Corrections of dual-wire CTA data in turbulent swirling and non-swirling jets

被引:12
作者
Ahmed, Zahir U. [1 ]
Al-Abdeli, Yasir M. [1 ]
Guzzomi, Ferdinando G. [1 ]
机构
[1] Edith Cowan Univ, Sch Engn, Joondalup, WA 6027, Australia
关键词
Directional response; Velocity gradient; CIA (hotwire); Probes; Swirl; Turbulent; HOT-WIRE; BOUNDARY-LAYER; FLOW FIELD; X-PROBES; CALIBRATION; RECIRCULATION; PIPE;
D O I
10.1016/j.expthermflusci.2015.09.007
中图分类号
O414.1 [热力学];
学科分类号
摘要
Constant Temperature Anemometers provide opportunities for high data rate in relation to velocity and turbulence measurements in gaseous jets. The application of dual-wire probes in turbulent non-swirling and swirling jets is, however, challenging due to the need to correct for directional responses, velocity gradients and probe misalignments with the mean flow direction. Although swirl flow measurements have been conducted in the past using dual-wire probes, the literature does not include clear methodologies to compensate for both gradient effects and changes to the mean flow direction, particularly in flow regions with high shear and strong swirl over a range spanning (S = 0-1.05). As a result, this paper presents an overview of the methodology needed to apply dual-wire probes and accommodate changes to the resultant velocity (mean flow) angle (alpha) through orienting the probe (Psi). Results show that both velocity gradient effects as well as probe misalignments are strongly affected by radial location, Reynolds number and swirl intensity. This study demonstrates a setup methodology that orients CIA X-wire probes for improved data yield and accuracy for turbulent swirling jets. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:166 / 175
页数:10
相关论文
共 53 条
[1]   Impingement pressure characteristics of swirling and non-swirling turbulent jets [J].
Ahmed, Zahir U. ;
Al-Abdeli, Yasir M. ;
Guzzomi, Ferdinando G. .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2015, 68 :722-732
[2]   The effect of inflow conditions on the development of non-swirling versus swirling impinging turbulent jets [J].
Ahmed, Zahir U. ;
Al-Abdeli, Yasir M. ;
Matthews, Miccal T. .
COMPUTERS & FLUIDS, 2015, 118 :255-273
[3]  
Al-Abdeli Y. M., 2004, THESIS
[4]   Stability characteristics and flowfields of turbulent non-premixed swirling flames [J].
Al-Abdeli, YM ;
Masri, AR .
COMBUSTION THEORY AND MODELLING, 2003, 7 (04) :731-766
[5]   Recirculation and flowfield regimes of unconfined non-reacting swirling flows [J].
Al-Abdeli, YM ;
Masri, AR .
EXPERIMENTAL THERMAL AND FLUID SCIENCE, 2003, 27 (05) :655-665
[6]   Experimental study of an impinging jet with different swirl rates [J].
Alekseenko, Sergey V. ;
Bilsky, Artur V. ;
Dulin, Vladimir M. ;
Markovich, Dmitriy M. .
INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2007, 28 (06) :1340-1359
[7]   TURBULENCE MEASUREMENTS IN DECAYING SWIRL FLOW IN A PIPE [J].
ALGIFRI, AH ;
BHARDWAJ, RK ;
RAO, YVN .
APPLIED SCIENTIFIC RESEARCH, 1988, 45 (03) :233-250
[8]  
[Anonymous], 2011, APPL STAT PROBABILIT
[9]   APPLICATION OF NEW CLASSICAL PROBES IN SWIRL FLUID FLOW MEASUREMENTS [J].
Benisek, M. H. ;
Lecic, M. R. ;
Ilic, D. B. ;
Cantrak, D. S. .
EXPERIMENTAL TECHNIQUES, 2010, 34 (03) :74-81
[10]   EXPERIMENTS ON BEHAVIOR OF AN AXISYMMETRIC TURBULENT BOUNDARY-LAYER WITH A SUDDEN CIRCUMFERENTIAL STRAIN [J].
BISSONNETTE, LR ;
MELLOR, GL .
JOURNAL OF FLUID MECHANICS, 1974, 63 (APR3) :369-413