SlideShare uma empresa Scribd logo
1 de 2
Baixar para ler offline
Introduction to Multiphase Flow Modeling
learncax.com /blog/2012/05/21/multiphase-f low-modelingterminologies/
Ganesh Visavale
Terminologies:
The fundamental terminologies used in the study of multiphase flows are as follows:
Cont inuous phase or Primary phase:
This is basically the carrier fluid, that is
present in bulk.
Dispersed phase or Secondary
phase: This is the discrete phase which
is usually in the form of particles,
droplets, or bubbles. The secondary
phase may or may not have a distinct
velocity field i.e. it will at some times follow
the continuous phase or at times will have
its own velocity field and affect the
continuous phase flow.
Volume f ract ion:
+ Volume fraction of a dispersed phase: It is
defined as the ratio of volume of dispersed
phase to the volume of the medium or the total
volume. Mathematically represented by
Where del Vd is the volume of the dispersed
phase in volume del V .
Unlike a continuum, the volume fraction cannot
be defined at a point and is defined based on
the volume.
+ Volume fraction of a continuous phase: Similarly, defined as the ratio of volume of
continuous phase to the volume of the medium or the total volume. Mathematically
represented by
where del Vc is the volume of the continuous phase in the volume. By definition the sum of
the volume fraction must be unity i.e.
Densit ies: In multiphase we have two terms for densities, the bulk density and the
material density. The bulk density is defined as the mass of the dispersed phase per
unit volume of mixture, mathematically given by,
del Md mass of dispersed phase. This bulk density is related to the material density rho(d) by,
The sum of the bulk densities for the dispersed and continuous phases is the mixture density.
Velocit ies: There are generally two terms used to define velocities, the
superficial velocity and the phase velocity.
+ Superficial Velocities: It is mostly associated with pipe flow and is the mass flow rate, of
the respective phase divided by the pipe area A and material density. So in case of
dispersed phase this superficial velocity is given by:
+ Phase velocities: The phase velocity Ud is the actual velocity of the phase. The volume
fraction relates the phase velocity with the superficial velocity as follows:
The phase velocity or the bulk density, are generally defined for our convenience purpose
in study of multiphase flow and different from the actual velocity and density of the phase.
They are obtained by multiplying actual velocity or density with volume fraction.
Mass concent rat ion of dispersed phase: It is the ratio of the mass of dispersed
phase to that of the continuous phase in a mixture.
Qualit y: It is the measure of the quantity of dispersed phase in the medium (both the
dispersed and continuous phase).
Phase Loading: It is the ratio of mass flux of the dispersed phase to that of continuous
phase.
Disperse Flows: In such flows the phase loading of dispersed flows is comparatively
lower (by mass) than the continuous phase. The bulk of the flow is occupied by the
continuous phase and dominates the flow phenomena. In dispersed flow the particle
motion is mainly controlled by the fluid forces (like drag and lift).
Dense Flows: Such flows are generally associated with high phase loadings of dispersed
phase. Here the interparticle collisions play a dominant role in the flow field controlling the
overall particle motion. The dense flows are classified into two main categories namely,
+ Collision dominated: Collisions between the particles control the overall flow features.
+ Contact dominated: Continuous particle to particle contact controls the overall flow features.
St okes Number: It is a non- dimensional number, given by the ratio of particle (dispersed phase) relaxation
time to the characteristic time scale of the flow. Mathematically represented by:
+ Significance of Stokes Number:
If Stk , then particles follow the continuous phase flow closely.
If Stk> 1 , then dispersed phase particles will move independent of the continuous phase flow.
coming up… Fundamentals of Multiphase Flow Modeling
scrolling="no" frameborder="0" style="border:none; overflow:hidden;
width:100px; height:27px;" allowTransparency="true">
Share

Mais conteúdo relacionado

Mais procurados

Fluid mechanics notes
Fluid mechanics notesFluid mechanics notes
Fluid mechanics notes
shone john
 

Mais procurados (20)

fluid mechanics for mechanical engineering
fluid mechanics for mechanical engineeringfluid mechanics for mechanical engineering
fluid mechanics for mechanical engineering
 
Fluid Mechanics Course - Civil Engineering -Lec 02
Fluid Mechanics Course - Civil Engineering -Lec 02Fluid Mechanics Course - Civil Engineering -Lec 02
Fluid Mechanics Course - Civil Engineering -Lec 02
 
Fluid Mechanics Chapter 6. Boundary Layer Concept
Fluid Mechanics Chapter 6. Boundary Layer ConceptFluid Mechanics Chapter 6. Boundary Layer Concept
Fluid Mechanics Chapter 6. Boundary Layer Concept
 
Fluid Mechanics - Fluid Properties
Fluid Mechanics - Fluid PropertiesFluid Mechanics - Fluid Properties
Fluid Mechanics - Fluid Properties
 
Fluid mechanics - Motion of Fluid Particles and Stream
Fluid mechanics - Motion of Fluid Particles and StreamFluid mechanics - Motion of Fluid Particles and Stream
Fluid mechanics - Motion of Fluid Particles and Stream
 
Fluid mechanics notes
Fluid mechanics notesFluid mechanics notes
Fluid mechanics notes
 
Multiphase model
Multiphase modelMultiphase model
Multiphase model
 
Introduction to fluid mechanics
Introduction to fluid mechanicsIntroduction to fluid mechanics
Introduction to fluid mechanics
 
Ppt unit 2
Ppt unit 2Ppt unit 2
Ppt unit 2
 
Fluid Mechanics,Application,Properties,Priciples And Its Importance In Petrol...
Fluid Mechanics,Application,Properties,Priciples And Its Importance In Petrol...Fluid Mechanics,Application,Properties,Priciples And Its Importance In Petrol...
Fluid Mechanics,Application,Properties,Priciples And Its Importance In Petrol...
 
S3 Chapter 1 Introduction of Fluid
S3 Chapter 1 Introduction of FluidS3 Chapter 1 Introduction of Fluid
S3 Chapter 1 Introduction of Fluid
 
Unit i- properties of fluid
Unit i- properties of fluidUnit i- properties of fluid
Unit i- properties of fluid
 
Particle Technology- Fluid Flow in Porous Media
Particle Technology- Fluid Flow in Porous MediaParticle Technology- Fluid Flow in Porous Media
Particle Technology- Fluid Flow in Porous Media
 
2017 syllabus
2017 syllabus2017 syllabus
2017 syllabus
 
Fluid mechanics for chermical engineering students
Fluid mechanics  for chermical  engineering studentsFluid mechanics  for chermical  engineering students
Fluid mechanics for chermical engineering students
 
Mass transfer
Mass transferMass transfer
Mass transfer
 
5. fm 5 fluid flow co 2 adam
5. fm 5 fluid flow  co 2 adam5. fm 5 fluid flow  co 2 adam
5. fm 5 fluid flow co 2 adam
 
Fluid kinematics
Fluid kinematicsFluid kinematics
Fluid kinematics
 
Chapter 1-Introduction fluids Mechanics
Chapter 1-Introduction fluids MechanicsChapter 1-Introduction fluids Mechanics
Chapter 1-Introduction fluids Mechanics
 
Fluid Mechanics 2 ppt
Fluid Mechanics 2 pptFluid Mechanics 2 ppt
Fluid Mechanics 2 ppt
 

Semelhante a Introduction to Multiphase Flow Modeling

Summery of Suface and interfacial phenomenon and Rheology
Summery of Suface and interfacial phenomenon and RheologySummery of Suface and interfacial phenomenon and Rheology
Summery of Suface and interfacial phenomenon and Rheology
Shahadat Hossain
 
Tryggvason
TryggvasonTryggvason
Tryggvason
Ming Ma
 

Semelhante a Introduction to Multiphase Flow Modeling (20)

Review of basic Aerodynamics.pdf
Review of basic Aerodynamics.pdfReview of basic Aerodynamics.pdf
Review of basic Aerodynamics.pdf
 
Partical technology
Partical technologyPartical technology
Partical technology
 
01 multiphaseflows-fundamental definitions.pptx
01 multiphaseflows-fundamental definitions.pptx01 multiphaseflows-fundamental definitions.pptx
01 multiphaseflows-fundamental definitions.pptx
 
Van meeter equaiton
Van meeter equaitonVan meeter equaiton
Van meeter equaiton
 
Fluid flow phenomenon, prepared by Makhdoom ibad ullah hashmi
Fluid flow phenomenon, prepared by Makhdoom ibad ullah hashmiFluid flow phenomenon, prepared by Makhdoom ibad ullah hashmi
Fluid flow phenomenon, prepared by Makhdoom ibad ullah hashmi
 
9553317.ppt
9553317.ppt9553317.ppt
9553317.ppt
 
Rheology
RheologyRheology
Rheology
 
Motion of fluid particles and streams
Motion of fluid particles and streamsMotion of fluid particles and streams
Motion of fluid particles and streams
 
Theory for gas chromatography
Theory for gas chromatographyTheory for gas chromatography
Theory for gas chromatography
 
Mass transfer dr auroba
Mass transfer dr aurobaMass transfer dr auroba
Mass transfer dr auroba
 
Mass transfer 192
Mass transfer  192Mass transfer  192
Mass transfer 192
 
Summery of Suface and interfacial phenomenon and Rheology
Summery of Suface and interfacial phenomenon and RheologySummery of Suface and interfacial phenomenon and Rheology
Summery of Suface and interfacial phenomenon and Rheology
 
7 surface interfacial phenomena
7 surface interfacial phenomena7 surface interfacial phenomena
7 surface interfacial phenomena
 
Diffusion parameters liki
Diffusion parameters likiDiffusion parameters liki
Diffusion parameters liki
 
Van deemter equation
Van deemter equationVan deemter equation
Van deemter equation
 
Unit 3 introduction to fluid mechanics as per AKTU KME101T
Unit 3 introduction to fluid mechanics as per AKTU KME101TUnit 3 introduction to fluid mechanics as per AKTU KME101T
Unit 3 introduction to fluid mechanics as per AKTU KME101T
 
THEORIES OF GAS CHROMATOGRAPHY: RATE THEORY AND PLATE THEORY
THEORIES OF GAS CHROMATOGRAPHY: RATE THEORY AND PLATE THEORYTHEORIES OF GAS CHROMATOGRAPHY: RATE THEORY AND PLATE THEORY
THEORIES OF GAS CHROMATOGRAPHY: RATE THEORY AND PLATE THEORY
 
Tryggvason
TryggvasonTryggvason
Tryggvason
 
Fluids mechanics class 1 -Module 1
Fluids mechanics class 1 -Module 1Fluids mechanics class 1 -Module 1
Fluids mechanics class 1 -Module 1
 
cjce-2013-0561
cjce-2013-0561cjce-2013-0561
cjce-2013-0561
 

Mais de iMentor Education

Mais de iMentor Education (20)

What is Law ?
What is Law ?What is Law ?
What is Law ?
 
HONG KONG INTERNATIONAL CONVENTION FOR THE SAFE AND ENVIRONMENTALLY SOUND REC...
HONG KONG INTERNATIONAL CONVENTION FOR THE SAFE AND ENVIRONMENTALLY SOUND REC...HONG KONG INTERNATIONAL CONVENTION FOR THE SAFE AND ENVIRONMENTALLY SOUND REC...
HONG KONG INTERNATIONAL CONVENTION FOR THE SAFE AND ENVIRONMENTALLY SOUND REC...
 
Class 7 | NCERT | Mathematics | Exercise 2.2
Class 7 | NCERT | Mathematics | Exercise 2.2Class 7 | NCERT | Mathematics | Exercise 2.2
Class 7 | NCERT | Mathematics | Exercise 2.2
 
Class 7 | NCERT | Mathematics | Exercise 2.1
Class 7 | NCERT | Mathematics | Exercise 2.1Class 7 | NCERT | Mathematics | Exercise 2.1
Class 7 | NCERT | Mathematics | Exercise 2.1
 
THE HINDU MARRIAGE ACT, 1955
THE HINDU MARRIAGE ACT, 1955THE HINDU MARRIAGE ACT, 1955
THE HINDU MARRIAGE ACT, 1955
 
The Transfer of Property Act, 1882
The Transfer of Property Act, 1882The Transfer of Property Act, 1882
The Transfer of Property Act, 1882
 
The Indian Christian Marriage Act 1872
The Indian Christian Marriage Act 1872The Indian Christian Marriage Act 1872
The Indian Christian Marriage Act 1872
 
Industrial Employment Standing Orders Act, 1946
Industrial Employment Standing Orders Act, 1946Industrial Employment Standing Orders Act, 1946
Industrial Employment Standing Orders Act, 1946
 
Specific Relief Act 1963
Specific Relief Act 1963 Specific Relief Act 1963
Specific Relief Act 1963
 
Industrial Disputes Act
Industrial Disputes ActIndustrial Disputes Act
Industrial Disputes Act
 
Indian Penal Code 1860
Indian Penal Code 1860Indian Penal Code 1860
Indian Penal Code 1860
 
Wildlife Protection Act, 1972
Wildlife Protection Act, 1972Wildlife Protection Act, 1972
Wildlife Protection Act, 1972
 
Adding Consecutive Odd Numbers Starting from 1
Adding Consecutive Odd Numbers Starting from 1Adding Consecutive Odd Numbers Starting from 1
Adding Consecutive Odd Numbers Starting from 1
 
Adding Consecutive Numbers
Adding Consecutive NumbersAdding Consecutive Numbers
Adding Consecutive Numbers
 
Heron's Formula
Heron's FormulaHeron's Formula
Heron's Formula
 
Imbibition dynamics in interacting capillaries
Imbibition dynamics in interacting capillariesImbibition dynamics in interacting capillaries
Imbibition dynamics in interacting capillaries
 
Research Paper Writing
Research Paper WritingResearch Paper Writing
Research Paper Writing
 
Design for Single Reactions
Design for Single ReactionsDesign for Single Reactions
Design for Single Reactions
 
Single Ideal Reactors
Single Ideal ReactorsSingle Ideal Reactors
Single Ideal Reactors
 
Solid Catalyzed Reactions
Solid Catalyzed ReactionsSolid Catalyzed Reactions
Solid Catalyzed Reactions
 

Último

Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
KarakKing
 

Último (20)

80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
80 ĐỀ THI THỬ TUYỂN SINH TIẾNG ANH VÀO 10 SỞ GD – ĐT THÀNH PHỐ HỒ CHÍ MINH NĂ...
 
Single or Multiple melodic lines structure
Single or Multiple melodic lines structureSingle or Multiple melodic lines structure
Single or Multiple melodic lines structure
 
SOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning PresentationSOC 101 Demonstration of Learning Presentation
SOC 101 Demonstration of Learning Presentation
 
Holdier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdfHoldier Curriculum Vitae (April 2024).pdf
Holdier Curriculum Vitae (April 2024).pdf
 
Sociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning ExhibitSociology 101 Demonstration of Learning Exhibit
Sociology 101 Demonstration of Learning Exhibit
 
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptxHMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
HMCS Max Bernays Pre-Deployment Brief (May 2024).pptx
 
How to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptxHow to setup Pycharm environment for Odoo 17.pptx
How to setup Pycharm environment for Odoo 17.pptx
 
Interdisciplinary_Insights_Data_Collection_Methods.pptx
Interdisciplinary_Insights_Data_Collection_Methods.pptxInterdisciplinary_Insights_Data_Collection_Methods.pptx
Interdisciplinary_Insights_Data_Collection_Methods.pptx
 
Fostering Friendships - Enhancing Social Bonds in the Classroom
Fostering Friendships - Enhancing Social Bonds  in the ClassroomFostering Friendships - Enhancing Social Bonds  in the Classroom
Fostering Friendships - Enhancing Social Bonds in the Classroom
 
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
Sensory_Experience_and_Emotional_Resonance_in_Gabriel_Okaras_The_Piano_and_Th...
 
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdf
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdfUnit 3 Emotional Intelligence and Spiritual Intelligence.pdf
Unit 3 Emotional Intelligence and Spiritual Intelligence.pdf
 
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
2024-NATIONAL-LEARNING-CAMP-AND-OTHER.pptx
 
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptxBasic Civil Engineering first year Notes- Chapter 4 Building.pptx
Basic Civil Engineering first year Notes- Chapter 4 Building.pptx
 
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...Kodo Millet  PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
Kodo Millet PPT made by Ghanshyam bairwa college of Agriculture kumher bhara...
 
Towards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptxTowards a code of practice for AI in AT.pptx
Towards a code of practice for AI in AT.pptx
 
Understanding Accommodations and Modifications
Understanding  Accommodations and ModificationsUnderstanding  Accommodations and Modifications
Understanding Accommodations and Modifications
 
REMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptxREMIFENTANIL: An Ultra short acting opioid.pptx
REMIFENTANIL: An Ultra short acting opioid.pptx
 
Wellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptxWellbeing inclusion and digital dystopias.pptx
Wellbeing inclusion and digital dystopias.pptx
 
Salient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functionsSalient Features of India constitution especially power and functions
Salient Features of India constitution especially power and functions
 
Jamworks pilot and AI at Jisc (20/03/2024)
Jamworks pilot and AI at Jisc (20/03/2024)Jamworks pilot and AI at Jisc (20/03/2024)
Jamworks pilot and AI at Jisc (20/03/2024)
 

Introduction to Multiphase Flow Modeling

  • 1. Introduction to Multiphase Flow Modeling learncax.com /blog/2012/05/21/multiphase-f low-modelingterminologies/ Ganesh Visavale Terminologies: The fundamental terminologies used in the study of multiphase flows are as follows: Cont inuous phase or Primary phase: This is basically the carrier fluid, that is present in bulk. Dispersed phase or Secondary phase: This is the discrete phase which is usually in the form of particles, droplets, or bubbles. The secondary phase may or may not have a distinct velocity field i.e. it will at some times follow the continuous phase or at times will have its own velocity field and affect the continuous phase flow. Volume f ract ion: + Volume fraction of a dispersed phase: It is defined as the ratio of volume of dispersed phase to the volume of the medium or the total volume. Mathematically represented by Where del Vd is the volume of the dispersed phase in volume del V . Unlike a continuum, the volume fraction cannot be defined at a point and is defined based on the volume. + Volume fraction of a continuous phase: Similarly, defined as the ratio of volume of continuous phase to the volume of the medium or the total volume. Mathematically represented by where del Vc is the volume of the continuous phase in the volume. By definition the sum of the volume fraction must be unity i.e. Densit ies: In multiphase we have two terms for densities, the bulk density and the material density. The bulk density is defined as the mass of the dispersed phase per unit volume of mixture, mathematically given by, del Md mass of dispersed phase. This bulk density is related to the material density rho(d) by, The sum of the bulk densities for the dispersed and continuous phases is the mixture density. Velocit ies: There are generally two terms used to define velocities, the superficial velocity and the phase velocity. + Superficial Velocities: It is mostly associated with pipe flow and is the mass flow rate, of the respective phase divided by the pipe area A and material density. So in case of dispersed phase this superficial velocity is given by: + Phase velocities: The phase velocity Ud is the actual velocity of the phase. The volume fraction relates the phase velocity with the superficial velocity as follows: The phase velocity or the bulk density, are generally defined for our convenience purpose in study of multiphase flow and different from the actual velocity and density of the phase. They are obtained by multiplying actual velocity or density with volume fraction.
  • 2. Mass concent rat ion of dispersed phase: It is the ratio of the mass of dispersed phase to that of the continuous phase in a mixture. Qualit y: It is the measure of the quantity of dispersed phase in the medium (both the dispersed and continuous phase). Phase Loading: It is the ratio of mass flux of the dispersed phase to that of continuous phase. Disperse Flows: In such flows the phase loading of dispersed flows is comparatively lower (by mass) than the continuous phase. The bulk of the flow is occupied by the continuous phase and dominates the flow phenomena. In dispersed flow the particle motion is mainly controlled by the fluid forces (like drag and lift). Dense Flows: Such flows are generally associated with high phase loadings of dispersed phase. Here the interparticle collisions play a dominant role in the flow field controlling the overall particle motion. The dense flows are classified into two main categories namely, + Collision dominated: Collisions between the particles control the overall flow features. + Contact dominated: Continuous particle to particle contact controls the overall flow features. St okes Number: It is a non- dimensional number, given by the ratio of particle (dispersed phase) relaxation time to the characteristic time scale of the flow. Mathematically represented by: + Significance of Stokes Number: If Stk , then particles follow the continuous phase flow closely. If Stk> 1 , then dispersed phase particles will move independent of the continuous phase flow. coming up… Fundamentals of Multiphase Flow Modeling scrolling="no" frameborder="0" style="border:none; overflow:hidden; width:100px; height:27px;" allowTransparency="true"> Share