Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Screening and Evaluation for Asphaltene Dispersants for Hassi Messaoud Field-Algeria: Laboratory Tests

View through CrossRef
ABSTRACT Precipitation and deposition of organic solids such as asphaltene are very common issues for the petroleum industry globally. The deposition of these solids is considered one of the main issues impacting production losses throughout the pore to refinery chain. Solids induced by asphaltene instability frequently led to well, pipeline and surface equipment plugging, requiring frequent production stops and large -scale and costly operations for removal and to normalize production. Oil producers develop different prevention-/-mitigation strategies depending on reservoir characteristics; In the case of Hassi Messaoud oil field located in Algeria, asphaltene precipitation and deposition is a recurrent issue from the start of production. The most common solutions adopted are physical removal by scraping the production tubing(slickline) and solvent washes of the near-wellbore area and tubing to maintain or recover production. These options are time consuming and costly and have efficiency limitations, so looking for more efficient solutions has become a priority. Chemical solutions are among the techniques being investigated. This paper describes the work done evaluating different chemical dispersants as asphaltene treatment for a Hassi Messaoudi oil field. Many commercial asphaltene dispersants were selected and submitted to the laboratory for evaluation to determine their performance and efficiency at reservoir conditions (instead of stock tank oil conditions) to accurately recreate reservoir challenges for proper chemical evaluation. Work was initiated by performing deposition tests at ambient conditions using various dosages of each chemical, on dead oil samples. Chemicals performance is estimated based on deposition reduction compared to a control with no chemical addition. While these are accepted in industry as quick screening tests, they do not reproduce the complexity of downhole conditions, especially considering the effect of solution gas into asphaltene stability. Therefore, for better understanding of dispersant behavior, laboratory tests were conducted on live oil at specified conditions of temperature, pressure, and shear using Real View®. Prior to that, all dispersants were tested for asphaltene stability at several dosages by a light-scattering technique that combines a solid detection system (SDS) with high-pressure microscopy (HPM).
Title: Screening and Evaluation for Asphaltene Dispersants for Hassi Messaoud Field-Algeria: Laboratory Tests
Description:
ABSTRACT Precipitation and deposition of organic solids such as asphaltene are very common issues for the petroleum industry globally.
The deposition of these solids is considered one of the main issues impacting production losses throughout the pore to refinery chain.
Solids induced by asphaltene instability frequently led to well, pipeline and surface equipment plugging, requiring frequent production stops and large -scale and costly operations for removal and to normalize production.
Oil producers develop different prevention-/-mitigation strategies depending on reservoir characteristics; In the case of Hassi Messaoud oil field located in Algeria, asphaltene precipitation and deposition is a recurrent issue from the start of production.
The most common solutions adopted are physical removal by scraping the production tubing(slickline) and solvent washes of the near-wellbore area and tubing to maintain or recover production.
These options are time consuming and costly and have efficiency limitations, so looking for more efficient solutions has become a priority.
Chemical solutions are among the techniques being investigated.
This paper describes the work done evaluating different chemical dispersants as asphaltene treatment for a Hassi Messaoudi oil field.
Many commercial asphaltene dispersants were selected and submitted to the laboratory for evaluation to determine their performance and efficiency at reservoir conditions (instead of stock tank oil conditions) to accurately recreate reservoir challenges for proper chemical evaluation.
Work was initiated by performing deposition tests at ambient conditions using various dosages of each chemical, on dead oil samples.
Chemicals performance is estimated based on deposition reduction compared to a control with no chemical addition.
While these are accepted in industry as quick screening tests, they do not reproduce the complexity of downhole conditions, especially considering the effect of solution gas into asphaltene stability.
Therefore, for better understanding of dispersant behavior, laboratory tests were conducted on live oil at specified conditions of temperature, pressure, and shear using Real View®.
Prior to that, all dispersants were tested for asphaltene stability at several dosages by a light-scattering technique that combines a solid detection system (SDS) with high-pressure microscopy (HPM).

Related Results

Experimental Investigation of Asphaltene Induced Permeability Reduction
Experimental Investigation of Asphaltene Induced Permeability Reduction
Abstract CO2 injection is one of efficient enhanced oil recovery (EOR) methods among gas flooding, however, asphaltene precipitation during CO2 injection might le...
Asphaltene Deposition during CO2 Flooding in Ultralow Permeability Reservoirs: A Case Study from Changqing Oil Field
Asphaltene Deposition during CO2 Flooding in Ultralow Permeability Reservoirs: A Case Study from Changqing Oil Field
Asphaltene deposition is a common phenomenon during CO2 flooding in ultralow permeability reservoirs. The deposited asphaltene occupies the pore volume and decreases permeability, ...
Field Trial of Downhole Asphaltene Remediation Treatment in a Deep Carbonate Reservoir, Kuwait
Field Trial of Downhole Asphaltene Remediation Treatment in a Deep Carbonate Reservoir, Kuwait
Abstract Asphaltene deposition is an ever-increasing problem at Kuwait Oil Company fields and in many fields worldwide. KOC is one of the oil companies that is su...
Viscometric Determination of the Onset of Asphaltene Flocculation
Viscometric Determination of the Onset of Asphaltene Flocculation
Abstract A new technique for the determination of the onset of asphaltene flocculation (OAF) has been developed through viscosity measurement of the oil mixed wit...
Exploration of Novel Sacrificial Fluids for Asphaltene Adsorption Remediation
Exploration of Novel Sacrificial Fluids for Asphaltene Adsorption Remediation
Abstract One of the most extensively studied flow assurance issues in the petroleum industry is the precipitation and deposition of asphaltene. This is in part becau...
Asphaltene Studies in On-Shore Abu Dhabi Fields, Part IV: Development of a Surface Sensor
Asphaltene Studies in On-Shore Abu Dhabi Fields, Part IV: Development of a Surface Sensor
Abstract The selection of optimal chemical solutions to an asphaltene challenge has been an integral part of the flow assurance strategy for a large on-shore field i...
Asphaltene Precipitation Modeling of Sadi Formation in Halfaya Iraqi Oil Field
Asphaltene Precipitation Modeling of Sadi Formation in Halfaya Iraqi Oil Field
Asphaltene is a component class that may precipitate from petroleum as a highly viscous and sticky material that is likely to cause deposition problems in a reservoir, in productio...

Back to Top