Blade Vibration Analysis for Radial Turbine Featuring a Multi-Channel Casing Design

被引:0
|
作者
Hassan, Ahmed Farid Ayad [1 ]
Mueller, Fabian F. [2 ]
Schatz, Markus [3 ]
Vogt, Damian M. M. [2 ]
机构
[1] Mil Tech Coll, Aerosp Dept, Cairo 11765, Egypt
[2] Univ Stuttgart, ITSM, Pfaffenwaldring 6, D-70569 Stuttgart, Germany
[3] Helmut Schmidt Univ, Univ Fed Armed Forces Hamburg, LSM, Holstenhofweg 85, D-22043 Hamburg, Germany
来源
关键词
computational fluid dynamics (CFD); turbine; blade vibration; fluid structure interaction;
D O I
10.1115/1.4056985
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Multi-channel casing (MC) shows promising results in controlling the performance of the radial turbines. It has neither movable parts nor complicated control mechanisms therefore it withstands higher thermal loads compared to the commonly used control systems such as the Variable Geometry Turbine (VGT). This advantage makes the MC applicable for a wider range of applications which is difficult to be covered with the common control systems. Replacing the traditional spiral casing with the MC affects the blade's vibration behavior. First, a 3D unsteady computational fluid dynamic (CFD) simulation is performed to investigate the influence of using MC on the turbine flow field for both full and partial admission operation. Second, a forced response analysis is performed based on the CFD result to calculate the blade vibration amplitude at different resonance crossings. Finally, an MC is manufactured and tested experimentally to validate the numerical study. The results show that ignoring the casing replacement effect on the blade vibration during the MC design phase led to a high vibration amplitude and consequently causes high cycle fatigue.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Forced Vibration Analysis of Wind Turbine Rotor Blade
    Kumar, V. R. Gireesh
    Sujatha, C.
    ADVANCES IN VIBRATION ENGINEERING, 2010, 9 (03): : 285 - 296
  • [42] Vibration Analysis of Steam Turbine Blade: A Finite Element Analysis
    Amini, Kourosh
    Heidari, Milad
    ADVANCED SCIENCE LETTERS, 2018, 24 (12) : 9026 - 9030
  • [43] Blade Excitation Alleviation of a Nozzleless Radial Turbine by Casing Treatment Based on Reduced-Order Model
    Yang, Mingyang
    Lu, Zhaokai
    Sato, Wataru
    Kuwata, Teppei
    Journal of Engineering for Gas Turbines and Power, 2025, 147 (08)
  • [44] Design of vibration signal's multi-channel integer period synchronous acquisition card
    Yang, S. (yangsx@zju.edu.cn), 1600, Nanjing University of Aeronautics an Astronautics (33):
  • [45] Development of animated aplication for effective analysis of multi-point, multi-channel vibration data
    Hirono, Emi
    Makihara, Shinichiro
    Fukuwa, Nobuo
    Tobita, Jun
    Mori, Masafumi
    Kojima, Hiroaki
    AIJ Journal of Technology and Design, 2008, 14 (28) : 423 - 428
  • [46] Simulation Analysis of Casing Vibration Response and Its Verification Under Blade-Casing Rubbing Fault
    Wang, H. F.
    Chen, G.
    Song, P. P.
    JOURNAL OF VIBRATION AND ACOUSTICS-TRANSACTIONS OF THE ASME, 2016, 138 (03):
  • [47] Analysis of Nodal Diameter Zero Blade Vibrations of a Radial Turbine
    Wunderlich, Markus
    Esper, Alexander
    Wirsum, Manfred
    Buchmann, Klaus
    INTERNATIONAL JOURNAL OF TURBOMACHINERY PROPULSION AND POWER, 2020, 5 (03)
  • [48] Optimized Blade Design of a Radial Implulse Turbine for Wave Energy Conversion
    Elatife, Khalid
    El Marjani, Abdelatif
    PROCEEDINGS OF 2015 3RD IEEE INTERNATIONAL RENEWABLE AND SUSTAINABLE ENERGY CONFERENCE (IRSEC'15), 2015, : 635 - 640
  • [49] Multi-Channel Multi-Variate Equalizer Design
    Ravikiran Rajagopal
    Lee Potter
    Multidimensional Systems and Signal Processing, 2003, 14 : 105 - 118
  • [50] Multi-channel multi-variate equalizer design
    Rajagopal, R
    Potter, L
    MULTIDIMENSIONAL SYSTEMS AND SIGNAL PROCESSING, 2003, 14 (1-3) : 105 - 118