首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.2; 20040614-17; Vienna(AT) >STUDY OF EROSION EFFECTS ON AN AXIAL FAN GLOBAL RANGE OF OPERATION
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STUDY OF EROSION EFFECTS ON AN AXIAL FAN GLOBAL RANGE OF OPERATION

机译:轴流风机在全球范围内的腐蚀作用研究

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摘要

Operating in sandy environments can cause significant erosion damage to gas turbine installations, particularly in the compressor system. This effect is a result of the ingestion of sand particles and their consequent abrasive impacts on blades. In order to better understand the mechanism of sand ingestion in an axial fan stage and the subsequent effects of erosion over its global range of operation, a methodology was developed and presented in this paper. This includes the computations of particle trajectories through an axial fan stage, erosion and blade profile deterioration, in addition to the aerodynamic performance degradation. The flow field at different operating conditions was solved with the CFD code TASCflow. The particle trajectories were computed using an in-house developed trajectory code, which was based on the lagrangian method. The effects of flow turbulence on particles were simulated using the eddy lifetime concept. The estimation of the aerodynamic performance degradation was based on a mean-line method involving Lieblein and Koch correlations, and an erosion fault model derived from blade profile deterioration. This global procedure was applied successfully to a contra-whirl axial fan, and can be generalized easily to other configurations of axial compressors.
机译:在多沙的环境中运行会严重腐蚀燃气轮机设备,特别是在压缩机系统中。这种效果是由于沙粒被摄入及其随后对叶片的磨蚀影响所致。为了更好地理解轴流风机阶段的砂粒吸入机制以及在其整体运行范围内侵蚀的后续影响,本文开发了一种方法。除空气动力性能下降外,这还包括通过轴流风扇级的颗粒轨迹计算,腐蚀和叶片轮廓退化。使用CFD代码TASCflow解决了不同工况下的流场。使用内部开发的基于拉格朗日方法的轨迹代码来计算粒子轨迹。使用涡流寿命概念模拟了湍流对颗粒的影响。空气动力学性能退化的估计基于包括利伯林和科赫相关性的均线方法,以及从叶片轮廓退化得出的腐蚀故障模型。该全局程序已成功应用于反涡旋轴流风机,并且可以轻松推广到其他配置的轴流压缩机。

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