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A Sub-idle Compressor Characteristic Generation Method With Enhanced Physical Background

机译:具有增强物理背景的子怠速压缩机特性产生方法

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摘要

Sub-idle is a very challenging operating region as the performance of a gas turbine engine changes significantly compared with design conditions. In addition, the regulations for new and existing engines are becoming stricter and the prediction of engine relight capability is essential. In order to predict the performance of an engine, detailed component maps are required. The data obtained from rig tests are insufficient at low speeds, creating the need for generation of maps within the sub-idle regime. The first step toward this direction is the use of an extrapolation process. This is a purely mathematical process and the results are not usually of sufficient accuracy. In addition, this method does not provide any insight on the physical phenomena governing the operation of the compressor at low speeds. The accuracy of the resulting compressor map can be increased with a better low speed region definition; this can be achieved via the thorough study of a locked rotor compressor, enabling the derivation of the zero rotational speed line and allowing an interpolation process for the generation of the low speed part of the characteristic. In this work, an enhanced sub-idle compressor map generation technique is proposed. The suggested methodology enables the generation of characteristics at far off-design conditions with enhanced physical background. Alternative parameters for map representation are also introduced. Provided that the all the blade rows of the compressor are of known geometry, a numerical analysis is used for the calculation of the characteristic of the half stage and a stage stacking method is employed to create the entire compressor characteristic. This way, the sub-idle region of the map can be calculated through interpolation, which provides a more accurate and predictive technique. Application of the method for compressor map generation showed that the proposed interpolation approach is robust and capable of enhancing any performance simulation tool used for the prediction of transient altitude relight or ground-starting maneuvers.
机译:子怠速是一个非常具有挑战性的工作区域,因为与设计条件相比,燃气涡轮发动机的性能发生了显着变化。另外,对新的和现有的发动机的法规变得越来越严格,并且发动机再点火能力的预测是必不可少的。为了预测发动机的性能,需要详细的组件图。在低速下,从钻机测试获得的数据不足,因此需要在次怠速状态下生成地图。朝这个方向迈出的第一步是使用外推法。这是一个纯粹的数学过程,结果通常没有足够的准确性。另外,该方法没有提供关于控制低速压缩机运行的物理现象的任何见解。可以通过更好的低速区域定义来提高生成的压缩机图的精度;这可以通过对锁定式转子压缩机的深入研究来实现,可以推导零转速线,并可以进行插值处理以生成特性曲线的低速部分。在这项工作中,提出了一种改进的子怠速压缩机图生成技术。所建议的方法可以在远远超出设计的条件下通过增强的物理背景来生成特性。还介绍了地图表示的替代参数。假设压缩机的所有叶片排都是已知的几何形状,则将数值分析用于计算半级的特性,并采用级堆叠方法来创建整个压缩机特性。这样,可以通过插值来计算地图的子空闲区域,这提供了一种更加准确和可预测的技术。该方法在压缩机图生成中的应用表明,所提出的插值方法是鲁棒的,并且能够增强用于预测瞬时高空重演或地面启动演习的任何性能仿真工具。

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  • 来源
    《Journal of Engineering for Gas Turbines and Power》 |2011年第8期|p.081702.1-081702.8|共8页
  • 作者单位

    Department of Power and Propulsion,School of Engineering,Cranfield University,Cranfield, Bedfordshire MK43 OAL, UK;

    Department of Power and Propulsion,School of Engineering,Cranfield University,Cranfield, Bedfordshire MK43 OAL, UK;

    Department of Power and Propulsion,School of Engineering,Cranfield University,Cranfield, Bedfordshire MK43 OAL, UK;

    Department of Power and Propulsion,School of Engineering,Cranfield University,Cranfield, Bedfordshire MK43 OAL, UK;

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