counteract part of bending stress induced by centrifugal force. However, temperature load causes the maximum displacement of blade-disk system to increase.
机译:多场耦合问题受到越来越多的关注,这主要是由于航空发动机运行中对负载,效率和可靠性的更高要求。本研究以航空发动机压缩机为研究对象,建立了3D流场和结构模型。对于循环对称方法,选择单扇区模型作为计算域。考虑到前定子尾流的影响,模拟了压缩机的流场。本文分析了转子叶片上非定常空气动力载荷的分布规律。基于克里格模型,实现了从流场到叶片结构的气动压力和温度的载荷传递。然后讨论了离心力,空气动力压力和温度负荷对压缩机振动特性和结构强度的影响。结果表明,转子叶片上的空气动力负载的主要波动频率主要是在定子-转子相互作用的频率增加一倍时,特别是在一个频率(1xf(0))时。压力面上的幅度和脉动幅度远大于吸力面上的幅度和脉动幅度。用克里格模型进行负荷传递具有较高的精度,可以满足多场耦合动力计算的要求。在多场耦合作用下,温度载荷使固有振动频率明显降低,离心力是变形和应力的主要来源。气动压力和温度载荷引起的弯曲应力可以抵消离心力引起的弯曲应力。但是,温度负载会导致刀片磁盘系统的最大位移增加。

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