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2 edition of index to the two-phase gas-liquid flow literature found in the catalog.

index to the two-phase gas-liquid flow literature

S. William Gouse

index to the two-phase gas-liquid flow literature

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  • 27 Currently reading

Published by M.I.T. Press in Cambridge, Mass .
Written in English

    Subjects:
  • Two-phase flow -- Indexes

  • Edition Notes

    Originally published in 3 parts from May 1963 to Jan. 1966.

    Other titlesThe two-phase gas-liquid flow literature.
    Statement[by] S. William Gouse, Jr.
    SeriesM.I.T. report, no. 9, M.I.T. report ;, no. 9.
    Classifications
    LC ClassificationsZ5853.H9 G6
    The Physical Object
    Paginationviii, 867 p.
    Number of Pages867
    ID Numbers
    Open LibraryOL5537247M
    LC Control Number67014203
    OCLC/WorldCa555582

    Effect of Fluid Properties on Flow Patterns in Two-Phase Gas-Liquid Flow in literature, even a small inclination can cause an expansion of the stratified flow regime. In this regime two different types of waves can be identified, which retain the 2-D and K-H wave characteristics observed inCited by: Dong Wang (March 28th ). Gas-Liquid Two-Phase Flow Rate Measurements by Flow Division and Separation Method, Flow Measurement, Gustavo Urquiza Beltr&#;n and Laura L. Castro G&#;mez, IntechOpen, DOI: / Available from:Author: Dong Wang. Using numerical simulation method, under the adiabatic condition, this paper simulates the of the upstream gas liquid two phase flow in main tube of hydraulic diameter 1 mm T tube. Superficial gas velocity within ~30m/s and fluid velocity within ~5m/s, under simulated by two kinds of gas volume fraction, air-water flow diagram and the flow pattern transition boundary have been got from Author: Ze Jia Hua, Na Huang, Ju Gao. Two-phase Gas/Liquid-Solid Flow Modelling in 90° Bends and Its Effect on Erosion By M. R. Ansari, S. Mohammadi, ji Oskouei T arbiat Modares University Abstract - Sand particles present in the fluid flows extracted from oil wells causes many problems for oil and gas production companies.


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index to the two-phase gas-liquid flow literature by S. William Gouse Download PDF EPUB FB2

This index to the Two-Phase Gas-Liquid Flow literature represents an extensive search of the unclassified literature on certain types of two-phase gas-liquid flow phenomena and presents the results of this literature search in a useful form.

A total of 5, separate citations were listed and indexed. The total accumulated two-phase gas-liquid flow literature is now doubling every five years. An index to the two‐phase gas‐liquid flow literature, S.

William Gouse, Jr., M.I.T. Press, Massachusetts Institute of Technology, Cambridge, Massachusetts ().Author: H. Isbin. Genre/Form: Indexes: Additional Physical Format: Online version: Gouse, S.

William, Index to the two-phase gas-liquid flow literature. Cambridge, Mass., M.I.T. An Index to the Two-Phase Gas-Liquid Flow Literature [Gouse, S. William] on *FREE* shipping on qualifying offers. An Index to the Two-Phase Gas-Liquid Flow LiteratureCited by: This index to the Two-Phase Gas-Liquid Flow literature represents an extensive search of the unclassified literature on certain types of two-phase gas-liquid flow phenomena and presents the results of this literature search in a useful form.

A total of 5, separate citations were listed and indexed. Two-Phase Gas/Liquid Pipe Flow Ron Darby PhD, PE (or holdup) in the literature. Hughmark () slip correlation Either horizontal or vertical flow: where GL GL for Two-Phase Gas/Liquid Flow”, Proceedings of the Process Plant -Two-Phase Gas/Liquid Pipe Flow.

The expressions available for the two-phase gas-liquid viscosity are mostly of an empirical nature as a function of mass quality (x). The liquid and gas are presumed to be uniformly mixed due to the homogeneous flow.

The possible definitions for the viscosity Cited by: 9. In the normal healthy lung, clearance of airway secretions occurs by way of a complex process of mucociliary transport known as the 'mucociliary escalator'.

Summary This graduate text provides a unified treatment of the fundamental principles of two-phase flow and shows how to apply the principles to a variety of homogeneous mixture as well as separated liquid-liquid, gas-solid, liquid-solid, and gas-liquid flow problems, which may be.

Multiphase Flow Book • Edited by: Akimi Serizawa, Tohru Fukano and Jean Bataille Real-Time Cross-Sectional Averaged Void Fraction Measurements in Vertical Annulus Gas-Liquid Two-Phase Flow by Neutron Radiography and X-ray Tomography Techniques It is intended that this volume will serve as a major source of literature for.

A wide range of models have been developed for two-phase flow systems. These include: Homogeneous the homogeneous model, the two phases are assumed to be travelling at the same velocity in the channel and the flow is treated as being analogous to a single phase flow (see article on Multiphase Flow).

Separated flowthe two fluids are considered to be travelling at. Two-phase gas-liquid flows are expected to occur in many future space operations. Due to a lack of buoyancy in the microgravity environment, two-phase flows are known to behave differently than those in earth gravity.

Despite these concerns, little research has been conducted on microgravity two-phase flow and the current understanding is poor. Pressure drop in two-phase flow is a major design variable, governing the pumping power required to transport two-phase fluids and also governing the recirculation rate in natural circulation systems.

The conservation equations for two-phase flow are a subset of those for Multiphase Flow. Mucus transport speed induced by two-phase gas-liquid interaction was measured in the continuous two-phase annular flow tube models, and factors influencing the transport speed were assessed in conjunction with rheological properties of mucus.

The flow model was made with cm-ID glass tubes and positioned either vertically or by: This graduate text provides a unified treatment of the fundamental principles of two-phase flow and shows how to apply the principles to a variety of homogeneous mixture as well as separated liquid-liquid, gas-solid, liquid-solid, and gas-liquid flow problems, which may be steady or transient, laminar or chapter contains several sample problems, which illustrate the outlined 4/5(1).

Bubble and liquid flow characteristics of bubble-driven gas–liquid two-phase flows observed in various types of reactors in materials processing operations are introduced with many exercises. Heat and mass transfer from a solid body immersed in a molten metal bath is also by: Mucus transport by two-phase gas-liquid flow mechanism was investigated with in vitro flow models under asymmetric periodic airflow conditions with nine different liquid solutions with rheological properties similar to human sputum.

The flow model was made with cm-ID glass tube and positioned either vertically or by: Mist Flow – Vertical Tubes.

Mist flow is a flow regime of two-phase gas-liquid occurs at very high flow rates and very high flow conditions causes, that liquid film flowing on the channel wall is thinned by the shear of the gas core on the interface until it becomes unstable and is destroyed.

In fluid mechanics, two-phase flow is a flow of gas and liquid — a particular example of multiphase -phase flow can occur in various forms, such as flows transitioning from pure liquid to vapor as a result of external heating, separated flows, and dispersed two-phase flows where one phase is present in the form of particles, droplets, or bubbles in a continuous carrier phase (i.e.

Gas-Liquid Two-Phase Flow, Boiling and Condensation in Conventional, Mini and Micro Systems Table of Contents Chapter 1. Thermodynamic and Single-Phase Flow Fundamentals States of Matter and Phase Diagrams for Pure Substances Equilibrium States Metastable States Transport Equations and Closure Relations Single-Phase Multi-Component Mixtures Phase Diagrams for.

Internal two-phase FIV is significantly important to secure the reliability and integrity of the piping systems in power/processing systems that involve piping structures.

To date, there has been very few research performed on the subject of internal gas–liquid two-phase Cited by:   Depending upon the flow regime, the liquid in a two-phase flow system can be accelerated to velocities approaching or exceeding vapour velocities.

In some cases these velocities are higher than desirable for a process piping system. Such high velocities can cause a phenomenon known as “erosion corrosion” in equipment and piping systems.

In modeling gas-liquid two-phase flows, the concept of flow regimes has been widely used to characterize the global interfacial structure of the flows. Nearly all constitutive relations that provide closures to the interfacial transfers in two-phase flow models, such as the two-fluid model, are flow regime dependent.

This has motivated the development of simplified models of gas-liquid two-phase flow for control and estimation applications. This paper reviews the literature for such models with a focus on. A series of two-phase gas-liquid flow experiments were developed to study annular flows in microgravity using the NASA Lewis Learjet.

A test section was built to measure the liquid film thickness around the perimeter of the tube permitting the three dimensional nature of the gas-liquid interface to be observed. A second test section was used. Two-Phase Flow: Theory and Applications Gas-liquid two-phase flow is best described as the interactive motion of two different kinds of media.

Various models are available in literature to. Gas-liquid flow in inclined pipes was investigated to determine the erect of pipe inclination angle on liquid holdup and pressure loss. Correlations for liquid holdup and friction factor were developed for predicting pressure gradients for two-phase flow in pipes at all angles for many flow pressure gradients for two-phase flow in pipes at all angles for many flow conditions.

Flow Patterns of Liquid-Vapor (Gas) Two-Phase Flow Before introducing the flow patterns, it is useful to establish notations and to develop some fundamental concepts and relationships.

Concepts and Notations The vapor or holdup void fraction represents the time-averaged volumetric fraction of vapor in a two-phase mixture, i.e. @article{osti_, title = {Navigating the two-phase maze}, author = {Simpson, L.L.}, abstractNote = {This paper focuses on pressure drop and flow rate methods for two-phase mixtures in piping and pressure relief devices.

It presents methodology that will be incorporated into software to be issued with guidelines. Available correlations for the two-phase specific volume are compared and new. The traditional approach for two-phase flow prediction has been the empirical approach, which was based on the development of an empirical correlation from experimental data.

This book presents the recent approach, in which mathematical mechanistic models are developed, based on the physical phenomena, for the prediction of two-phase flow : $   A Simple Approach to Characterize Gas-Aqueous Liquid Two-phase Flow Configuration Based on Discrete Solid-Liquid Contact Electrification.

Sci. Rep. 5, Cited by: 3. sensors Article The Development of a Gas–Liquid Two-Phase Flow Sensor Applicable to CBM Wellbore Annulus Chuan Wu 1, Guojun Wen 2,*, Lei Han 2 and Xiaoming Wu 1 1 Faculty of Engineering, China University of Geosciences (Wuhan), WuhanChina; [email protected] (C.W.); [email protected] (X.W.).

We consider two substances under certain temperature and pressure one being in its liquid state while the other is in its gaseous state. In fact, most of the literature of two-phase flow of gas and liquid consider this case.

Some of these two-phase flow problems are discussed by: 1. Gas liquid two-phase flow pattern identification by ultrasonic echoes reflected from the inner wall of a interface shapes of gas–liquid two-phase flow. From a review of the literature, it can be concluded that although there has been great progress in the field of flow pat.

13 Two-phase liquid-liquid flow General Emulsion viscosity Phase inversion criteria Stratified flow friction modeling 14 Two-phase liquid-solid flow General about liquid-solid flow The building up of solids in the pipeline Minimum transport velocity.

15 Three-phase gas-liquid-liquid flow Introduction. Improper use of the overall heat transfer coefficient or heavy end characterization can lead to completely erroneous conclusions about the presence or absence of liquid, even to indicate as far as a pipeline will be handling dry gas when in reality the line will be in two phase gas – liquid flow.

This book is intended to be a basic reference on the theoretical foundation of the thermo-fluid dynamics of two-phase flow. In view of the increasing use of two or multiphase flow in many advanced engineering systems, it is important that engineers have a through understanding of the topic.

effects. Therefore, a detailed analysis of gas-liquid two-phase flows in large flow channels and the development of multidimensional two-fluid models of such flows are much needed. Information on steam-water two-phase flows in large diameter pipes (cm or larger) at elevated pressures is Size: KB.

Gas -liquid two-phase flow in pipes is a common occurrence in the petroleum industry production and transportation of oil and gas. Accurate prediction of the flow pattern, pressure drop and liquid holdup is imperative for the design of production, transport systems and for maintenance and operation of the downstream facilities.

Two-phase flow File Size: KB. ENGINEERING MODEL TO CALCULATE MASS FLOW RATE OF A TWO-PHASE SATURATED FLUID THROUGH AN INJECTOR ORIFICE by Brian J. Solomon, Master of Science Utah State University, Major Professor: Dr.

Stephen A. Whitmore Department: Mechanical and Aerospace Engineering An engineering model is developed to calculate mass ow rate of nitrous oxide, a. The traditional approach for two-phase flow prediction was based on the development of an empirical correlation from experimental data.

This book presents the recent approach, in which mathematical mechanistic models are developed, based on the physical phenomena, to 10/10(1).The hydrodynamic characteristics of gas–liquid two-phase flow can significantly affect the performance of gas–liquid–solid microreactors.

Using nitrobenzene hydrogenation as the reference heterogeneous catalytic reaction, the two-phase reacting flow behavior was visualized and characterized.

Distinct differe Reaction Engineering in ChinaAuthor: Hao Feng, Xun Zhu, Biao Zhang, Rong Chen, Qiang Liao, Dingding Ye, Jian Liu, Ming Liu, Gang Chen, Ku.The objectives of this tutorial are to briefly present the fundamentals of non-boiling heat transfer in two-phase gas-liquid flow in pipes, review the available non-boiling heat transfer data and correlations that exist in the open literature, and present an overview of the research that has been conducted at Oklahoma State University's Heat.