Click anywhere to get started…

Slides:



Advertisements
Similar presentations
Hazards Of Electricity
Advertisements

Electrical Hazards for Fire and Rescue Departments Part III: Fires Near High Tension Power Lines Captain I Gary C. Dize Health and Safety Division Fairfax.
9 Foundation Course Safety EKRS KARL DAVIES 1. Safety Philosophy At Foundation level, the emphasis is on avoidance of risk, not the skills for working.
Electrical Safety Scenarios
FHM TRAINING TOOLS This training presentation is part of FHM’s commitment to creating and keeping safe workplaces. Be sure to check out all the training.
Scissor Lift Safety Training
University of Wisconsin Eau Claire By: Chaizong Lor
Technician License Course Chapter 9 Lesson Module 22 Mechanical Safety.
By: Aseem Aggarwal. Causes of Electrocution Fatalities Contact with Overhead Power lines Contact with Live Circuits Poorly Maintained Extension Cords.
ELECTRICAL SAFETY Safety Training for the Non-Qualified.
Electrocution 44% Rigging Failure 15% Load Handling 14% Operator Error 7% Overload 7% Dismantling Boom 5% Wire Rope Failure 3% Miscellaneous 3% Struck.
Module 4: Overhead and Underground Power Lines. Overview of Module 4 Background on power lines Hazards of overhead and underground power lines Injury.
 Recognize the scope and structure of the OSHA standards.  Identify the common electrical hazards in long term care settings.  Discuss electrical safety.
Electrical Safety - Construction. Electricity - The Dangers About 5 workers are electrocuted every week Causes 12% of young worker workplace deaths Takes.
Purpose Power lines Equipment Assured Grounding GFCI Conclusion.
BUILDING TRADE SAFETY ELECTRICAL SAFETY.
Electrical Safety Safety Training Series
Safety Training For The Non-Qualified
ADVANCED ELECTRICAL SAFETY AWARENESS February 9, 2008 Guest Palace Hotel Doha, Qatar Engr. Amado B. Taduran Philippine Association of Safety Engineers.
Scissor Lift Safety Training Working Safely on Scissor Lifts 29 CFR OSHA Scaffolding Safety Requirements.
Electrical Safety INSTRUCTOR’S NOTES:
Electrical Safety. Defective Insulation To protect you, electrical wires are insulated by a plastic.
Electrical Safety INSTRUCTOR’S NOTES:
Electrical Safety INSTRUCTOR’S NOTES:
Electrical Safety.
Copyright  Progressive Business Publications Electrical Safety.
Electricity. Electricity Electric shock happens when a person becomes part of an electrical circuit and the current flows through their body. When an.
1a.  Exposed part  Live or energized part  De-energized part 1a.
Electrical Safety. Definitions v Exposed part v Live or energized part v De-energized part 1a.
Accommodation & Hospitality Services STAFF BRIEFING – No 16 Electrical Safety.
1 Chelmsford Amateur Radio Society Foundation Licence Course Murray Niman G6JYB Slide Set 9: v1.1, 15-Dec-2007 (9) Safety Chelmsford Amateur Radio Society.
Pennsylvania Bureau of Deep Mine Safety Lockout/Tagout Program.
Electrical Safety, Subpart K
Overhead and Underground Power Line Safety 1 Quentin Baker Director of Safety
San Francisco Electricians. Why Do You Need to Call an Electrician? Most of us have studied that one subject about circuits, electricity, and electrons.
UNIT-5. ELECTRICAL SAFETY, WIRING & INTRODUCTION TO POWER SYSTEM
Lightning Safety.
Session 3: Struck-By, Caught-In or Between, and Energy Release Hazards
Electrical Safety Equipment
Safeguarding Machinery
LINE CLEARANCE TREE TRIMMING OPERATIONS Quad State Instructors, Inc.
Personal Protective Equipment
Click anywhere to get started…
Click anywhere to get started…
Click anywhere to get started…
A4 Insulator Changeout.
Electrical Safety.
Click anywhere to get started…
Cutting an In-Line Dead-end Single Phase
Click anywhere to get started…
Click to start.
flying stones pandrol clips falling branches sleepers
Click to start.
Click anywhere to get started…
Click anywhere to get started…
Line Clearance Tree Trimming Operations
Click anywhere to get started…
Basic Electrical Safety
A. At all times except when climbing the tower
(Next Slide) Click to get started….
A4 Insulator Changeout © 2018 Iowa Association of Electric Cooperatives.
C3 Insulator Changeout With Jib
A 3 Insulator Changeout With Hoists
Click anywhere to get started…
C3 Insulator Changeout With Hoists
Line Down Single phase © 2018 Iowa Association of Electric Cooperatives.
Cutting an In-Line Dead-end Single Phase
A1 Pole Changeout Energized
Cutting an In-Line Dead-end Single Phase
Cranes and Hoists Standard 29 CFR Part
Presentation transcript:

Click anywhere to get started…

Utilities - Safely Installing and Removing Overhead Power Lines

What’s at Stake? When you install or remove overhead lines, you must protect yourself and others against hazards that could expose you to shock, electrocution, falls, flying and falling objects, and burns. What’s at Stake? When you install or remove overhead lines, you must protect yourself and others against hazards that could expose you to shock, electrocution, falls, flying and falling objects, and burns.

What’s the Danger? Beware when: Setting, moving, or removing a power pole near any exposed live conductor Electricity can arc out from a point of contact and the area around a conduction point Poles, towers, and other elevated structures that aren’t strong enough to withstand the stresses placed on them What’s the Danger? Working near high voltage power lines carries considerable risk for anyone in the surrounding area. When setting, moving, or removing a power pole near any exposed live conductor, the pole could contact the conductor and energize the pole and/or damage the conductor, creating multiple hazards for a work crew. Electricity can arc out from a point of contact and the area around a conduction point, such as a crane that has touched a live power line, can become electrically charged. This means electrocution can occur even if a worker is not in direct contact with the power line. Poles, towers, and other elevated structures that aren’t strong enough to withstand the stresses placed on them could collapse.

How to Protect Yourself 5 ways to stay safe when installing or removing overhead power lines Don’t touch Have the utility company turn off the electricity if possible.   Wear PPE if working on, or near, live lines. Use the tension stringing method, barriers, or other physical measures. How to Protect Yourself 5 ways to stay safe when installing or removing overhead power lines Don’t touch Have the utility company turn off the electricity if possible.   Wear PPE, including appropriate rubber gloves, footwear and goggles if working on, or near, live lines. Use the tension stringing method, barriers, or other physical measures to prevent conductors and cables from contacting live lines or equipment.

How to Protect Yourself Loading and load safety Keep the load line attached Maintain control of tower sections Make sure the load stays balanced Reinforce the pole Use equipment correctly Use reel-handling equipment with caution Level and align equipment Don’t exceed the ratings of any equipment Loading and load safety Keep the load line attached to a tower section until it is fully secured. Use tag lines (or similar devices) to maintain control of tower sections while raising or positioning them. Make sure the load stays balanced and manageable within crane load limits. If a pole cannot withstand the load, it must be reinforced using devices like bracing poles and guy wires. Use equipment correctly Use reel-handling equipment, including pulling and tensioning devices, with extreme caution to prevent cables from snapping. Level and align equipment. Don’t exceed the ratings of any equipment, e.g.includes stringing lines, pulling lines, rigging, hoists, conductor grips, and load-bearing hardware and accessories.

How to Protect Yourself Keep a look out Check the “drop zone” is clear of other workers. Keep an eye on the weather. Stay alert for failure of wire or cable that’s being pulled. Watch out for failure of any previously installed lines or equipment. Keep a look out Check the “drop zone” under any tower or structure that is being moved or worked on, is clear of other workers. Keep an eye on the weather: In a thunderstorm, workers must not begin or resume work for at least thirty minutes after hearing the last thunderclap; In high winds that could reduce minimum approach distances; Beware of snow, ice and rain storms. Stay alert for any failure of the wire or cable that’s being pulled. Watch out for failure of any previously installed lines or equipment.

How to Protect Yourself Conductors Stop conductors from sagging into energized lines Turn off energized line with reclosing devices Activate “one-shot” operation Newly installed conductors can create a risk of induced voltage Conductors Stop conductors from sagging into energized lines by using: tensioning equipment; barriers; and other means. If the energized lines have reclosing devices, they must be turned off during the pulling operation. When pulling over energized lines, activate “one-shot” operation to prevent breakers from automatically reclosing after any fault.   Newly installed conductors can create a risk of induced voltage so: grounds must be installed on the new conductors so that every point is within 2 miles (3km) of a ground; grounds must remain in place until all other installation work is done; and Additional working grounds must be installed on the conductors at all terminating ends and at locations where workers are tying in the new conductors.

Final Word Installing and removing overhead power lines requires a high level of concentration. Workers have to be aware of both the risks involved in working with heavy machinery used to move the structures, as well as the risks of working near live power lines. Final Word Installing and removing overhead power lines requires a high level of concentration. Workers have to be aware of both the risks involved in working with heavy machinery used to move the structures, as well as the risks of working near live power lines.