Javascript must be enabled to continue!
Trinidad's First Multilateral Well Successfully Integrates Horizontal Openhole Gravel Packs
View through CrossRef
Abstract
The first multilateral well in Trinidad was recently drilled and completed in the 759 area of the northern Soldado Field, offshore Trinidad in approximately 60 feet of water. A multilateral completion was selected over conventional well construction to horizontally access heavy-oil reserves in the Forest 4B and 4C sands, located at true vertical depths of 3850- and 4000-ft respectively. Since the formation parameters included poorly sorted, non-uniform formation characteristics, the completion would have to employ some method of sand control.
This well represents several "firsts" for this area. It is not only the first multilateral well in Trinidad but is also the first in the area that integrated sand control with a multilateral technique.
This paper will discuss the planning, special considerations, and implementation of the techniques chosen to interface sand control into a multilateral well.
After reviewing many possibilities, horizontal openhole gravel-pack technology was selected to provide sand-exclusion. A TAML 4 multilateral well junction was selected because it offered a cemented junction with full casing-drift access across the mainbore/lateral interface.
In addition to the planning, special considerations, and implementation of horizontal gravel pack into multilateral technology, the paper will discuss lessons learned and future considerations.
Introduction
The S-836 heavy oil development well is located in the 759 area of the northern Soldado field, which is approximately eight (8) miles northwest of Point Fortin, Trinidad (Fig. 1-2). The water depth in the area is 60 feet. The target reservoirs were the Forest 4B and 4C sand bodies, which are part of the Pliocene geological period, and were deposited in tidally influenced, fluvial-deltaic environments that comprise a series of complex channel systems. The depths of the sand bodies range from 2800 to 4000 feet true vertical depth (TVD). The surface oil viscosity of the 4B and 4C sands is 5100 and 360 centipoise (cP), respectively.
The hydrocarbon in place in the 759 area is estimated at 22 MMBO with a recovery factor of 16 percent. Prior to constructing the S-836 multilateral well, the traditional well construction method had been a vertical-to-deviated cased-hole completion that used either gravel packing or frac-and-pack sand-control methods. Submersible pumps and gas-lift production systems were typically deployed to provide artificial lift in heavy-oil applications.1
The S-836 well construction strategy had multiple objectives. First, the well path was to provide optimal reservoir exposure into the 4C and 4B sand bodies. Optimal reservoir exposure meant horizontal well paths through each sand body. Effective formation sand exclusion was another objective. Due to the highly unconsolidated nature of the reservoir rock, horizontal gravel-packs would be required to provide effective sand control while maintaining high production rates. In addition, an effective sand-control system would maximize reservoir depletion and minimize maintenance and remedial workover expenditures. The last and most important objective was achieving economic success through maximized production rates. Both sand bodies would be commingled and produced to surface using a progressive cavity pump (PCP).
The lower-lateral gravel-pack would consist of approximately 1700-ft of premium screen and would penetrate the 4C sand. A pressure-maintenance, horizontal gravel-pack system would be used to perform the gravel pack sand.
Title: Trinidad's First Multilateral Well Successfully Integrates Horizontal Openhole Gravel Packs
Description:
Abstract
The first multilateral well in Trinidad was recently drilled and completed in the 759 area of the northern Soldado Field, offshore Trinidad in approximately 60 feet of water.
A multilateral completion was selected over conventional well construction to horizontally access heavy-oil reserves in the Forest 4B and 4C sands, located at true vertical depths of 3850- and 4000-ft respectively.
Since the formation parameters included poorly sorted, non-uniform formation characteristics, the completion would have to employ some method of sand control.
This well represents several "firsts" for this area.
It is not only the first multilateral well in Trinidad but is also the first in the area that integrated sand control with a multilateral technique.
This paper will discuss the planning, special considerations, and implementation of the techniques chosen to interface sand control into a multilateral well.
After reviewing many possibilities, horizontal openhole gravel-pack technology was selected to provide sand-exclusion.
A TAML 4 multilateral well junction was selected because it offered a cemented junction with full casing-drift access across the mainbore/lateral interface.
In addition to the planning, special considerations, and implementation of horizontal gravel pack into multilateral technology, the paper will discuss lessons learned and future considerations.
Introduction
The S-836 heavy oil development well is located in the 759 area of the northern Soldado field, which is approximately eight (8) miles northwest of Point Fortin, Trinidad (Fig.
1-2).
The water depth in the area is 60 feet.
The target reservoirs were the Forest 4B and 4C sand bodies, which are part of the Pliocene geological period, and were deposited in tidally influenced, fluvial-deltaic environments that comprise a series of complex channel systems.
The depths of the sand bodies range from 2800 to 4000 feet true vertical depth (TVD).
The surface oil viscosity of the 4B and 4C sands is 5100 and 360 centipoise (cP), respectively.
The hydrocarbon in place in the 759 area is estimated at 22 MMBO with a recovery factor of 16 percent.
Prior to constructing the S-836 multilateral well, the traditional well construction method had been a vertical-to-deviated cased-hole completion that used either gravel packing or frac-and-pack sand-control methods.
Submersible pumps and gas-lift production systems were typically deployed to provide artificial lift in heavy-oil applications.
1
The S-836 well construction strategy had multiple objectives.
First, the well path was to provide optimal reservoir exposure into the 4C and 4B sand bodies.
Optimal reservoir exposure meant horizontal well paths through each sand body.
Effective formation sand exclusion was another objective.
Due to the highly unconsolidated nature of the reservoir rock, horizontal gravel-packs would be required to provide effective sand control while maintaining high production rates.
In addition, an effective sand-control system would maximize reservoir depletion and minimize maintenance and remedial workover expenditures.
The last and most important objective was achieving economic success through maximized production rates.
Both sand bodies would be commingled and produced to surface using a progressive cavity pump (PCP).
The lower-lateral gravel-pack would consist of approximately 1700-ft of premium screen and would penetrate the 4C sand.
A pressure-maintenance, horizontal gravel-pack system would be used to perform the gravel pack sand.
Related Results
Gravel Placement Through Perforations and Perforation Cleaning for Gravel Packing
Gravel Placement Through Perforations and Perforation Cleaning for Gravel Packing
Gravel Placement Through Perforations and Perforation Cleaning Perforations and Perforation Cleaning for Gravel Packing
Summary.
...
The formulation and application of a gravel loss model in management of gravel roads in Iringa region, Tanzania
The formulation and application of a gravel loss model in management of gravel roads in Iringa region, Tanzania
Among various gravel roads distress prediction models in existence, a gravel loss prediction model is considered critical in selecting the optimal re-gravelling schedule for effect...
Examining Cigar Pack Quantity Purchases by Cigar Type in the United States Between 2014 and 2017
Examining Cigar Pack Quantity Purchases by Cigar Type in the United States Between 2014 and 2017
Abstract
Introduction
We examined whether the proportion of cigar pack quantity usually purchased differed between 2014 and 2017...
Design of Gravel Packs in Deviated Wellbores
Design of Gravel Packs in Deviated Wellbores
This paper describes a new technique for improving the effectiveness of gravel placement between the screen and the wellbore in deviated wells. This technique can be used to predic...
Evaluation of Gravel Blending and Pumping Techniques for Accurate Control and Protection of the Gravel During the Gravel Packing Operation
Evaluation of Gravel Blending and Pumping Techniques for Accurate Control and Protection of the Gravel During the Gravel Packing Operation
ABSTRACT
Due to the high cost of accurately screened gravel and the importance of not breaking or crushing it; the treatment and placement of gravel with surface equ...
Rapid Development and Qualification of High-Pressure Packer Bypass Conduits for Multizone Openhole Gravel-Pack Packer
Rapid Development and Qualification of High-Pressure Packer Bypass Conduits for Multizone Openhole Gravel-Pack Packer
Abstract
One of the most cost-effective methods of completing an openhole well for oil and gas production is to gravel pack the openhole interval using sand screens ...
Imaging Gravel-Pack Quality: Application to Deviated and Horizontal Wells
Imaging Gravel-Pack Quality: Application to Deviated and Horizontal Wells
AbstractHorizontal well gravel-packing operations are known to exhibit a higher rate of premature screenout. The suggested causes of such failure range from extreme reservoir condi...
Horizontal Gravel Packs Successfully Deployed in Trinidad's First Multilateral Well — Planning, Implementation, and Remedial Strategies
Horizontal Gravel Packs Successfully Deployed in Trinidad's First Multilateral Well — Planning, Implementation, and Remedial Strategies
AbstractThis paper discusses the first multilateral well drilled in Trinidad and the unique integration of techniques that allowed sand control procedures to be implemented as well...

