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Some Measurements in the Self Preserving Jet

Some Measurements in the Self Preserving Jet
Author: I. Wygnanski
Publisher:
Total Pages: 63
Release: 1968
Genre:
ISBN:

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The axisymmetric turbulent incompressible and isothermal jet was investigated by use of linearized constant temperature hot wire anemometers. It was established that the jet was truly self preserving some 70 diameters downstream of the nozzle and most of the measurements were made in excess of this distance. The quantities measured include mean velocity, turbulence stresses, intermittency, skewness and flatness factors, correlations, scales, low frequency spectra and convection velocity. The r.m.s. values of the various velocity fluctuations differ from those measured previously as a result of lack of self preservation and insufficient frequency range in the instrumentation of the previous investigations. It appears that Taylor's hypothesis is not applicable to this flow, but the use of convection velocity of the appropriate scale for the transformation from temporal to spatial quantities appears appropriate. The energy balance was calculated from the various measured quantities and the result is quite different from the recent measurements of Sami (1967) which were obtained twenty diameters downstream from the nozzle. In light of these measurements some previous hypotheses about the turbulent structure and the transport phenomena are discussed. Some of the quantities were obtained by two or more different methods and their relative merits and accuracy are assessed. (Author).


Experimental Heat Transfer, Fluid Mechanics and Thermodynamics 1993

Experimental Heat Transfer, Fluid Mechanics and Thermodynamics 1993
Author: M.D. Kelleher
Publisher: Elsevier
Total Pages: 1002
Release: 2012-12-02
Genre: Technology & Engineering
ISBN: 044459860X

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The papers contained in this volume reflect the ingenuity and originality of experimental work in the areas of fluid mechanics, heat transfer and thermodynamics. The contributors are drawn from 27 countries which indicates how well the worldwide scientific community is networked. The papers cover a broad spectrum from the experimental investigation of complex fundamental physical phenomena to the study of practical devices and applications. A uniform outline and method of presentation has been used for each paper.


Velocity Measurements in Confined Dual Coaxial Jets Behind an Axisymmetric Bluff Body: Isothermal and Combusting Flows

Velocity Measurements in Confined Dual Coaxial Jets Behind an Axisymmetric Bluff Body: Isothermal and Combusting Flows
Author:
Publisher:
Total Pages: 67
Release: 1981
Genre:
ISBN:

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Measurements were made of the axial component of the flowfield in an Air Force combustion tunnel facility at Wright-Patterson Air Force Base. The tunnel is characterized by a bluff body, centered in the airflow duct, through which fuel can flow. The annular air flow around the centerbody creates a recirculation zone in the wake behind the bluff body. The recirculating flow interacts with the fuel jet and five distinct regimes of operation are delineated. Radial and axial profiles of the flowfield were made in isothermal and combusting flows. The free-jet behavior is that anticipated from other studies. A distinction from previous workers' data is the report herein of the existence of distinct modes in the velocity probability density functions. With both annular and fuel jets flowing, measurements were made of the fuel and air stagnation points along the centerline, in both isothermal and combusting flows. (Author).


Temperature and Concentration Measurements on an Axisymmetric Jet and Flame

Temperature and Concentration Measurements on an Axisymmetric Jet and Flame
Author: Samuel Lederman
Publisher:
Total Pages: 46
Release: 1973
Genre:
ISBN:

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The application of Raman scattering to the determination of concentration profiles of a turbulent isothermal mixing jet is discussed. Temperature measurements in a flow field using the Raman scattering techniques are investigated. Problems involved in these measurements are discussed. Experimental specie concentration data obtained on an isothermal turbulent axisymmetric mixing jet are presented. Temperature profiles of an axisymmetric methane flame, using one of the Raman techniques, are obtained and discussed. Some problems concerning LDV and high frequency turbulence measurements are indicated. (Author).


Measurement, Analysis, and Modeling of Non-Isothermal Low-Velocity Displacement Ventilation Jets

Measurement, Analysis, and Modeling of Non-Isothermal Low-Velocity Displacement Ventilation Jets
Author: Laurent Magnier-Bergeron
Publisher:
Total Pages: 216
Release: 2016
Genre:
ISBN:

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Displacement Ventilation (DV) is an air distribution method recognized to enhance indoor air quality, while having a great potential for energy savings, due to stratification, higher supply air temperature and opportunity of free cooling. A frequent complaint associated with displacement ventilation is however the draft discomfort caused by the colder air movement at foot level, and the local discomfort due to an excessive temperature difference between head and ankle. Insufficient information is currently available regarding the variations of temperature and velocity inside a DV jet. Correlation models also need to be developed to report the variation of air speed in the jet. In this thesis, the DV jet is analyzed in depth through, first, experimental measurements and, then, the development of correlation models. Measurements are performed in an environmental chamber to study the DV jet coming from two different wall-mounted DV diffusers, for different supply conditions. The variations of air speed and temperature in the longitudinal, transversal, and horizontal planes are measured and analyzed. The thermal characteristics are discussed in terms of local thermal comfort. In the second part of the thesis, the experimental data are analyzed towards developing new models for the distribution of air speed and temperature in the air jets. A new mathematical model is proposed for the variation of air speed in the secondary zone of the jet, as well as a new model is suggested for the vertical air speed profile. The variation of the thickness of the DV jet is also studied. A new mathematical is model is proposed to account for the variation of minimal air temperature in the jet. The variations of air speed and temperature in the transversal direction are also discussed. Finally, the contributions are summarized and future work is proposed.