SlideShare a Scribd company logo
1 of 36
Download to read offline
Prepared by:
Group 5
The Solvent & Surfactant Models
KhaledAl Shater
Mohamed Sherif Mahrous
Ramez Maher Aziz
Ahmed Kamal Khalil
George Ashraf
HazemAL Nazer
Hameda Abd-Elmawla Mahdi
Agenda
 Introduction
 The Solvent Model
 Objectives of the Solvent Model
 Applications of the Solvent Model
 Todd & Longstaff Model
 DataTreatment for Using the Solvent Model
 The Surfactant Model
 Introduction & Application
 Surfactant Distribution
 DataTreatment for Using the Surfactant Model
Introduction
Flooding
Miscible
The Solvent
Model
Immiscible
The Surfactant
Model
The Solvent Model
The Solvent Model
Objectives of the Solvent Model
 The aim of this chapter is to enable modeling of reservoir
recovery mechanisms in which injected fluids are miscible
with the hydrocarbons in the reservoir.
 A miscible displacement has the advantage over immiscible
displacements such as water flooding, of enabling very high
recoveries.An area swept by a miscible fluid typically leaves a
very small residual oil saturation.
 The ECLIPSE solvent extension allows you to model gas
injection projects without going to the complexity and
expense of using a compositional model
 In Eclipse, the solvent extension implements theTodd and
Longstaff empirical model for miscible floods.
Applications of the Solvent Model
 The solvent model is used in any scheme in which the aim is to
enhance the reservoir sweep by using a miscible injection fluid.
Examples of solvent schemes are listed below:
1. High pressure dry gas processes, in which miscible flow conditions
between the gas and the oil are found at the gas-oil contact .
2. A solvent such as LPG or propane may be injected as a‘slug’ to be
followed by an extended period of lean gas injection.The slug fluid
is miscible with both the gas and oil.
3. Certain non-hydrocarbon gases such as carbon dioxide produce
miscible displacement of oil at pressures above a threshold value.
4. All-liquid miscible displacements by fluids such as alcohol,
normally injected as a slug between the in-place oil and the injected
chase water.
Todd & Longstaff Model
 In Eclipse, the solvent extension implements theTodd and Longstaff
empirical model for miscible floods.
 The model classifies the reservoir into 3 possible miscibility combinations:
1. In regions of the reservoir containing only solvent and reservoir oil (possibly
containing dissolved gas) the solvent and reservoir oil components are
assumed to be miscible in all proportions and consequently only one
hydrocarbon phase exists in the reservoir.The relative permeability
requirements of the model are those for a two phase system
(water/hydrocarbon).
2. In regions of the reservoir containing only oil and reservoir gas, the gas and
oil components will be immiscible and will behave in a traditional black oil
manner.
3. In regions containing both dry gas and solvent, an intermediate behavior is
assumed to occur, resulting in an immiscible/miscible transition region.
Todd & Longstaff Mixing Parameter ω
 The model introduces an empirical parameter, ω, whose value lies between 0
and 1, to represent the size of the dispersed zone in each grid cell.The value of
ω thus controls the degree of fluid mixing within each grid cell.
 A value of ω = 1 models the case when the size of the dispersed zone is much
greater than a typical grid cell size and the hydrocarbon components can be
considered to be fully mixed in each cell.
 A value of ω = 0 models the effect of a negligibly thin dispersed zone between
the gas and oil components, and the miscible components should then have the
viscosity and density values of the pure components. In practical applications an
intermediate value of ω would be needed to model incomplete mixing of the
miscible components.
 An intermediate value of ω results in a continuous solvent saturation increase
behind the solvent front.Todd and Longstaff accounted for the effects of viscous
fingering in 2D studies by setting ω = 2 /3 independently of mobility ratio. For
field scale simulations they suggested setting ω = 1 /3 . However, in general
history matching applications, the mixing parameter may be regarded as a useful
history matching variable to account for any reservoir process inadequately
modeled.
Data Treatment for Using the Solvent Model
 The main differences between using the black oil simulator
without the solvent model and using it with the solvent
model are:
i. Phases present.
ii. Relative permeability data treatment.
iii. PVT data treatment.
I. Phases Present
 To initiate the Solvent model, the following keywords must
be added to RUNSPEC section:
II. Relative Permeability Data Treatment
Relative permeability data treatment depends on whether the
displacement in the grids concerned is:
1. Fully miscible
2. Fully immiscible
3. Transition between miscible and immiscible regimes
1. In case of fully miscible:
In regions where solvent is displacing oil and the reservoir gas
saturation is small, the hydrocarbon displacement is miscible.
However, the 2-phase character of the water/hydrocarbon
displacement needs to be taken into account.The relative
permeabilities are given by:
2. In case of fully immiscible:
In the usual black-oil model the relative permeabilities for the
3 phases water, oil and gas are specified as follows:
2. In case of fully Immiscible:
When two gas components are present, the assumption is made
that the total relative permeability of the gas phase is a function
of the total gas saturation,
Then the relative permeability of either gas component is taken
as a function of the local solvent fraction within the gas phase,
3. In case of Transition between
miscible and immiscible:
The transition algorithm has two steps:
1. Scale the relative permeability end points by the miscibility
function. For example, the residual oil saturation is
2. Calculate the miscible and immiscible relative
permeabilities, scaling for the new end points.Then the
relative permeability is again an interpolation between the
two using the miscibility function:
III. PVT Data Treatment
The PVT data treatment is made for:
1. Viscosity
2. Density
1. Viscosity data treatment:
The following form is suggested byTodd and Longstaff for the
effective oil and solvent viscosities to be used in an immiscible
simulator.
1. Viscosity data treatment:
The mixture viscosities μmos , μmsg and μum are defined
using the 1/4th-power fluid mixing rule, as follows:
2. Density data treatment:
The effective oil and solvent densities (ρo eff , ρs eff , ρg eff )
are now computed from the effective saturation fractions and
the pure component densities (ρo , ρs , ρg ) using the
following formulae:
2. Density data treatment:
The effective saturation fractions are calculated from:
The Surfactant Model
The Surfactant Model
Introduction & Application
 Most large oil fields are now produced with water-flooding
to increase recovery oil, but there’s a large volume of
unrecovered oil.
 The remaining oil can be divided into two classes:
o Residual oil to the water flood
o Oil bypassed by the water flood
 A surfactant flood is a tertiary recovery mechanism aimed at
reducing the residual oil saturation in water swept zones
 The oil becomes immobile because of the surface tension
between oil and water; the water pressure alone is unable to
overcome the high capillary pressure required to move oil
out of very small pore volumes.
 A surfactant reduces the surface tension, hence reduces
capillary pressure and allows water to displace extra oil.
Introduction & Application
The surfactant Model
 To modelThe surfactant, we need to calculate:
 Its distribution at each grid block
 Its effect on:
 Water PVT data (Viscosity of water-surfactant mixture).
 SCAL data (Capillary pressure, Relative permeability,Wettability).
Surfactant Distribution
 The surfactant is assumed to exist only in the water phase not
as a separate phase.
 The user inputs the concentration of surfactant in the
injection stream of each well.
 The distribution of injected surfactant is modeled by solving
a conservation equation for surfactant within the water
phase.
Water PVT properties
 The surfactant modifies the viscosity of the pure or salted
water.
 The surfactant viscosity is inputted as a function of surfactant
concentration.
 The water-surfactant solution viscosity calculated by:
Water PVT properties
 If the Brine option is active, it’s calculated as:
 Where:
SCAL data
 The Surfactant effects various SCAL data like:
Capillary pressure, Relative permeability,Wettability
 To Study its effect we need to input tables of water-oil
surface tension as a function of surfactant concentration in
the water using (keyword SURFACT)
Calculation of the capillary number
 The capillary number the ratio of viscous forces to capillary
forces.The capillary number is calculated by:
The Relative Permeability model
 The Relative Permeability model is essentially a transition
from immiscible relative permeability curves at low capillary
number to miscible relative permeability curves at high
capillary number.You supply a table that describes the
transition as a function of log10(capillary number).
 The relative permeability used at a value of the miscibility
function between the two extremes
The Relative Permeability model
Capillary pressure
 The water oil capillary pressure will reduce as the
concentration of surfactant increases and hence decreases the
residual oil saturation.
 The oil water capillary pressure is calculated by:
Treatment of adsorption
 The tendency of the surfactant to be adsorbed by the rock
will influence the success or failure of a surfactant flood
 If the adsorption is too high, then large quantities of
surfactant will be required to produce a small quantity of
additional oil.
 The quantity adsorbed is a function of the surrounding
surfactant concentration.
 To model it,The user is required to supply an adsorption
isotherm as a function of surfactant concentration
Treatment of adsorption
 The quantity of surfactant adsorbed on to the rock is given
by: Matrix density
List of References:
1. EclipseTechnical Description Manuel, Chapters 62 & 64.
2. Todd, M.R. Longstaff,W.J, 1972. The Development,Testing,
and Application Of a Numerical Simulator for Predicting Miscible
Flood Performance. J. Pet.Technol, 24(6): 874-882
Thank You

More Related Content

What's hot

Classification of reservoirs
Classification of reservoirsClassification of reservoirs
Classification of reservoirsFertiglobe
 
Relative permeability presentation
Relative permeability presentationRelative permeability presentation
Relative permeability presentationM petro
 
431816062-IPR-and-FIPR-pdf.pdf
431816062-IPR-and-FIPR-pdf.pdf431816062-IPR-and-FIPR-pdf.pdf
431816062-IPR-and-FIPR-pdf.pdfMohanadHussien2
 
ADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptx
ADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptxADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptx
ADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptxRAOULMartialTIENTCHE
 
4 fluidos empacadores
4   fluidos empacadores4   fluidos empacadores
4 fluidos empacadoresmautre5
 
Fundamentals of Petroleum Engineering Module 3
Fundamentals of Petroleum Engineering Module 3Fundamentals of Petroleum Engineering Module 3
Fundamentals of Petroleum Engineering Module 3Aijaz Ali Mooro
 
Fluidization and fluidized bed
Fluidization and fluidized bedFluidization and fluidized bed
Fluidization and fluidized bedRahat Inayat Ali
 
Stimulation methods
Stimulation methodsStimulation methods
Stimulation methodsSYED NAWAZ
 
Flash distallation by khalid
Flash distallation by khalidFlash distallation by khalid
Flash distallation by khalidKhalid Nawaz
 
in situ combustion
in situ combustionin situ combustion
in situ combustionLuckySaini23
 
Reservoir evaluation method 101
Reservoir evaluation method 101Reservoir evaluation method 101
Reservoir evaluation method 101bachhva
 
Days 3d porosity , permeability, fluid saturation
Days 3d porosity , permeability, fluid saturationDays 3d porosity , permeability, fluid saturation
Days 3d porosity , permeability, fluid saturationDr. Arzu Javadova
 
Reservoir fluid flow types
Reservoir fluid flow typesReservoir fluid flow types
Reservoir fluid flow typesNouh Almandhari
 
Applied Reservoir Simulation - Initialization.pdf
Applied Reservoir  Simulation - Initialization.pdfApplied Reservoir  Simulation - Initialization.pdf
Applied Reservoir Simulation - Initialization.pdfMehdi Zallaghi
 

What's hot (20)

Classification of reservoirs
Classification of reservoirsClassification of reservoirs
Classification of reservoirs
 
Oil Properties
Oil PropertiesOil Properties
Oil Properties
 
Reservoir rock & fluid
Reservoir rock & fluidReservoir rock & fluid
Reservoir rock & fluid
 
Relative permeability presentation
Relative permeability presentationRelative permeability presentation
Relative permeability presentation
 
431816062-IPR-and-FIPR-pdf.pdf
431816062-IPR-and-FIPR-pdf.pdf431816062-IPR-and-FIPR-pdf.pdf
431816062-IPR-and-FIPR-pdf.pdf
 
Permeability
Permeability Permeability
Permeability
 
ADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptx
ADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptxADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptx
ADVANCED ENHANCE OIL RECOVERY. LECTURE NOTES.pptx
 
4 fluidos empacadores
4   fluidos empacadores4   fluidos empacadores
4 fluidos empacadores
 
Fundamentals of Petroleum Engineering Module 3
Fundamentals of Petroleum Engineering Module 3Fundamentals of Petroleum Engineering Module 3
Fundamentals of Petroleum Engineering Module 3
 
Fluidization and fluidized bed
Fluidization and fluidized bedFluidization and fluidized bed
Fluidization and fluidized bed
 
Stimulation methods
Stimulation methodsStimulation methods
Stimulation methods
 
Asp flooding
Asp floodingAsp flooding
Asp flooding
 
Flash distallation by khalid
Flash distallation by khalidFlash distallation by khalid
Flash distallation by khalid
 
Pervaporation
PervaporationPervaporation
Pervaporation
 
in situ combustion
in situ combustionin situ combustion
in situ combustion
 
Reservoir evaluation method 101
Reservoir evaluation method 101Reservoir evaluation method 101
Reservoir evaluation method 101
 
Days 3d porosity , permeability, fluid saturation
Days 3d porosity , permeability, fluid saturationDays 3d porosity , permeability, fluid saturation
Days 3d porosity , permeability, fluid saturation
 
Membrane separation technology
Membrane separation technologyMembrane separation technology
Membrane separation technology
 
Reservoir fluid flow types
Reservoir fluid flow typesReservoir fluid flow types
Reservoir fluid flow types
 
Applied Reservoir Simulation - Initialization.pdf
Applied Reservoir  Simulation - Initialization.pdfApplied Reservoir  Simulation - Initialization.pdf
Applied Reservoir Simulation - Initialization.pdf
 

Viewers also liked

SURFUCTANT BY ZAGROS A UMAR
SURFUCTANT  BY ZAGROS A UMARSURFUCTANT  BY ZAGROS A UMAR
SURFUCTANT BY ZAGROS A UMARzagros faqeanay
 
Ambra industrial waste water
Ambra industrial waste waterAmbra industrial waste water
Ambra industrial waste waterAndreas Thoma
 
Surfactant, biosynthesis and its regulation
Surfactant, biosynthesis and its regulationSurfactant, biosynthesis and its regulation
Surfactant, biosynthesis and its regulationNox Lumos
 
Surfactant august 10, 071
Surfactant august 10, 071Surfactant august 10, 071
Surfactant august 10, 071Rakesh Khandal
 
Ventilator induced surfactant dysfunction
Ventilator induced surfactant dysfunctionVentilator induced surfactant dysfunction
Ventilator induced surfactant dysfunctionDr.Mahmoud Abbas
 
Sonali pathophysiology of pulm surfactant and moa of steroids
Sonali   pathophysiology of pulm surfactant and moa of steroidsSonali   pathophysiology of pulm surfactant and moa of steroids
Sonali pathophysiology of pulm surfactant and moa of steroidsSonali Paradhi Mhatre
 
Surfactant in RDS
Surfactant in RDSSurfactant in RDS
Surfactant in RDSirock0722
 
Green Surfactants Powerpoint New Italy
Green Surfactants Powerpoint New ItalyGreen Surfactants Powerpoint New Italy
Green Surfactants Powerpoint New ItalyColonial Chemical
 
Respi functional anatomy
Respi functional anatomyRespi functional anatomy
Respi functional anatomyRodolfo Rafael
 
#Oges EOR Webinar #Panel Presentation
#Oges EOR Webinar #Panel Presentation#Oges EOR Webinar #Panel Presentation
#Oges EOR Webinar #Panel PresentationOges G(Pte) Ltd
 
Surfactant Replacememt Therapy
Surfactant Replacememt Therapy Surfactant Replacememt Therapy
Surfactant Replacememt Therapy Mohammed Saeed
 
Surfactant admin
Surfactant adminSurfactant admin
Surfactant adminlmcartagena
 
Minimally invasive surfactant therapy in preterm
Minimally invasive  surfactant therapy in pretermMinimally invasive  surfactant therapy in preterm
Minimally invasive surfactant therapy in pretermdrsadhana86
 
Physiology of the respiratory system
Physiology of the respiratory systemPhysiology of the respiratory system
Physiology of the respiratory systemGunJee Gj
 
Physiology of transition period in a neonate (Respiratory System)
Physiology of transition period in a neonate (Respiratory System)Physiology of transition period in a neonate (Respiratory System)
Physiology of transition period in a neonate (Respiratory System)Dr.S.N.Bhagirath ..
 
Fundamental of surface tension
Fundamental of surface tensionFundamental of surface tension
Fundamental of surface tensionscientificgear
 
Thickening with cationic surfactants
Thickening with cationic surfactantsThickening with cationic surfactants
Thickening with cationic surfactants Sorel Muresan
 

Viewers also liked (20)

SURFUCTANT BY ZAGROS A UMAR
SURFUCTANT  BY ZAGROS A UMARSURFUCTANT  BY ZAGROS A UMAR
SURFUCTANT BY ZAGROS A UMAR
 
Ambra industrial waste water
Ambra industrial waste waterAmbra industrial waste water
Ambra industrial waste water
 
Surfactant, biosynthesis and its regulation
Surfactant, biosynthesis and its regulationSurfactant, biosynthesis and its regulation
Surfactant, biosynthesis and its regulation
 
Surfactant august 10, 071
Surfactant august 10, 071Surfactant august 10, 071
Surfactant august 10, 071
 
Ventilator induced surfactant dysfunction
Ventilator induced surfactant dysfunctionVentilator induced surfactant dysfunction
Ventilator induced surfactant dysfunction
 
Sonali pathophysiology of pulm surfactant and moa of steroids
Sonali   pathophysiology of pulm surfactant and moa of steroidsSonali   pathophysiology of pulm surfactant and moa of steroids
Sonali pathophysiology of pulm surfactant and moa of steroids
 
Surfactant in RDS
Surfactant in RDSSurfactant in RDS
Surfactant in RDS
 
Green Surfactants Powerpoint New Italy
Green Surfactants Powerpoint New ItalyGreen Surfactants Powerpoint New Italy
Green Surfactants Powerpoint New Italy
 
Respi functional anatomy
Respi functional anatomyRespi functional anatomy
Respi functional anatomy
 
#Oges EOR Webinar #Panel Presentation
#Oges EOR Webinar #Panel Presentation#Oges EOR Webinar #Panel Presentation
#Oges EOR Webinar #Panel Presentation
 
Surfactant
SurfactantSurfactant
Surfactant
 
Surf Beyond Rds
Surf Beyond RdsSurf Beyond Rds
Surf Beyond Rds
 
Surfactant Replacememt Therapy
Surfactant Replacememt Therapy Surfactant Replacememt Therapy
Surfactant Replacememt Therapy
 
Surfactant admin
Surfactant adminSurfactant admin
Surfactant admin
 
Minimally invasive surfactant therapy in preterm
Minimally invasive  surfactant therapy in pretermMinimally invasive  surfactant therapy in preterm
Minimally invasive surfactant therapy in preterm
 
Physiology of the respiratory system
Physiology of the respiratory systemPhysiology of the respiratory system
Physiology of the respiratory system
 
Physiology of transition period in a neonate (Respiratory System)
Physiology of transition period in a neonate (Respiratory System)Physiology of transition period in a neonate (Respiratory System)
Physiology of transition period in a neonate (Respiratory System)
 
Fundamental of surface tension
Fundamental of surface tensionFundamental of surface tension
Fundamental of surface tension
 
Surfactant therapy
Surfactant therapySurfactant therapy
Surfactant therapy
 
Thickening with cationic surfactants
Thickening with cationic surfactantsThickening with cationic surfactants
Thickening with cationic surfactants
 

Similar to The solvent & surfactant model

Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...
Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...
Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...Student
 
Microemulsion by atul mangukiya
Microemulsion by atul mangukiyaMicroemulsion by atul mangukiya
Microemulsion by atul mangukiyaatulmangukiya
 
Estimating the Amount of Moisture Content in Crude Oil Samples
Estimating the Amount of Moisture Content in Crude Oil SamplesEstimating the Amount of Moisture Content in Crude Oil Samples
Estimating the Amount of Moisture Content in Crude Oil SamplesIRJESJOURNAL
 
Surfactant and polyphasic system
Surfactant and polyphasic systemSurfactant and polyphasic system
Surfactant and polyphasic systemSagar Savale
 
RSCE Paper - Napasindayao, Tan, Bacani.10.11.08
RSCE Paper - Napasindayao, Tan, Bacani.10.11.08RSCE Paper - Napasindayao, Tan, Bacani.10.11.08
RSCE Paper - Napasindayao, Tan, Bacani.10.11.08Lea Chua Tan
 
Dc lab 5
Dc lab 5Dc lab 5
Dc lab 5ykhan60
 
416018-1R0 Oil-Water Sampling Mixer (002)
416018-1R0 Oil-Water Sampling Mixer (002)416018-1R0 Oil-Water Sampling Mixer (002)
416018-1R0 Oil-Water Sampling Mixer (002)Diego Paiva
 
Gas-Ratios-Short-Overview.pdf
Gas-Ratios-Short-Overview.pdfGas-Ratios-Short-Overview.pdf
Gas-Ratios-Short-Overview.pdfMigueldc77
 
Effect of operating conditions on the solvent recovery by the method of evapo
Effect of operating conditions on the solvent recovery by the method of evapoEffect of operating conditions on the solvent recovery by the method of evapo
Effect of operating conditions on the solvent recovery by the method of evapoIAEME Publication
 

Similar to The solvent & surfactant model (20)

Co2 flooding.pdf
Co2 flooding.pdfCo2 flooding.pdf
Co2 flooding.pdf
 
Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...
Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...
Standard Test Method for Kinematic Viscosity of Transparent and Opaque Liquid...
 
Microemulsion by atul mangukiya
Microemulsion by atul mangukiyaMicroemulsion by atul mangukiya
Microemulsion by atul mangukiya
 
20100022074
2010002207420100022074
20100022074
 
Estimating the Amount of Moisture Content in Crude Oil Samples
Estimating the Amount of Moisture Content in Crude Oil SamplesEstimating the Amount of Moisture Content in Crude Oil Samples
Estimating the Amount of Moisture Content in Crude Oil Samples
 
A Basic Primer on Liquid-Liquid Extraction
A Basic Primer on Liquid-Liquid ExtractionA Basic Primer on Liquid-Liquid Extraction
A Basic Primer on Liquid-Liquid Extraction
 
H05913540
H05913540H05913540
H05913540
 
Surfactant and polyphasic system
Surfactant and polyphasic systemSurfactant and polyphasic system
Surfactant and polyphasic system
 
RSCE Paper - Napasindayao, Tan, Bacani.10.11.08
RSCE Paper - Napasindayao, Tan, Bacani.10.11.08RSCE Paper - Napasindayao, Tan, Bacani.10.11.08
RSCE Paper - Napasindayao, Tan, Bacani.10.11.08
 
Enhance oil recovery review
Enhance oil recovery reviewEnhance oil recovery review
Enhance oil recovery review
 
Dc lab 5
Dc lab 5Dc lab 5
Dc lab 5
 
Oil and Gas Reservoir Engineering
Oil and Gas Reservoir EngineeringOil and Gas Reservoir Engineering
Oil and Gas Reservoir Engineering
 
416018-1R0 Oil-Water Sampling Mixer (002)
416018-1R0 Oil-Water Sampling Mixer (002)416018-1R0 Oil-Water Sampling Mixer (002)
416018-1R0 Oil-Water Sampling Mixer (002)
 
Gas-Ratios-Short-Overview.pdf
Gas-Ratios-Short-Overview.pdfGas-Ratios-Short-Overview.pdf
Gas-Ratios-Short-Overview.pdf
 
Effect of operating conditions on the solvent recovery by the method of evapo
Effect of operating conditions on the solvent recovery by the method of evapoEffect of operating conditions on the solvent recovery by the method of evapo
Effect of operating conditions on the solvent recovery by the method of evapo
 
Reservoir mechanics
Reservoir mechanicsReservoir mechanics
Reservoir mechanics
 
smedds
smeddssmedds
smedds
 
Enhanced oil-recovery
Enhanced oil-recoveryEnhanced oil-recovery
Enhanced oil-recovery
 
Microemulsion
MicroemulsionMicroemulsion
Microemulsion
 
5 eor chemical-methods,
5 eor chemical-methods,5 eor chemical-methods,
5 eor chemical-methods,
 

More from Ramez Abdalla, M.Sc

Introduction to fluid flow through a porous medium
Introduction to fluid flow through a porous medium Introduction to fluid flow through a porous medium
Introduction to fluid flow through a porous medium Ramez Abdalla, M.Sc
 
Introduction to Reservoir Fluids Courese
Introduction to Reservoir Fluids CoureseIntroduction to Reservoir Fluids Courese
Introduction to Reservoir Fluids CoureseRamez Abdalla, M.Sc
 
AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...
AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...
AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...Ramez Abdalla, M.Sc
 
Artificial Intelligence Applications in Petroleum Engineering - Part I
Artificial Intelligence Applications in Petroleum Engineering - Part IArtificial Intelligence Applications in Petroleum Engineering - Part I
Artificial Intelligence Applications in Petroleum Engineering - Part IRamez Abdalla, M.Sc
 
Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)
Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)
Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)Ramez Abdalla, M.Sc
 
Managing Downhole Failures in a Rod Pumped Well
Managing Downhole Failures in a Rod Pumped Well Managing Downhole Failures in a Rod Pumped Well
Managing Downhole Failures in a Rod Pumped Well Ramez Abdalla, M.Sc
 

More from Ramez Abdalla, M.Sc (7)

Introduction to fluid flow through a porous medium
Introduction to fluid flow through a porous medium Introduction to fluid flow through a porous medium
Introduction to fluid flow through a porous medium
 
Introduction to Reservoir Fluids Courese
Introduction to Reservoir Fluids CoureseIntroduction to Reservoir Fluids Courese
Introduction to Reservoir Fluids Courese
 
AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...
AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...
AUTOMATIC WELL FAILURE ANALYSIS FOR THE SUCKER ROD PUMPING SYSTEMS USING MACH...
 
Artificial Intelligence Applications in Petroleum Engineering - Part I
Artificial Intelligence Applications in Petroleum Engineering - Part IArtificial Intelligence Applications in Petroleum Engineering - Part I
Artificial Intelligence Applications in Petroleum Engineering - Part I
 
Born To Lead
Born To LeadBorn To Lead
Born To Lead
 
Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)
Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)
Diagnosis of Rod Pump Downhole Problems using Artificial Neural Networks (ANN)
 
Managing Downhole Failures in a Rod Pumped Well
Managing Downhole Failures in a Rod Pumped Well Managing Downhole Failures in a Rod Pumped Well
Managing Downhole Failures in a Rod Pumped Well
 

Recently uploaded

Glass Ceramics: Processing and Properties
Glass Ceramics: Processing and PropertiesGlass Ceramics: Processing and Properties
Glass Ceramics: Processing and PropertiesPrabhanshu Chaturvedi
 
UNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular ConduitsUNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular Conduitsrknatarajan
 
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptxBSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptxfenichawla
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...ranjana rawat
 
Coefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxCoefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxAsutosh Ranjan
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations120cr0395
 
UNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and workingUNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and workingrknatarajan
 
Introduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptxIntroduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptxupamatechverse
 
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...ranjana rawat
 
AKTU Computer Networks notes --- Unit 3.pdf
AKTU Computer Networks notes ---  Unit 3.pdfAKTU Computer Networks notes ---  Unit 3.pdf
AKTU Computer Networks notes --- Unit 3.pdfankushspencer015
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxupamatechverse
 
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service NashikCall Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service NashikCall Girls in Nagpur High Profile
 
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...ranjana rawat
 
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...roncy bisnoi
 
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Dr.Costas Sachpazis
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escortsranjana rawat
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performancesivaprakash250
 
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur High Profile
 

Recently uploaded (20)

DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINEDJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
DJARUM4D - SLOT GACOR ONLINE | SLOT DEMO ONLINE
 
Glass Ceramics: Processing and Properties
Glass Ceramics: Processing and PropertiesGlass Ceramics: Processing and Properties
Glass Ceramics: Processing and Properties
 
UNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular ConduitsUNIT-II FMM-Flow Through Circular Conduits
UNIT-II FMM-Flow Through Circular Conduits
 
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptxBSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
BSides Seattle 2024 - Stopping Ethan Hunt From Taking Your Data.pptx
 
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
(SHREYA) Chakan Call Girls Just Call 7001035870 [ Cash on Delivery ] Pune Esc...
 
Coefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptxCoefficient of Thermal Expansion and their Importance.pptx
Coefficient of Thermal Expansion and their Importance.pptx
 
Extrusion Processes and Their Limitations
Extrusion Processes and Their LimitationsExtrusion Processes and Their Limitations
Extrusion Processes and Their Limitations
 
Roadmap to Membership of RICS - Pathways and Routes
Roadmap to Membership of RICS - Pathways and RoutesRoadmap to Membership of RICS - Pathways and Routes
Roadmap to Membership of RICS - Pathways and Routes
 
UNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and workingUNIT-V FMM.HYDRAULIC TURBINE - Construction and working
UNIT-V FMM.HYDRAULIC TURBINE - Construction and working
 
Introduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptxIntroduction and different types of Ethernet.pptx
Introduction and different types of Ethernet.pptx
 
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(ANJALI) Dange Chowk Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
 
AKTU Computer Networks notes --- Unit 3.pdf
AKTU Computer Networks notes ---  Unit 3.pdfAKTU Computer Networks notes ---  Unit 3.pdf
AKTU Computer Networks notes --- Unit 3.pdf
 
Introduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptxIntroduction to IEEE STANDARDS and its different types.pptx
Introduction to IEEE STANDARDS and its different types.pptx
 
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service NashikCall Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
Call Girls Service Nashik Vaishnavi 7001305949 Independent Escort Service Nashik
 
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
(PRIYA) Rajgurunagar Call Girls Just Call 7001035870 [ Cash on Delivery ] Pun...
 
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
Call Girls Pimpri Chinchwad Call Me 7737669865 Budget Friendly No Advance Boo...
 
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
Sheet Pile Wall Design and Construction: A Practical Guide for Civil Engineer...
 
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur EscortsHigh Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
High Profile Call Girls Nagpur Isha Call 7001035870 Meet With Nagpur Escorts
 
UNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its PerformanceUNIT - IV - Air Compressors and its Performance
UNIT - IV - Air Compressors and its Performance
 
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur EscortsCall Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
Call Girls in Nagpur Suman Call 7001035870 Meet With Nagpur Escorts
 

The solvent & surfactant model

  • 1. Prepared by: Group 5 The Solvent & Surfactant Models KhaledAl Shater Mohamed Sherif Mahrous Ramez Maher Aziz Ahmed Kamal Khalil George Ashraf HazemAL Nazer Hameda Abd-Elmawla Mahdi
  • 2. Agenda  Introduction  The Solvent Model  Objectives of the Solvent Model  Applications of the Solvent Model  Todd & Longstaff Model  DataTreatment for Using the Solvent Model  The Surfactant Model  Introduction & Application  Surfactant Distribution  DataTreatment for Using the Surfactant Model
  • 4. The Solvent Model The Solvent Model
  • 5. Objectives of the Solvent Model  The aim of this chapter is to enable modeling of reservoir recovery mechanisms in which injected fluids are miscible with the hydrocarbons in the reservoir.  A miscible displacement has the advantage over immiscible displacements such as water flooding, of enabling very high recoveries.An area swept by a miscible fluid typically leaves a very small residual oil saturation.  The ECLIPSE solvent extension allows you to model gas injection projects without going to the complexity and expense of using a compositional model  In Eclipse, the solvent extension implements theTodd and Longstaff empirical model for miscible floods.
  • 6. Applications of the Solvent Model  The solvent model is used in any scheme in which the aim is to enhance the reservoir sweep by using a miscible injection fluid. Examples of solvent schemes are listed below: 1. High pressure dry gas processes, in which miscible flow conditions between the gas and the oil are found at the gas-oil contact . 2. A solvent such as LPG or propane may be injected as a‘slug’ to be followed by an extended period of lean gas injection.The slug fluid is miscible with both the gas and oil. 3. Certain non-hydrocarbon gases such as carbon dioxide produce miscible displacement of oil at pressures above a threshold value. 4. All-liquid miscible displacements by fluids such as alcohol, normally injected as a slug between the in-place oil and the injected chase water.
  • 7. Todd & Longstaff Model  In Eclipse, the solvent extension implements theTodd and Longstaff empirical model for miscible floods.  The model classifies the reservoir into 3 possible miscibility combinations: 1. In regions of the reservoir containing only solvent and reservoir oil (possibly containing dissolved gas) the solvent and reservoir oil components are assumed to be miscible in all proportions and consequently only one hydrocarbon phase exists in the reservoir.The relative permeability requirements of the model are those for a two phase system (water/hydrocarbon). 2. In regions of the reservoir containing only oil and reservoir gas, the gas and oil components will be immiscible and will behave in a traditional black oil manner. 3. In regions containing both dry gas and solvent, an intermediate behavior is assumed to occur, resulting in an immiscible/miscible transition region.
  • 8. Todd & Longstaff Mixing Parameter ω  The model introduces an empirical parameter, ω, whose value lies between 0 and 1, to represent the size of the dispersed zone in each grid cell.The value of ω thus controls the degree of fluid mixing within each grid cell.  A value of ω = 1 models the case when the size of the dispersed zone is much greater than a typical grid cell size and the hydrocarbon components can be considered to be fully mixed in each cell.  A value of ω = 0 models the effect of a negligibly thin dispersed zone between the gas and oil components, and the miscible components should then have the viscosity and density values of the pure components. In practical applications an intermediate value of ω would be needed to model incomplete mixing of the miscible components.  An intermediate value of ω results in a continuous solvent saturation increase behind the solvent front.Todd and Longstaff accounted for the effects of viscous fingering in 2D studies by setting ω = 2 /3 independently of mobility ratio. For field scale simulations they suggested setting ω = 1 /3 . However, in general history matching applications, the mixing parameter may be regarded as a useful history matching variable to account for any reservoir process inadequately modeled.
  • 9. Data Treatment for Using the Solvent Model  The main differences between using the black oil simulator without the solvent model and using it with the solvent model are: i. Phases present. ii. Relative permeability data treatment. iii. PVT data treatment.
  • 10. I. Phases Present  To initiate the Solvent model, the following keywords must be added to RUNSPEC section:
  • 11. II. Relative Permeability Data Treatment Relative permeability data treatment depends on whether the displacement in the grids concerned is: 1. Fully miscible 2. Fully immiscible 3. Transition between miscible and immiscible regimes
  • 12. 1. In case of fully miscible: In regions where solvent is displacing oil and the reservoir gas saturation is small, the hydrocarbon displacement is miscible. However, the 2-phase character of the water/hydrocarbon displacement needs to be taken into account.The relative permeabilities are given by:
  • 13. 2. In case of fully immiscible: In the usual black-oil model the relative permeabilities for the 3 phases water, oil and gas are specified as follows:
  • 14. 2. In case of fully Immiscible: When two gas components are present, the assumption is made that the total relative permeability of the gas phase is a function of the total gas saturation, Then the relative permeability of either gas component is taken as a function of the local solvent fraction within the gas phase,
  • 15. 3. In case of Transition between miscible and immiscible: The transition algorithm has two steps: 1. Scale the relative permeability end points by the miscibility function. For example, the residual oil saturation is 2. Calculate the miscible and immiscible relative permeabilities, scaling for the new end points.Then the relative permeability is again an interpolation between the two using the miscibility function:
  • 16. III. PVT Data Treatment The PVT data treatment is made for: 1. Viscosity 2. Density
  • 17. 1. Viscosity data treatment: The following form is suggested byTodd and Longstaff for the effective oil and solvent viscosities to be used in an immiscible simulator.
  • 18. 1. Viscosity data treatment: The mixture viscosities μmos , μmsg and μum are defined using the 1/4th-power fluid mixing rule, as follows:
  • 19. 2. Density data treatment: The effective oil and solvent densities (ρo eff , ρs eff , ρg eff ) are now computed from the effective saturation fractions and the pure component densities (ρo , ρs , ρg ) using the following formulae:
  • 20. 2. Density data treatment: The effective saturation fractions are calculated from:
  • 21. The Surfactant Model The Surfactant Model
  • 22. Introduction & Application  Most large oil fields are now produced with water-flooding to increase recovery oil, but there’s a large volume of unrecovered oil.  The remaining oil can be divided into two classes: o Residual oil to the water flood o Oil bypassed by the water flood  A surfactant flood is a tertiary recovery mechanism aimed at reducing the residual oil saturation in water swept zones
  • 23.  The oil becomes immobile because of the surface tension between oil and water; the water pressure alone is unable to overcome the high capillary pressure required to move oil out of very small pore volumes.  A surfactant reduces the surface tension, hence reduces capillary pressure and allows water to displace extra oil. Introduction & Application
  • 24. The surfactant Model  To modelThe surfactant, we need to calculate:  Its distribution at each grid block  Its effect on:  Water PVT data (Viscosity of water-surfactant mixture).  SCAL data (Capillary pressure, Relative permeability,Wettability).
  • 25. Surfactant Distribution  The surfactant is assumed to exist only in the water phase not as a separate phase.  The user inputs the concentration of surfactant in the injection stream of each well.  The distribution of injected surfactant is modeled by solving a conservation equation for surfactant within the water phase.
  • 26. Water PVT properties  The surfactant modifies the viscosity of the pure or salted water.  The surfactant viscosity is inputted as a function of surfactant concentration.  The water-surfactant solution viscosity calculated by:
  • 27. Water PVT properties  If the Brine option is active, it’s calculated as:  Where:
  • 28. SCAL data  The Surfactant effects various SCAL data like: Capillary pressure, Relative permeability,Wettability  To Study its effect we need to input tables of water-oil surface tension as a function of surfactant concentration in the water using (keyword SURFACT)
  • 29. Calculation of the capillary number  The capillary number the ratio of viscous forces to capillary forces.The capillary number is calculated by:
  • 30. The Relative Permeability model  The Relative Permeability model is essentially a transition from immiscible relative permeability curves at low capillary number to miscible relative permeability curves at high capillary number.You supply a table that describes the transition as a function of log10(capillary number).  The relative permeability used at a value of the miscibility function between the two extremes
  • 32. Capillary pressure  The water oil capillary pressure will reduce as the concentration of surfactant increases and hence decreases the residual oil saturation.  The oil water capillary pressure is calculated by:
  • 33. Treatment of adsorption  The tendency of the surfactant to be adsorbed by the rock will influence the success or failure of a surfactant flood  If the adsorption is too high, then large quantities of surfactant will be required to produce a small quantity of additional oil.  The quantity adsorbed is a function of the surrounding surfactant concentration.  To model it,The user is required to supply an adsorption isotherm as a function of surfactant concentration
  • 34. Treatment of adsorption  The quantity of surfactant adsorbed on to the rock is given by: Matrix density
  • 35. List of References: 1. EclipseTechnical Description Manuel, Chapters 62 & 64. 2. Todd, M.R. Longstaff,W.J, 1972. The Development,Testing, and Application Of a Numerical Simulator for Predicting Miscible Flood Performance. J. Pet.Technol, 24(6): 874-882