CLEAR. Hole cleaning and wellbore risk reduction service

Similar documents
WELL COMMANDER Versatile multi-cycle ball-activated drilling valve for mitigating downhole hazards

Drilling Performance Benchmark Metrics Overview: Benchmark Metric Definitions Below the Mudline (BML) SPUD Date Kick Off Point (KOP) KOP Date

TruTrak Automated directional drilling system

@balance Xpress. Mobile MPD services

DecisionSpace Well Engineering Software

Drilling Problems. pull

FlairFlex. Real-time fluid logging and analysis service

TBA 100 A Performance Study of the New Generation 100-ton Advanced Technology Rig. Maximilian Trombitas, Product Manager Bauer Deep Drilling GmbH

High Data Rate MWD Mud Pulse Telemetry

RSS Proves Valuable In Vertical Wells

Unlocking your Data to Improve Performance in the Shale. Fred Kunzinger Upstream Practice Lead ECIM 2014

SIEM WIS AS. Siem WIS. UTC June 2008 By Jan Atle Andresen

InterACT. More efficiency. More possibilities.

FIBER-OPTIC SENSING TECHNOLOGIES

Enhanced Coring Services. Acquisition and preservation

Electronic Drilling Recorder

Argentina Tataru*, Marcel Adrian Piteiu*, Dan-Paul Stefanescu*, Ioana Vlasin*

Tubular Management Services

Certificate Programs in. Program Requirements

Rotary Vertical Drilling System (RVDS)

OTC MS. New Findings in Drilling and Wells using Big Data Analytics J. Johnston, CGG; A. Guichard, Teradata. Abstract

SPE Distinguished Lecturer Program

REMOTE MONITORING SYSTEM MATURE FIELDS UNCONVENTIONALS MONITORING SYSTEM. Solving challenges.

An Introduction to Oil and Gas Well Servicing

C O M P L E T I O N S E R V I C E S

COMPARISON OF DRILLING TECHNOLOGIES BETWEEN TOP DRIVE AND ROTARY TABLE IN GEOTHERMAL FIELDS: A CASE STUDY OF OLKARIA GEOTHERMAL FIELDS.

OpenWells Software. DecisionSpace Drilling & Completions. Streamline activity and morning reporting. Improve drilling operations DATA SHEET

DEPARTMENT OF PETROLEUM ENGINEERING Graduate Program (Version 2002)

Fiber Optics in a Bakken Multi-Stage Fractured Well. Montana Tech 2011 SPE Drilling Symposium Presented by: Chelsea Kadler

Grassroots Drilling. A History and Look Ahead. David Wennerstrom. ICOTA Roundtable October 2005 Canadian Chapter

PRODUCTION OPTIMIZATION CONSULTING SERVICES. Delivering comprehensive optimization solutions from a single well to a full field PRODUCTION

Drilling Rigs and Well Technology. RAPID RIGS AND WELL TECHNOLOGY Cairn India Limited.

Measurement & Analytics. VIS Multiphase Flow Meter High gas content applications solved with no radioactive source - Measurement made easy

Drilling, Completion & Well Intervention and its relation to Geology

How to avoid fluid losses that slow drilling

WELL LOGGING TECHNIQUES WELL LOGGING DEPARTMENT OIL INDIA LIMITED

Harsh Environments, Extended Drilling Envelopes Steer Drill Pipe Evolution

The development and application of a maintenance and performance monitoring database

Weatherford s Managed Pressure Drilling (MPD) Services

Sample Career Ladder/Lattice for Energy (Petroleum Sector)

OpenWells Software. DecisionSpace Drilling & Completions. Streamline activity and morning reporting. Improve drilling operations DATA SHEET

BS PROGRAM IN PETROLEUM ENGINEERING (VERSION 2010) Course Descriptions

Introduction to Drilling- Basic Operations & Tools

Transformer Deluge Systems

Application for Monitoring and Analysis of real-time drilling data PFAS from ITC a.s

Introduction. The following is an outline of the contents of this paper: Definition of Artificial Lift Page 2. How an Oil Well is Produced Page 2

Graduate Courses in Petroleum Engineering

Managed Pressure Drilling Erases the Lines

Nexus. Reservoir Simulation Software DATA SHEET

GE Intelligent Platforms. Mine Performance. from GE Predictivity

MAIN TECHNICAL ISSUES REGARDING PROBLEMS WHEN DRILLING GEOTHERMAL WELLS

AUTOMATIC TANK CLEANING (ATC) LITE On-the-fly automatic tank cleaning and recycling technology

Strategies for Upgrading your Paper Machine Automation System

Degree/ Higher Education Jobs:

AMEC 6007: Linear Velocity and Acceleration Learning Outcome. CHEM 6012: Oil and Gas Compositions and Sales Specifications Learning Outcome

Gas Custody Transfer Calibration

BHA Design Best-drilling-practices.tk. All rights reserved.

Oil and Coolant Circulating Heating System. Model - OCSM

Intelligent Daily Operations

High Performance Data Management Use of Standards in Commercial Product Development

Solving challenges. Drill out solutions Package

Oil & Gas Practice How to achieve 50% reduction in offshore drilling costs

Real-time Monitoring of Offshore Oil & Gas Operations Workshop

Industry Trends & Challenges in Oil & Gas

Deepwater Horizon Accident Investigation Report

Measurement While Drilling (MWD) Tools

LOWIS Life-of-Well Information Software

powered by ingenuity Corrosion Logging Well Integrity Measurement


Whipstock Options for Sidetracking

INCREASE THROUGHPUT, REDUCE ERROR AND STABILIZE CIRCUITS WITH EXPERT SYSTEMS

PRESIDENT ENERGY PLC. ( President or the Company ) PARAGUAY UPDATE

Water Distribution System Wireless Monitoring Solutions

Society of Petroleum Engineers Drilling Systems Automation Technical Section (DSATS) Drillbotics. International University Competition

ADX ENERGY. Sidi Dhaher Well test Briefing Live Webcast, 4 July Wolfgang Zimmer, Paul Fink

Plug and Abandonment Forum

Underbalanced drilling of oil wells in Saudi Arabia: case history and lessons learned

W.E. AUDIT

Reservoir Performance Monitor Formation evaluation and reservoir monitoring

In Development. Shale Liquids Production Analysis. Value. Key Deliverables. Principal Investigator: Investment per Sponsor $52K (USD)

Drilling for Deepwater Data: A Forensic Analysis of the Gulf of Mexico Deepwater Horizon Disaster

Cubility - Facilities and offices

EcoCWave. The all-round talent for aqueous part cleaning.

Pressure Coring, A New Tool for Unconventional Oil & Gas Characterization. Matt Bjorum Global Product Line Manager

Understanding Well Construction and Surface Footprint

66 National Commission on the BP Deepwater Horizon Oil Spill and Offshore Drilling

Managing Drilling Risk

4D reservoir simulation workflow for optimizing inflow control device design a case study from a carbonate reservoir in Saudi Arabia

Self-Calibrating Remote Control Monitoring Systems

10 Wireline operations

On-line PD Monitoring Makes Good Business Sense

Increase Equipment Uptime Through Robust Enterprise Asset Management. For the Upstream, Midstream & Downstream Sectors of the Oil & Gas Industry

GE Mine Performance powered by Predix

Proposal for a RECOMMENDATION OF THE EUROPEAN COMMISSION

APPLICATIONS OF REAL-TIME WELL MONITORING SYSTEMS

Transcription:

CLEAR Hole cleaning and wellbore risk reduction service

The CLEAR* hole cleaning and wellbore risk reduction service, delivered by Geoservices, a Schlumberger company, monitors hole cleaning effectiveness and wellbore stability, providing realtime data to help the drilling team continually improve drilling performance and reduce NPT. By comparing measured and theoretical volumes, the service provides early detection of inadequate hole cleaning and of excess returns caused by wellbore instability (caving) or damage.

Applications Extended-reach drilling and highly deviated wells Horizontal and multilateral wells Deepwater wells Benefits Increase safety by monitoring wellbore stability with drilling practices based on cuttings flowmeter measurements and indicators Drill faster by ensuring good wellbore cleaning and condition Reduce NPT and stuck pipe risk by optimizing monitoring, analysis, and hole cleaning recommendations Optimize pill program and identify best practices for future wells Features Digital measurements for improved cuttings evaluation accuracy Real-time dashboard with a simple, intuitive interface One-click report generation Transparency in data delivery Automatic alarm to signal when operational integrity of the equipment is compromised

Multiple sensors and digital signals The CLEAR service has a cuttings flowmeter (CFM) and weighing tray, located at the end of each shale shaker, positioned to catch cuttings as they fall off the screen. The tray is locked in position for a fixed interval as determined by Geoservices and the customer. Cuttings accumulate on the tray and are weighed with strain gauges. Digital outputs are sent to the acquisition system, which performs the computations. At the end of the adjustable preset period, the tray swings down and discharges the wet cuttings. The tray then returns to a horizontal position for the next measurement. The pneumatically controlled device is powered by the rig air supply, and the equipment does not obstruct access to the shale shakers. Real-time data dashboard The comprehensive, real-time cuttings flow information provided by the CLEAR service is integrated with drilling parameters, cuttings geology, drilling fluid properties, and MLWD data. These results are visually displayed through the CLEAR service dashboard accessible online whenever and wherever it s needed at the rigsite or at remote offices for analysis by well construction engineers. The accessibility and ease-of-use of the dashboard allows the drilling team to more efficiently assess hole cleaning effectiveness and to minimize wellbore instability risks. The CLEAR service is compliant with the European Union s Atmosphères Explosives (ATEX) directive as well as rated by the European Conformance (CE) and by the International Electrotechnical Commission Explosive Scheme (IECEx).

Flexible service delivery Advanced services are available in addition to the CLEAR service dashboard and CFM equipment, providing next-level analysis through expert-level interpretation and evaluation of hole cleaning, lessons learned, and best practices for future use. Automated solutions improve data integrity and quality control as well as reduce the workforce required on the rig. With multiple service delivery options, the CLEAR service provides the flexibility to choose which services and deliverables are most appropriate for the operation. Mud-effect correction Because the coating of mud on cuttings can vary considerably, a correction factor called the equivalent dry cuttings ratio (EDCR) is applied to account for this variation. The wet cuttings weight is thus converted into an equivalent volume of dry cuttings, which can be compared with the theoretical volume of formation drilled at any time. The CLEAR service measures and records the following data: cumulative wet weight of cuttings falling from the shakers cumulative dry weight of cuttings measured dry cuttings volume theoretical dry cuttings volume measured cuttings flow rate (dry flow) theoretical cuttings flow rate (nominal flow) based on ROP volume excess or deficit percentage of cuttings recovery.

Case Studies Optimized hole cleaning and pill strategy helps improve drilling performance and minimize risk, Southeast Asia Operator Saves 16 Rig Hours and USD 194,000 Using CLEAR Service Optimize hole cleaning strategy, minimize risk and expenditures During a three-well ERD operation in Southeast Asia, an operator wanted to measure and optimize its hole cleaning strategy to mitigate risk when drilling 12¼-in 13½-in sections. The primary challenge was to deliver a long horizontal section at 70 with average departure greater than 5,000 ft [1,524 m] while minimizing the number of bit runs, avoiding overloading the annulus with cuttings, and maintaining wellbore stability. ERD has proven to be an efficient solution in reservoirs with restricted production, reducing wellsite footprint and minimizing environmental effects while dramatically improving reservoir drainage at reduced cost. However, using this method to drill horizontal wells requires advanced technology that can accurately describe downhole conditions to identify the causes of harmful vibrations, BHA damage, poor performance, and inadequate hole cleaning. Use CLEAR service to maintain wellbore stability The CLEAR hole cleaning and wellbore risk reduction service was used by the operator to monitor cuttings removal from the hole and to analyze the efficiency of the hole cleaning strategy. The weight of cuttings reaching the surface is continuously measured and analyzed as they come off the shale shakers. By comparing measured and theoretical volumes, the service provides early detection of inadequate hole cleaning and of excess returns caused by wellbore instability (caving) or formation damage. Information provided by the CLEAR service showed that the drilling fluid rheology was ineffective and, because of insufficient hole cleaning, the well was degrading further. Acting on this information, the drilling team adjusted the approach by raising the low-end fluid rheology, improving hole cleaning and avoiding the need for unplanned circulation.

Improved drilling performance, saved time and expenditures Using the CLEAR service, the hole cleaning and pill strategy was successfully optimized. The frequency of the pills used was decreased without detrimental effect on the hole cleaning, improving the net ROP and decreasing hidden time spent on mud treatment. Through correlation and systematic benchmarking on the impact of cutting lifting of the pills, the size, frequency, and type of pills used were revised according to the data to optimize efficiency and control time dedicated for a secondary hole cleaning. These results decreased the invisible lost time. High-viscosity pills were maintained for the larger-od slant hole, and tandem pills were assessed and measured as having optimal performance in smaller ODs. The solution led to an overall improvement in drilling performance. The average time spent per stand for circulating and pumping pills decreased by 11 minutes compared with previous wellbores. Due to a more systematic approach, the operator saved 16 hours of rig time and USD 194,000 in direct costs. Cost saving, USD 150,000 100,000 50,000 0 15 10 5 0 Well 1 Well 2 #1 Well 2 #St1 Well 3 Time per stand, min Time drilling per stand, min The hole cleaning strategy using CLEAR service saved 16 rig hours and USD 194,000. Time directly saved, h

Case Studies CLEAR service, advanced RSS, and expert mud monitoring increase ROP 130% and accomplish 51% less cumulative pill volume pumped in Shaybah field, Saudi Arabia Integrated Drilling Approach Achieves Single-Run Lateral, Saving 2.5 Days and USD 148,000 off AFE Achieve quality hole cleaning, minimize connection time When drilling the remote Shaybah oil field of southeastern Saudi Arabia, an operator wanted to drill a lateral section in one run with quality hole cleaning and minimized connection time. This required the operator to reduce flat time incurred through stuck pipe incidents, circulating bottom up timing, and wiper trips as well as maximize ROP and footage, which are usually limited by wellbore cleaning challenges. Develop integrated solution Schlumberger engineers recommended an integrated solution that included advanced cuttingssurveillance, mud monitoring, and a robust rotary steerable system. The team suggested combining the PowerDrive Orbit RSS with the ShortPulse* integrated MWD platform because they would provide the directional control necessary to drill the lateral section in one run. The fully rotating PowerDrive Orbit RSS reduces drag, improves ROP, decreases the risk of sticking, and achieves superior hole cleaning. In addition, the CLEAR service was used to monitor hole cleaning effectiveness and wellbore instability. Using the cuttings flowmeter, the service continuously weighs, measures, and analyzes cuttings reaching the surface. By comparing measured and theoretical volumes, the CLEAR service provides early detection of inadequate hole cleaning and excess returns caused by wellbore instability (caving) or damage. A Schlumberger mud specialist provided support to the mud engineer on the rig, ensuring that the mud system was in good condition during drilling.

Achieved drilling objectives, set new records Using the integrated solution, the operator was able to steer the well trajectory into the reservoir zone with low tortuosity and increased ROP. The section was drilled 2.46 days ahead of plan with minimal stick/slip, shock, and vibration. The operator achieved optimal hole cleaning with cumulative cutting recovery of 84.4% and with 51% reduction of cumulative pills volume. Additionally, a new field record for drilling a 6 1 8-in section with a stand-alone RSS was achieved this operation s average ROP was 91.3 ft/h, and previous jobs average was 72.3 ft/h. Footage increased to 1,978 ft/d compared with the previous record, 1,409 ft/d. The operator also reduced connection time by 60% toward the end of run and saved USD 148,000, or 32%, off AFE. Depth, ft ROP, ft/h 110 100 90 80 70 60 50 40 2,500 2,000 1,500 1,000 500 0 1,476 77 57 773 713 91 80 72 72 Day 1 Day 2 Day 3 Day 4 Day 5 1,746 1,894 1,541 990 96 85 84 60 1,513 1,978 Day 1 Day 2 Day 3 Day 4 Day 5 190 101 76 750 1,940 1,072 77 60 1,312 Saved 1 drilling day Lateral 1 Lateral 2 Lateral 3 Compared to previous jobs, average ROP increased to 91 ft/h from 72 ft/h and average footage increased to 1,978 ft/d from 1,409 ft/d.

CLEAR Find out more online at slb.com/clear The CLEAR hole cleaning and wellbore risk reduction service, delivered by Geoservices, a Schlumberger company, monitors hole cleaning effectiveness and wellbore stability. This service provides real-time data to help the drilling team continually improve drilling performance and reduce NPT. slb.com/clear *Mark of Schlumberger Other company, product, and service names are the properties of their respective owners. Copyright 2015 Schlumberger. All rights reserved. 15-GS-0006