Understanding Hazardous Locations Concepts

Similar documents
Steel Sucker Rod Fatigue Testing Update on Phase I

Sucker Rod Pump Handling and Rig Crew Safety

Runtimes for Deviated Rod Pump Wells in the Fruitland Coal Formation

Pumping Unit Gear Reducer Failures

Modified Everitt-Jennings (MEJ) Method and the Gibbs Method: Downhole Card Comparison

System Design & Diagnostic Analysis of Group 2 Systems

Double String Pumping Systems *Patent Pending Dennis R. Wilson, Advisor, Artificial Lift Engineering ConocoPhillips, Lower 48, San Juan Business Unit

Enhance Plunger Lift While Reducing CAPEX and OPEX

Improving the Reliability & Maintenance Costs of Hydraulically Actuated Sucker Rod Pumping Systems

Complete Stress Analysis of Sucker- Rod Pumping Installations

Regulatory Roundup and Automation Scott Jackson Regional Sales Manager Mid Continent OleumTechitle

11 th Annual Sucker Rod Pumping Workshop Renaissance Hotel Oklahoma City, Oklahoma September 15-18, 2015

Recording Dynagraph on Bent / Misaligned Polished rod.

Design of Sucker Rod Systems

Downhole Dynamometer Card Validation Method

Design Your Rod String to Unseat the Pump But NOT Overload the System

Development of a High Pressure Gas Gun for H 2 S and CO 2 Service

Partial History of the Industry

Validating Vertical-Hole Diagnostic Models with Measured Sandia Data

Interactive 3D Wellbore Viewer

Ventura Field Rod Well Systems

Horizontal Well Downhole Dynamometer Data Acquisition

The Horizontal Rod Pumped Well s Ultimate Production System

Update on Sandia Downhole Dynamometer Testing

Comparing & Validating Deviation Surveys

Guide to Intrinsically Safe Portable Radios

Pump Stroke Optimization: A Better Way

Quick Rod (QROD) String Design Tools

Experience Rod Pumping Deviated CBM Wells

Casing Gas Separator: A New Gas Separation Technology

Sucker Rod System Analyst

Hollow Sucker Rods: Development and applications in Beam Pumping

Rod String Design Software Simulation of Sandia Downhole Load Cell Wells

A Case for Developing a Wear Model for Sucker Rod System Design

Guide to Hazardous Location Approvals:

Guide to Hazardous Location Approvals: MICRO SWITCH Hazardous Area Limit Switches

Airo Wireless Intrinsically Safe White Paper. Written By: David Schmitt

UL HAZARDOUS LOCATIONS SERVICES

UNDERSTANDING, ECONOMIC ANALYSIS OF & EFFICIENTLY MITIGATING DOWNHOLE FAILURES

Mitigate slug flow to increase the maximum rod pumping rate and allow earlier transition to rod pumping

Products Solutions Services CT287. Hazardous Area Classifications and Protection Systems

A New Sucker Rod Coupling Material: An Economical Solution for Downhole Wear in Deviated Unconventional Wells

MICROpeL 75 Combustible Gas Sensor Part Number: PM

Hazardous Area Classifications and Protections

REGULATIONS EUROPEAN ATEX DIRECTIVE. INTERNATIONAL SCHEME: IECEx AREAS CLASSIFICATION DEFINED BY DIRECTIVE 1999/92/EC

Selecting a Safe Tank Gauging Product. Understanding Hazardous Area Definitions for Equipment Approvals

Overview of Hazardous Locations as They Relate to Solenoid Valves

Fluke 568 Ex Intrinsically Safe Infrared Thermometer

Beamex Calibration White Paper. Calibration in hazardous areas

Beamex. Calibration White Paper. Calibration in hazardous areas

Selection of Explosion Protected Equipment for Hazardous Locations. Compiled by: Pieter Coetzee ZONE 2 ZONE 1 ZONE 0.

A guide to the use of electrical equipment in potentially explosive atmospheres To view this document in PDF format click here.

Better Design and Control of Deviated and Horizontal Wells: HWDDDA

HOW TO FIND THE RIGHT DEVICE FOR YOUR FACILITY

Horizontal Well Downhole Dynamometer Data Acquisition: Prototype is ready!

Guide for hazardous areas

Today's world of increasing

Safety instructions VEGADIS DIS61.CC/O** VEGADIS DIS81.CC/O******

Drive Technology \ Drive Automation \ System Integration \ Services * _0817* Inquiry Forms for Explosion-Proof Gearmotors

A GUIDE TO EUROPEAN (EEC) CERTIFICATION FOR ELECTRICAL EQUIPMENT IN HAZARDOUS AREAS

S T R I T T & P R I E B E I N C.

Intrinsically Safe Transmitters, Option Code 2n

RE: USE OF FIREPRO IN POTENTIALLY EXPLOSIVE ATMOSPHERES

Erik Leider Project Engineer Hazardous Locations, Gas & Oil Underwriters Laboratories

Hazardous Area Classification in Oil & Gas Industry. A Fire Prevention Tool

A Guide to Safe Electronic Weighing in Hazardous Locations

Hazardous area descriptions

Hazardous Areas - EXPLOSIONPROOF SOLENOIDS

Technical Data. General specifications Switching element function Rated operating distance s n 4 mm

INSTRUCTION MANUAL IS-mB1 Minialite Intrinsically Safe Round LED Beacon

EtherCAT Box Modules (EPxxxx-xxxx)

4P75 CiTipeL Combustible Gas Sensor Part Number: PM

UL Topic III. Converting European EEx Certificates. Into. North American Division Certificates

Certificate of Compliance

IECEx Certificate of Conformity

Page 1 Copyright by the Fieldbus Foundation All rights reserved.

Fire Alarm System Accessories

4P-90 CiTipeL Combustible Gas Sensor Part Number: PM

Intrinsically Safe or Explosionproof? Understanding the technology

ATEX GUIDE. A short introduction to ATEX Terminology. Equipment for use in flammable atmospheres. Directive 94/9/EC

IS (Intrinsic safety) - Ex (Epsilon x) ATEX CENELEC

for CE 134 CCSAUS certificate Meggitt SA Route de Moncor 4 PO Box 1616 CH Fribourg Switzerland Title page EN

WHAT WHITE PAPER IS POTENTIALLY EXPLOSIVE ATMOSPHERE CERTIFICATION AND WHY YOU. June 2010

Tank Gauging System Special Safety Instruction

INSTRUCTION MANUAL. E2xB05 & E2xB10 Xenon Beacons For use in Hazardous Locations

Relays for use in hazardous locations. Class I, Division 2 and ATEX

Electrical Area Classification 101 An Introduction to Area Classification the Basics IEEE Houston CED

Specifying Temperature Sensors for Hazardous Areas

[ TECHNOLOGY ] and does this definition affect a burner.

Hazardous Location Surge Protection Solutions

Explosion-protected actuator Page 259 of 292

3NT SERIES FIXED TEMPERATURE THERMOSTATS Introduction

INSTRUCTION & SERVICE MANUAL

Safe Operation Manual. Honeywell IQ Force Gas Detector

GG-LEL2 COMBUSTIBLE GAS SENSOR. Installation and Operation Manual

specifically for explosion prone areas can substantially reduce the risk of combustion.

The R. STAHL Technology Group Worldwide Success with Competence and Customer Support

CLASS I LOCATIONS ZONE CLASSIFICATION

Vanguard. Toxic & combustible gas detector

Dust Explosion Protection Consistent with North American Practice

Transcription:

Gas Well Deliquification Workshop Sheraton Hotel, February 23 26, 2014 Understanding Hazardous Locations Concepts Mark Scantlebury, P. Eng., BASc President and CEO Extreme Telematics Corp.

Disclaimer The content of this presentation is meant to be informative and cover the basic concepts behind hazardous locations. It is not intended to provide guidance for any particular installation and should not be relied on when making any decision regarding hazardous locations. Please consult your local electrical code for the applicable regulations as it will vary from region to region. 2

Overview Confusion between standards, testing/certification organizations, and local regulations. Standards cover the requirements for safe installation and operation Many testing organizations worldwide. Many of which use the same or similar standards Local authorities decide which standards and which certifications to observe. 3

Standards Development IEC (International Electrotechnical Commission) Specializes in developing international standards Electrical, electronic, and related technologies ATEX (Atmosperes Explosibles) European Union (EU) Directives 4

Certification Organizations Commonly Recognized Names CSA (Canadian Standards Association) - Canada UL (Underwriter s Laboratories Inc.) - USA ANCE (Association of Standardization and Certification) - Mexico Many Others Intertek MET (Maryland Electrical Testing) 5

Common North American Standards Historical CSA, UL, and ANCE all had different standards Could approve for each other s jurisdiction, but separate testing and certification required Division based system. i.e. Class I Div 1 Harmonization Adopted IEC 60079 Easier to approve for multiple jurisdictions Zone based system i.e. Class I Zone 0 6

Adoption in Canada and US Canada All new installations must adhere to the zone based standard Existing installations are grand fathered United States All installations can use division or zone system 7

What Does the Class Mean? Each class identifies a different type of flammable material Class I Flammable gases or vapors Typically seen in Oil and Gas Class II Combustible or electrically conductive dust Typically seen in farming (i.e. Grain Dust) Class III Ignitable fibers or flyings in the air 8

Divisions vs. Zones Division 1 Hazard exists in normal conditions Division 2 Hazard exists in abnormal conditions Zone 0 Explosive atmosphere continuous Zone 1 Explosive atmosphere likely Zone 2 Explosive atmosphere not normal Divisions Div 1 Div 2 Zones Zone 0 Zone 1 Zone 2 Most Hazardous Less Hazardous 9

Intrinsic Safety vs. Explosion Proof Intrinsic Safety Will not ignite the explosive atmosphere Voltage, current, and capacitance is designed to be low Component temperature does not exceed a threshold Internal spacing far enough apart to avoid arcing Explosion Proof Contains a potential explosion 10

Ex Codes IEC 60079 broken into a number of subsections Ex Code used to distinguish type of protection Ex ia intrinsically safe for zones 0, 1, 2 Ex ib intrinsically safe for zones 1, 2 Ex ic intrinsically safe for zone 2 Ex d Flameproof (explosion proof) 11

Zone Examples Zone 0 Inside a Tank Surface Casing Vent Instrumentation Vent (0.15m) Process Equipment Vent (0.5m min) Zone 1 Inside Well Shack Low Lying Areas Instrumentation Vent (0.5m) Process Equipment Vent (1.5m min) Zone 2 Zone 1 Zone 0 12

Zone Examples Zone 2 Outside Well Shack (3m) Instrumentation Vent (0.5m) Process Equipment Vent (1.5m min) Zone 1 Zone 2 13

Gas Groups Identifies the types of gases a product is approved for IIA (D) Propane, Methane IIB (C) Ethylene, Hydrogen Sulfide IIC (A + B) Hydrogen, Acetylene IIC is the most severe, while IIA is the least Product can be installed in an area with the designated gas group or a less severe group 14

Temperature Codes Specifies the maximum surface temperature of the product Helps set the ambient temperature rating of a product The lower the surface temp, the higher the allowable ambient temp Common Codes T2 300 C/572 F T3 200 C/392 F T4 135 C/275 F Several steps in between identified with letter A - D 15

Example Product Label Manufacturer Surface Temperature Model Number Serial Number Ex Code Class/Zone Certifier Logo Ambient Temperature Gas Group Other Instructions 16

Control Drawing Must be provided by the manufacturer Identifies Entity Parameters Allowable external connections that maintains safety Identifies Acceptable Zones 17

Crossing Zone Boundaries Prevent propagation of gas Zone 2 Zone 0/1 Sealed cables if below a minimum cable length Limit the transfer of energy Solar Radio PLC/ RTU Barrier Safe outputs in less hazardous area Charger Battery Intrinsic Safety (IS) Barrier Explosion Proof Protection 18

Questions? 19

Copyright Rights to this presentation are owned by the company(ies) and/or author(s) listed on the title page. By submitting this presentation to the Gas Well Deliquification Workshop, they grant to the Workshop, the Artificial Lift Research and Development Council (ALRDC), and the Southwestern Petroleum Short Course (SWPSC), rights to: Display the presentation at the Workshop. Place it on the www.alrdc.com web site, with access to the site to be as directed by the Workshop Steering Committee. Place it on a CD for distribution and/or sale as directed by the Workshop Steering Committee. Other use of this presentation is prohibited without the expressed written permission of the author(s). The owner company(ies) and/or author(s) may publish this material in other journals or magazines if they refer to the Gas Well Deliquification Workshop where it was first presented. 20

Disclaimer The following disclaimer shall be included as the last page of a Technical Presentation or Continuing Education Course. A similar disclaimer is included on the front page of the Gas Well Deliquification Web Site. The Artificial Lift Research and Development Council and its officers and trustees, and the Gas Well Deliquification Workshop Steering Committee members, and their supporting organizations and companies (here-in-after referred to as the Sponsoring Organizations), and the author(s) of this Technical Presentation or Continuing Education Training Course and their company(ies), provide this presentation and/or training material at the Gas Well Deliquification Workshop "as is" without any warranty of any kind, express or implied, as to the accuracy of the information or the products or services referred to by any presenter (in so far as such warranties may be excluded under any relevant law) and these members and their companies will not be liable for unlawful actions and any losses or damage that may result from use of any presentation as a consequence of any inaccuracies in, or any omission from, the information which therein may be contained. The views, opinions, and conclusions expressed in these presentations and/or training materials are those of the author and not necessarily those of the Sponsoring Organizations. The author is solely responsible for the content of the materials. The Sponsoring Organizations cannot and do not warrant the accuracy of these documents beyond the source documents, although we do make every attempt to work from authoritative sources. The Sponsoring Organizations provide these presentations and/or training materials as a service. The Sponsoring Organizations make no representations or warranties, express or implied, with respect to the presentations and/or training materials, or any part thereof, including any warrantees of title, non-infringement of copyright or patent rights of others, merchantability, or fitness or suitability for any purpose. 21