Javascript must be enabled to continue!
Experimental Investigation of Biopolymer Rheology and Injectivity in Carbonates
View through CrossRef
Abstract
Polymer flooding is a mature chemical enhanced oil recovery (CEOR) technology with over forty years of laboratory- and field-scale applications. Nevertheless, polymers exhibit poor performance in carbonates due to their complex nature of mixed-to-oil wettability, high temperature, high salinity, and heterogeneity with low permeability. The main objective of this study is to experimentally evaluate the performance of a biopolymer (Scleroglucan) in carbonates under harsh conditions of temperature and salinity. This experimental investigation includes polymer rheological studies as well as polymer injectivity tests. Rheological studies were performed on the biopolymer samples to measure the polymer viscosity as a function of concentration, shear rate, salinity, and temperature. Injectivity characteristics of this biopolymer were also examined through corefloods using high permeability carbonate outcrops. The injectivity tests consisted of two stages of water pre-flush and polymer injection. These tests were conducted using high salinity formation water (167,000 ppm) and seawater (43,000 ppm) at both room (25 °C) and high temperature (90 °C) conditions.
The rheological tests showed that the biopolymer has a high viscosifying power and it exhibits a shear-thinning behavior that is more prevalent at higher polymer concentrations. Also, a pronounced effect was observed for water salinity on both polymer filterability and polymer injectivity. The biopolymer exhibited better filterability at the high temperature as opposed to the room temperature. From the injectivity tests, the shear-thinning behavior of this biopolymer in the porous media was confirmed as the resistance factor decreased with increasing the flow rate applied. The potential biopolymer showed good injectivity at both the room and the high temperatures. This study provides further insight into the performance of this biopolymer in carbonate reservoirs and encourages further application under harsh conditions of salinity and temperature.
Title: Experimental Investigation of Biopolymer Rheology and Injectivity in Carbonates
Description:
Abstract
Polymer flooding is a mature chemical enhanced oil recovery (CEOR) technology with over forty years of laboratory- and field-scale applications.
Nevertheless, polymers exhibit poor performance in carbonates due to their complex nature of mixed-to-oil wettability, high temperature, high salinity, and heterogeneity with low permeability.
The main objective of this study is to experimentally evaluate the performance of a biopolymer (Scleroglucan) in carbonates under harsh conditions of temperature and salinity.
This experimental investigation includes polymer rheological studies as well as polymer injectivity tests.
Rheological studies were performed on the biopolymer samples to measure the polymer viscosity as a function of concentration, shear rate, salinity, and temperature.
Injectivity characteristics of this biopolymer were also examined through corefloods using high permeability carbonate outcrops.
The injectivity tests consisted of two stages of water pre-flush and polymer injection.
These tests were conducted using high salinity formation water (167,000 ppm) and seawater (43,000 ppm) at both room (25 °C) and high temperature (90 °C) conditions.
The rheological tests showed that the biopolymer has a high viscosifying power and it exhibits a shear-thinning behavior that is more prevalent at higher polymer concentrations.
Also, a pronounced effect was observed for water salinity on both polymer filterability and polymer injectivity.
The biopolymer exhibited better filterability at the high temperature as opposed to the room temperature.
From the injectivity tests, the shear-thinning behavior of this biopolymer in the porous media was confirmed as the resistance factor decreased with increasing the flow rate applied.
The potential biopolymer showed good injectivity at both the room and the high temperatures.
This study provides further insight into the performance of this biopolymer in carbonate reservoirs and encourages further application under harsh conditions of salinity and temperature.
Related Results
Rheology and Injectivity Studies on Scleroglucan Biopolymer for Carbonates under Harsh Conditions
Rheology and Injectivity Studies on Scleroglucan Biopolymer for Carbonates under Harsh Conditions
Summary
Polymer flooding is a mature chemical enhanced oil recovery (EOR) technology with more than 40 years of laboratory- and field-scale applications. Nevertheles...
Well-History-Based Prediction of Injectivity Decline (Accounting for Oil-Water Mobility Variation During Waterflooding)
Well-History-Based Prediction of Injectivity Decline (Accounting for Oil-Water Mobility Variation During Waterflooding)
Abstract
Injectivity decline during sea/produced water injection is a wide spread phenomena in offshore and onshore waterflood projects. It happens due to capture of...
Injectivity Monitoring & Evolution for Water Injectors in a Deepwater Turbidite Field
Injectivity Monitoring & Evolution for Water Injectors in a Deepwater Turbidite Field
Abstract
Water injection is one of the key improved recovery techniques used for pressure maintenance and sweeping. Throughout the life of a field, changes in inject...
Relationships Between Polymer Rheology and Polymer Processing
Relationships Between Polymer Rheology and Polymer Processing
Abstract
Polymer products have long been used for a variety of applications in our daily lives, as well as for some more exotic applications, such as biomedical devi...
CO2 Injectivity Test Proves the Concept of CCUS Field Development
CO2 Injectivity Test Proves the Concept of CCUS Field Development
Abstract
The paper presents a unique case study on injectivity tests done in the Kingdom of Saudi Arabia to prove the concept of Carbon Capture, Utilization, and Seq...
Bulk Rheology and Injectivity Assessments of Potential Biopolymer and Synthetic Polymer for Applications in Carbonates Under Harsh Conditions
Bulk Rheology and Injectivity Assessments of Potential Biopolymer and Synthetic Polymer for Applications in Carbonates Under Harsh Conditions
Abstract
Polymer flooding is a well-established chemical EOR technology that is used to overcome challenges associated with conventional waterflooding including visc...
Genetic association between carbonates and gold precipitation mechanisms in the Jinshan deposit, eastern Jiangnan orogen
Genetic association between carbonates and gold precipitation mechanisms in the Jinshan deposit, eastern Jiangnan orogen
Abstract
Carbonates have been traditionally regarded as post-ore minerals in hydrothermal deposits, but they can also occur in pre- and syn-ore stages. However, the ...
Hydraulic Modeling Helps Designing Ultralow ECD Nonaqueous Fluids to Meet Narrow ECD Windows
Hydraulic Modeling Helps Designing Ultralow ECD Nonaqueous Fluids to Meet Narrow ECD Windows
Abstract
Hydraulic modeling was used to simulate the effect of fluid rheology (both high- and low-shear-rate rheology) on the equivalent circulating density (ECD) at...

