Two-phase Gas-liquid Flow Dynamics: Part I. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels. Part Ii. Acoustic Velocity in Two-phase Flow PDF Download

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Two-phase Gas-liquid Flow Dynamics: Part I. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels. Part Ii. Acoustic Velocity in Two-phase Flow

Two-phase Gas-liquid Flow Dynamics: Part I. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels. Part Ii. Acoustic Velocity in Two-phase Flow PDF Author: S. William Gouse (Jr)
Publisher:
ISBN:
Category :
Languages : en
Pages : 121

Book Description
A natural and forced convection closed loop with three, parallel, vertical, transparent, heated channels with a constant pressure drop maintained across the heated channels, employing refrigerant 113 as the test fluid, was constructed and operated. Regions of uniform and oscillating flow were mapped for the following range of variables: (a) pressure level at the heated section inlet, 10-20 psig; (b) inlet subcooling to 90F; (c) mass flow rate per test section to 1200 1bm/hr; (d) uniform heat flux to 16,000 BTU/hr-sq ft. The state of the art in the measurement and prediction of the acoustic velocity in one and two-components two-phase mixtures and flows was reviewed and summarized. As the void fraction of a two-phase gas-liquid mixture increases continuously from zero to approximately 60 per cent, the propagation velocity of a pressure wave in the two-phase mixture decreases from its value in the liquid phase to a minimum and begins to rise. At the point where the liquid phase ceases to be continuous there can be a rapid rise in propagation velocity to a value approaching that in the gas phase alone. However, it was observed that in the range of void fractions, from 0.6 to 1.0, there is a range of propagation speeds which depends on the frequency of the propagating signal, the size distribution of discontinuous phase, the nature of the continuous phase, and the strength of the disturbance. (Author).

Two-phase Gas-liquid Flow Dynamics: Part I. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels. Part Ii. Acoustic Velocity in Two-phase Flow

Two-phase Gas-liquid Flow Dynamics: Part I. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels. Part Ii. Acoustic Velocity in Two-phase Flow PDF Author: S. William Gouse (Jr)
Publisher:
ISBN:
Category :
Languages : en
Pages : 121

Book Description
A natural and forced convection closed loop with three, parallel, vertical, transparent, heated channels with a constant pressure drop maintained across the heated channels, employing refrigerant 113 as the test fluid, was constructed and operated. Regions of uniform and oscillating flow were mapped for the following range of variables: (a) pressure level at the heated section inlet, 10-20 psig; (b) inlet subcooling to 90F; (c) mass flow rate per test section to 1200 1bm/hr; (d) uniform heat flux to 16,000 BTU/hr-sq ft. The state of the art in the measurement and prediction of the acoustic velocity in one and two-components two-phase mixtures and flows was reviewed and summarized. As the void fraction of a two-phase gas-liquid mixture increases continuously from zero to approximately 60 per cent, the propagation velocity of a pressure wave in the two-phase mixture decreases from its value in the liquid phase to a minimum and begins to rise. At the point where the liquid phase ceases to be continuous there can be a rapid rise in propagation velocity to a value approaching that in the gas phase alone. However, it was observed that in the range of void fractions, from 0.6 to 1.0, there is a range of propagation speeds which depends on the frequency of the propagating signal, the size distribution of discontinuous phase, the nature of the continuous phase, and the strength of the disturbance. (Author).

Two-phase Gas-liquid Flow Dynamics. Pt. 1. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels

Two-phase Gas-liquid Flow Dynamics. Pt. 1. Flow Oscillations in Transparent, Parallel, Vertical, Heated Channels PDF Author: Massachusetts Institute of Technology
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description


Scientific and Technical Aerospace Reports

Scientific and Technical Aerospace Reports PDF Author:
Publisher:
ISBN:
Category : Aeronautics
Languages : en
Pages : 456

Book Description
Lists citations with abstracts for aerospace related reports obtained from world wide sources and announces documents that have recently been entered into the NASA Scientific and Technical Information Database.

U.S. Government Research & Development Reports

U.S. Government Research & Development Reports PDF Author:
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 168

Book Description


Heat Transfer Science and Technology, 1988

Heat Transfer Science and Technology, 1988 PDF Author: Buxuan Wang
Publisher: Taylor & Francis
ISBN:
Category : Science
Languages : en
Pages : 866

Book Description
Presents the proceedings of the Second International Symposium on Heat Transfer (ISHT) Beijing, and reflects the importance of an international exchange of new ideas, and new achievements in the expanding field of heat transfer in the past three years.

An Index to the Two-phase Gas-liquid Flow Literature

An Index to the Two-phase Gas-liquid Flow Literature PDF Author: S. William Gouse
Publisher:
ISBN:
Category : Two-phase flow
Languages : en
Pages : 902

Book Description


Applied Mechanics Reviews

Applied Mechanics Reviews PDF Author:
Publisher:
ISBN:
Category : Mechanics, Applied
Languages : en
Pages : 616

Book Description


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Category : Aeronautics
Languages : en
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Two-Phase Gas-Liquid Flow in Pipes with Different Orientations

Two-Phase Gas-Liquid Flow in Pipes with Different Orientations PDF Author: Afshin J. Ghajar
Publisher: Springer Nature
ISBN: 3030416267
Category : Science
Languages : en
Pages : 136

Book Description
This book provides design engineers using gas-liquid two-phase flow in different industrial applications the necessary fundamental understanding of the two-phase flow variables. Two-phase flow literature reports a plethora of correlations for determination of flow patterns, void fraction, two- phase pressure drop and non-boiling heat transfer correlations. However, the validity of a majority of these correlations is restricted over a narrow range of two -phase flow conditions. Consequently, it is quite a challenging task for the end user to select an appropriate correlation/model for the type of two-phase flow under consideration. Selection of a correct correlation also requires some fundamental understanding of the two-phase flow physics and the underlying principles/assumptions/limitations associated with these correlations. Thus, it is of significant interest for a design engineer to have knowledge of the flow patterns and their transitions and their influence on two-phase flow variables. To address some of these issues and facilitate selection of appropriate two-phase flow models, this volume presents a succinct review of the flow patterns, void fraction, pressure drop and non-boiling heat transfer phenomenon and recommend some of the well scrutinized modeling techniques.

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Publisher:
ISBN:
Category : Government reports announcements & index
Languages : en
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Book Description