Isolating Potential Flow Zones During Well Construction

Similar documents
Challenges of Cementing Olkaria Geothermal Field

CEMENT EVALUATION ITS NOT JUST ABOUT A BOND LOG GLEN BENGE SENIOR ADVISOR CEMENTING PRESSURE PUMPING

Cement Plug Placement and Integrity Mechanical Cementing Service

Seal 9 barrier verification by xlot and Communication test

Msc Drilling Engineering. HPHT Cementing Coursework

AADE-05-NTCE-77. Preventing Annular Flow After Cementing: Pulse It! John Aslakson, W&T Offshore; Dale Doherty, BJ Services and Ed Smalley, CTES, L.P.

Barrier verification and leakage risk. Dave Gardner, IRIS Norwegian Oil and Gas Plug & Abandonment Seminar October 18 th 2017

COMPLETIONS WFXØ VØ-RATED OPENHOLE GRAVEL- PACK SYSTEM

Practical Cementing Technique to Repair Severe Casing Damage David Cirer, Erick Arze, Juan Manuel Moggia, Ruben Hector Soto, Pan American Energy.

Solid-Expandable Systems. The Key to Economical Recovery in Mature Fields

Coiled Tubing for Downhole Applications

Remotely Operated Cementing Methods for Drilling with Liner Installations. Steve Rosenberg, Global Drilling Reliability Manager

Well abandonment procedures and perforation with a slotted charge for cement squeeze applications

Tubing-Conveyed Perforating Systems

Overview of Completions

I ndependent D rilling E ngineering A xel S perber

NOTE. This document is intended to supplement rather than replace the prevailing statutory requirements.

Liner Hanger Selection. A Guide for Drilling and Completion Engineers

Deepwater: Drilling Trouble Zones and Well Integrity. Ron Sweatman HALLIBURTON RPSEA Forum at University of Southern California November 29, 2006

Colorado Oil and Gas Conservation Commission

Verification and Validation Challenges of HP/HT BOP and Well Control Equipment

WELL RECORD INSTRUCTIONS (Unconventional Operators only)

Part 1: Life cycle governance

Foamed cement successfully applied in shallow water environment in Caspian Sea

CEMENTING PROCESSES IN GEOTHERMAL WELL DRILLING: APPLICATION AND TECHNIQUES

Shale Projects Becoming Globally Important U.S. Shale Oil & Gas Experience Extrapolates Globally

Faculty of Science and Technology MASTER S THESIS. Writer: Sondre Sandven

Sand control case histories: Shape memory polymers, resins, shunt tubes

Cement and Cementing: An Old Technique With a Future?

Maximum number of hours an employee may work in a day

INTERNATIONAL PERFORATING SYMPOSIUM 2014

September 1, 2003 CONCRETE MANUAL SPECIAL TYPES OF CONCRETE

Drilling-with-Liner (DwL ) System Drill the Undrillable

Pennsylvania Hydraulic Fracturing State Review September, 2010

Colorado Oil and Gas Conservation Commission

Plugs and Profiles. Types Running Pulling Problems

Injection Wells for Liquid-Waste Disposal. Long-term reliability and environmental protection

CT Reverse Circulating - Basics

Virginia Walsh, PhD, P.G. Ed Rectenwald, P.G. February 25, 2016

CONCENTRATE AND BRINE MANAGEMENT THROUGH DEEP WELL INJECTION. Abstract

Initial integrity evaluation of storage and production wells

1. All underground utilities under railroad tracks shall be encased in a larger pipe or conduit called the casing pipe.

Cased Hole Sand Control Essentials. Fluids, Equipment, Tools, and Displacement Services

Wastewater Capital Projects Management Standard Construction Specification

HOLE CLEANING IN DIRECTIONAL WELLS

Producing a well. Folie 1

Acoustics and Ultrasonics for Downhole Oil and Gas Logging

Analysis of Nigerian Local Cement for Slurry Design in Oil and Gas Well Cementation

SHELL ONSHORE OPERATING PRINCIPLES

2015 Global Petroleum Technologies Limited.

SteadyState Continuous Flow System

NGWA s Water Well Construction Standard: ANSI/NGWA 01-14

WELL CONTROL THE RISING EAST NOVEMBER/DECEMBER INTERNATIONAL ASSOCIATION OF DRILLING CONTRACTORS Drilling

INVESTIGATION RESULTS

FUNDAMENTALS OF THE PETROLEUM INDUSTRY CERTIFICATION

MACKERAL OIL TOOLS PVT. LTD.

Drilling Data Management 4 TH FEBRUARY 2015

SECTION GRAVEL PACKED WATER WELL

AADE-03-NTCE-20. SLURRY DEVELOPMENT Slurry development was governed by two main constraints; namely TRRC requirements and operational constraints.

SHARING TO BE BETTER Background

SECTION 4 MANAGEMENT OF CHANGE OCS Production Operations

AADE-04-DF-HO-13. The main areas of the PFM process include: Contract People Performance measures (GWSI-Scorecard) Well construction Common tools

Presented by: J. Daniel Arthur, P.E., SPEC ALL Consulting. Presented at: 23 rd IPEC Conference November 8-10, 2016 New Orleans, Louisiana

SAPEX OIL TOOLS LTD. DRILLING & COMPLETIONS LINER COMPLETIONS PRODUCTS, APPLICATIONS & SPECIFICATIONS TOMORROW S TECHNOLOGY FOR TODAY S ENERGY

C H E M I X. Delivering Cesium Formate to the Oil & Gas Industry. Stocks available immediately for direct sale S.G. 2.20

Debris Management and Cleanout

Tennessee Underground Injection Control Program Overview

6 DRILLING AND COMPLETIONS

Drilling and Completion of Horizontal Wells in a Diatomite Formation A Systematic Approach to Addressing Challenges

NOTICE CONCERNING COPYRIGHT RESTRICTIONS

SPE Copyright 2004, Society of Petroleum Engineers Inc.

SHALE FACTS. Production cycle. Ensuring safe and responsible operations

Cementing Tool Supports Cement Plug in Large Diameter Geothermal Well Casing

Shale Development: Understanding and Mitigating Risks Associated with Well Construction and Hydraulic Fracturing

Drilling Optimization Solutions. Created by: Richard M. Burgess Operations Director

California Well Stimulation Treatment Regulations

CONSTRUCTION SPECIFICATION FOR PIPELINE AND UTILITY INSTALLATION IN SOIL BY HORIZONTAL DIRECTIONAL DRILLING

GeoBalance Optimized Pressure Drilling Services TWO TECHNOLOGIES. ONE SOLUTION. UNDERBALANCED AND MANAGED PRESSURE DRILLING SYSTEMS

3/5/2014. Key Topics for Consideration

Old Wells or New Wells?

Rule 326: Mechanical Integrity Guidance

Date of Issue: August 2017 Affected Publication: API Specification 16A, Specification for Drill-through Equipment, Fourth Edition, April 2017

DET NORSKE VERITAS CO2WELLS. Guideline for the risk management of existing wells at CO 2 geological storage sites. DNV Report No.

Annual Report DrillWell Drilling and Well Centre for Improved Recovery. Established by the Research Council of Norway

SUBCHAPTER 8. ADDITIONAL REQUIREMENTS FOR UNDERGROUND INJECTION CONTROL (UIC) PROGRAM

Division Mandates. Supervise the drilling, operation, and maintenance of wells to prevent damage to life, health, property, and natural resources.

ESTABLISHING OBJECTIVE TEST PROTOCOLS FOR THE QUANTIFICATION OF WATER-TIGHTNESS OF A REHABILITATED MAIN/LATERAL SEWER CONNECTION

Version Section Revision Information Date Reviser 1 All First issue submitted to the Environment Agency 4 th June 2014

CONTINUOUS FLIGHT AUGER (CFA) PILES QC/QA PROCEDURES. Preferred QC/QA Procedures

TRENCHLESS CONSTRUCTION (BORING, JACKING, AND TUNNELING)

CEMENTING THE 20 INCHES SURFACE CASING

ENDURA DUAL-STRING SECTION MILL. Set a rock-to-rock barrier and know that it s done right. WELL ABANDONMENT

Oil and gas companies are pushing for improved performance and better efficiency from service providers

Kentucky Oil & Gas Modernization Act of 2015

LOST CIRCULATION GUIDE. Revised 2014/DSG. Drilling Specialties Company a division of Chevron Phillips Chemical Company LP.

This Series of Guides Addresses:

Publication 13M, Design Manual Part 2 Revision

PRECAST CONCRETE ON-SITE WASTEWATER TANKS

Casing Failure Prevention East Texas Gas Producer s Assoc. 9 March 2010

Open Access A Novel Approach to Detect Tubing Leakage in Carbon Dioxide (CO 2 ) Injection Wells via an Efficient Annular Pressure Monitoring

Transcription:

Isolating Potential Flow Zones During Well Construction API Standard 65 Part 2 Glen Benge http://publications.api.org/

API Standard 65-2 Document highlights industry recommended cementing and well construction techniques to help ensure cementing jobs include proper Planning Testing Design Execution

Training sessions on Standard 65-2, zonal isolation and cementing have been presented to Pennsylvania Regulators West Virginia Regulators

API Standard 65-2 Defined Mechanical Barriers Cement as a Barrier Cementing Practices Post Cement Job Analysis Process Summary

Barrier Definition A component or practice that contributes to the total system reliability by preventing liquid or gas flow if properly installed.

Defined Physical Barriers Hydrostatic barriers Hydrostatic pressure from wellbore fluids Mud, cement, etc. Annular mechanical barriers Liner top packers, ECP, swellables Wellbore mechanical barriers Retrievable tools, bridge plugs, retainers Set Cement as a barrier

Cement as a Barrier Cement must have 50 psi compressive strength at temperature and pressure conditions at the uppermost flow zone Some regulations may conflict with requirement Consideration of cementing events (e.g. losses, premature returns, deviation from design, low lift pressure, etc.) Cement plugs as a barrier Installed and verified properly

Cementing Practices Industry accepted design best practices Hole quality - Drilling fluid properties Engineering design Mud removal - Slurry design & testing Industry accepted execution best practices QA/QC - Execute as per design

Cementing Practices There are competing priorities in well construction Not all cementing best practices contained in the Standard are required or even possible for every application Sound engineering judgment is required

Post Job Analysis Evaluate events prior to, during and immediately after the job to determine the probability that job objectives were met Do recorded pressures match simulator predictions Were there events during the job that suggest likelihood of poor isolation Pressure tests (positive and/or negative) Logging tools Temperature logs for TOC determination Cement evaluation logs

Process Summary A summary of the zonal isolation process is presented in Appendix D Designed to provide the user with a comprehensive checklist of the key parameters for successful zonal isolation Summary replaces the scorecard in the 1 st Edition

Shall Statements Shall statements are summarized in Annex D with only a few found in the main text of the document

Annex D Shall Statements Drilling Fluid Parameters Well Design Parameters Operational Parameters Drilling Fluid Removal Parameters Cement Slurry Parameters Special Operational Considerations

Critical Well Design Parameters Annex D Shall Statements Wellbore Modeling Wellbore fluid hydraulics (ECD) modeling shall be performed in well sections containing a potential flow zone in order to assess pore pressure and fracture gradient limits. Centralizer placement, ECD and fluid displacement simulations shall be performed. Results of the simulations shall be considered during the cementing design and execution.

Critical Operational Parameters Annex D Shall Statements Cementing Equipment Float Equipment Shall be rated for the anticipated differential pressure. Cement Heads Cementing heads shall be pressure tested to the maximum working pressure rating of the head, and shall have a working pressure in excess of the maximum anticipated surface pressure for the job.

Critical Operational Parameters Annex D Shall Statements Barrier Removal: The time from the start of removing the barrier element to securing the exposed annulus shall be minimized. If the operator plans to remove a barrier element, such as a diverter or BOP stack, the operator shall determine when it will be safe to do so.

Critical Cement Slurry Parameters Cement Compressive or Sonic Strength: Annex D Shall Statements Cement shall be considered a physical barrier element only when it has attained a minimum of 50 psi strength as measured at simulated pressure and temperature conditions at the uppermost flow zone. Once the time to reach a minimum of 50 psi compressive or sonic strength has been determined, the operator shall wait on the cement to set for that amount of time prior to removing or disabling a barrier element.

Critical Drilling Fluid Removal Parameters Wellbore Barriers: Slurry properties shall be consistent with any regulatory requirements. (Primary and plug designs) Testing shall comply with accepted industry standard practices. Annex D Shall Statements

Special Operational Considerations Special Operational Considerations Local regulations shall be adhered to with regards to WOC. Barrier Acceptance: Annex D Shall Statements If the criteria for verification of a mechanical barrier or cement cannot be met the operator shall establish an appropriate course of action with the regulator or permitting authority.

Special Operational Considerations Diverter or BOP Obstruction: Annex D Shall Statements Operators or rig contractors shall not run tubing in the annulus between the casing and the diverter, or BOP, after completion of the cementing operation and prior to determining the well has no potential for flow.

Special Operational Considerations Hydrostatic Overbalance: Annex D Shall Statements Hydrostatic pressure calculations shall be performed and results considered prior to commencing any operation that will result in a change in hydrostatic pressure in the wellbore. Pressure calculations are not limited to fluid change out can also include use of water ahead of a cementing operation

Special Operational Considerations Foamed Cement: Operators and cementing service providers shall: Perform a risk assessment prior to utilizing foamed cement to isolate a potential flow zone, Ensure the results of the assessment are incorporated in the cementing plan, Communicate to all parties. Annex D Shall Statements

Standard 65 2 Content Overview

Standard 65 2 - Contents Scope Overview Objectives Background Applicability Well Planning & Drilling Plan Considerations Drilling the Well Summary References Definitions Abbreviations Barriers Cementing Practices Casing Shoe Testing Post Cementing Analysis & Evaluation

Standard 65 2 - Contents Annex A Background and Technology Annex B Well Planning and Drilling Plan Considerations Annex C Drilling the Well Annex D Process Summary: Isolating Potential Flow Zones During Well Cementing Biblography

Questions