On the development and application of the fast-response aerodynamic probe system in turbomachines -: Part 1:: The measurement system

被引:25
|
作者
Kupferschmied, P [1 ]
Köppel, P [1 ]
Roduner, C [1 ]
Gyarmathy, G [1 ]
机构
[1] ETH Zurich, Swiss Fed Inst Technol, Inst Energy Technol, Turbomachinery Lab, CH-8092 Zurich, Switzerland
来源
关键词
D O I
10.1115/1.1303702
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
This contribution gives an overview of the current state, performance, and limitations of the fast-response aerodynamic probe measurement system developed at the Turbomachinery Lab of the ETH Zurich. In particular the following topics are addressed: . Probe technology: Miniature probes with tip diameter ranging from 0.84 to 1.80 mm tone-sensor and three-sensor probes, respectively) have been developed. New technologies derived from microelectronics and micromechanics have been used to achieve an adequate packaging of the microsensor chips used. Both the sensor packaging and the sensor calibration (time-independent and time-dependent) are crucial issues for the DC accuracy of arty measurement. . Aerodynamic probe calibration: The methods used for the sensor calibration and the aerodynamic probe calibration, the pertinent automated test facilities, and the processing of the output data are briefly presented. Since these miniature probes are also capable of measuring the mean flow temperature, aspects related to the effective recovery factor and the self-heating of the probe tip are treated and some recommendations related to sensor selection are given. . Measurement system and data, evaluation: The early measurement chain described in Gossweiler et al. (1995) has evolved into the fast-response aerodynamic probe system. This automatic system incorporates dedicated measurement concepts for a higher accuracy and a more efficient operation in terms of time and failures. An overview of the data evaluation process is given. The fast-response aerodynamic probe system has been tested in real-sized turbomachines under industrial conditions within the temperature limits of 140 degreesC imposed by the sensor technology (axial-flow turbofan compressor, axial-flow turbine, centrifugal compressor). These applications confirmed the potential of the system and encouraged its further development. Now, the system is routinely used in the facilities of the Turbomachinery Lab and in occasional measurement campaigns in other laboratories. Part 2 of this contribution (Roduner et al.) will focus on the application of the fast-response aerodynamic probe system in a transonic centrifugal compressor of the ETH Turbomachinery Laboratory, while Part 3 (Koppel et al.) treats more sophisticated data analysis methods. [S0889-504X(00)01003-5].
引用
收藏
页码:505 / 516
页数:12
相关论文
共 50 条
  • [41] Global Workpiece Positioning System (GWPS) part 1: Concept and development of a laser probe based system
    Wu, CY
    Neal, GL
    De Meter, EC
    Trethewey, MW
    Rao, SB
    JOURNAL OF MANUFACTURING SYSTEMS, 1999, 18 (06) : 431 - 446
  • [42] THE DEVELOPMENT AND APPLICATION OF A FAST-RESPONSE DC-COUPLED FLAME IONIZATION CURRENT SENSOR
    HU, Z
    LAKER, JR
    MASTORAKOS, E
    VAFIDIS, C
    XU, HM
    EXPERIMENTS IN FLUIDS, 1993, 14 (05) : 316 - 320
  • [43] Development of a fast-response system with integrated calibration for high-resolution mapping of dissolved methane concentration in surface waters
    Dugan, Jesse T.
    Weber, Thomas
    Kessler, John D.
    LIMNOLOGY AND OCEANOGRAPHY-METHODS, 2024, 22 (05): : 321 - 332
  • [44] FAST-RESPONSE THERMAL IMAGING-SYSTEM WITH A 50-ELEMENT RADIATION DETECTOR
    IVANOVA, RN
    PECHKIN, BA
    BLYUDNIKOV, LM
    KARAPETYAN, KS
    KREMEN, NV
    KOZHENKOV, VV
    LEONENKO, LM
    RUDAKAS, PP
    SOVIET JOURNAL OF OPTICAL TECHNOLOGY, 1977, 44 (04): : 204 - 205
  • [45] On the use of fast-response pressure transducers in a common-rail diesel injection system
    Amirante, R.
    Catalano, L. A.
    Dadone, A.
    Lombardo, V.
    Proceedings of the 8th Biennial Conference on Engineering Systems Design and Analysis, Vol 4, 2006, : 517 - 525
  • [46] FAST-RESPONSE SYSTEM FOR SIGNAL ACQUISITION AND PROCESSING IN ELECTROTHERMAL ATOMIC-ABSORPTION SPECTROMETRY
    ALLEN, E
    JACKSON, KW
    ANALYTICA CHIMICA ACTA, 1987, 192 (02) : 355 - 359
  • [47] Development of a very fast spectral response measurement system for silicon thin film modules
    Rodriguez, J. A.
    Vetter, M.
    Fortes, M.
    Alberte, C.
    Otero, P.
    PROCEEDINGS OF THE 2013 SPANISH CONFERENCE ON ELECTRON DEVICES (CDE 2013), 2013, : 369 - 372
  • [48] Fast scanning pneumatic-driven electrostatic probe measurement system
    Song, M.
    Ling, B.L.
    Wan, B.N.
    Zhang, X.D.
    Meng, Y.D.
    Gu, X.M.
    Li, Z.X.
    Hejubian Yu Dengliziti Wuli/Nuclear Fusion and Plasma Physics, 2001, 21 (01):
  • [49] Development of Fast Scanning Microscopic XAFS Measurement System
    Tsuji, T.
    Uruga, T.
    Nitta, K.
    Kawamura, N.
    Mizumaki, M.
    Suzuki, M.
    Sekizawa, O.
    Ishiguro, N.
    Tada, M.
    Ohashi, H.
    Yamazaki, H.
    Yumoto, H.
    Koyama, T.
    Senba, Y.
    Takeuchi, T.
    Terada, Y.
    Nariyama, N.
    Takeshita, K.
    Fujiwara, A.
    Goto, S.
    Yamamoto, M.
    Takata, M.
    Ishikawa, T.
    15TH INTERNATIONAL CONFERENCE ON X-RAY ABSORPTION FINE STRUCTURE (XAFS15), 2013, 430
  • [50] A fast-response fluorescent probe for hypochlorous acid detection and its application in exogenous and endogenous HOCl imaging of living cells
    Jiang, Yin
    Zheng, Guansheng
    Cai, Ning
    Zhang, Huatang
    Tan, Yi
    Huang, Mengjiao
    He, Yonghe
    He, Jun
    Sun, Hongyan
    CHEMICAL COMMUNICATIONS, 2017, 53 (91) : 12349 - 12352