Top Banner
Shielding Transmission Lines against Lightning ATUG Jonathan Johnson Michael Garrels
48

Shielding Transmission Lines against Lightning

Dec 07, 2021

Download

Documents

dariahiddleston
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Shielding Transmission Lines against Lightning

Shielding

Transmission Lines

against Lightning

ATUG

Jonathan Johnson

Michael Garrels

Page 2: Shielding Transmission Lines against Lightning

Outline

• Theory

• Setting up models in PLS-CADD

• Using the PLS-CADD tool

Page 3: Shielding Transmission Lines against Lightning

THEORY

Page 4: Shielding Transmission Lines against Lightning

Lightning Design

Lightning

Parameters

Insulation

Level

Structure

Geometry

Structure

and Line

Resistance

Performance

Estimate Model ≤

Performance

Requirements

Page 5: Shielding Transmission Lines against Lightning

Shield Angle

*From RUS Bulletin 1724E-200 Page 8-6

Page 6: Shielding Transmission Lines against Lightning

• Rolling Sphere has been around since the late 1950s

• NFPA 780, IEC TC81, BS 6651, IEEE STD 1243

• and a multitude of other standards

Rolling Sphere

Page 7: Shielding Transmission Lines against Lightning

What’s the difference?

Shield Angle Rolling Sphere Check an angle, with different angles

for different heights

Check a circle, circle’s curvature

incorporates variation with height

Ignore structure resistance Circle radius a function of

structure resistance

Ignore operating voltage Circle radius a function of

operating voltage

Ignore terrain

(transversely at structure) Check model with terrain

Ignore terrain

(longitudinally along span) Check model along span

GO / NO GO Estimates performance metric

Page 8: Shielding Transmission Lines against Lightning

Why change now?

• PLS-CADD now has a rolling

sphere tool!

• Much faster for checking

– Terrain

– Multiple structures

• Structure adjustments must be

done manually

8

Page 9: Shielding Transmission Lines against Lightning

Implementation

• Implementation

– Change the design process as little as possible

– Emphasize “manually” checking to teach vocabulary and process

– Allow but don’t require PLS-CADD

• Look up sphere radius in a table based on – Operating voltage

– Structure impedance

• Performance targets

– Mandate projects stay within the range of model

• Limit striking distance range

• Limit ground resistance range

Page 10: Shielding Transmission Lines against Lightning

Future Work

• Problems with lightning models

– No model has been calibrated against real world

outages

– Large degree of freedom in aggregating performance

metrics along the length of a line

• Opportunities for PLS-CADD

– Measure the rolling sphere radius

– Error checking the terrain TIN

– Error checking the shielding TIN

Page 11: Shielding Transmission Lines against Lightning

SETTING UP A LINE MODEL

Page 12: Shielding Transmission Lines against Lightning

Number of Models

• NSP - 852 SPS - 1263 PSCO - 472

Page 13: Shielding Transmission Lines against Lightning

TIN Sizing

• Basically need sphere diameter x 2 plus structure width to properly

connect the circles to the ground.

Page 14: Shielding Transmission Lines against Lightning

Open Template Model

Page 15: Shielding Transmission Lines against Lightning

Assign Zone and Load IMP file

Page 16: Shielding Transmission Lines against Lightning

Create TIN

Page 17: Shielding Transmission Lines against Lightning

Z adjustments

• Survey data shows differences in time for a given ground profile

• The average TIN elevation difference is usually going to be within a few

inches to a few feet throughout a given model, but any given structure

can be off by a substantial amount 20 feet.

• A PI Z adjustment is the most accurate way of assessing a model.

Page 18: Shielding Transmission Lines against Lightning

Example –TIN Comparison

5516-5569 WSG-BLG

Average – 0.14 ft

Standard deviation – 1.91 ft

Max – 6.559 ft

Median – 0.18 ft

Page 19: Shielding Transmission Lines against Lightning

Shift everything down to 0

Page 20: Shielding Transmission Lines against Lightning

Shift Structures back

Page 21: Shielding Transmission Lines against Lightning

LIGHTNING DESIGN IN

PLS-CADD

Page 22: Shielding Transmission Lines against Lightning

Run LPC

Page 23: Shielding Transmission Lines against Lightning

LPC Settings

Page 24: Shielding Transmission Lines against Lightning

Display Lightning TIN

Page 25: Shielding Transmission Lines against Lightning

Understanding the Report

Page 26: Shielding Transmission Lines against Lightning

Examples – Exposed phase wire

Page 27: Shielding Transmission Lines against Lightning

Examples – Triple Circuit

Page 28: Shielding Transmission Lines against Lightning

Examples – Single Static

Page 29: Shielding Transmission Lines against Lightning

Examples – Multiple Alignments

Page 30: Shielding Transmission Lines against Lightning

Examples – Quad Circuit

Page 31: Shielding Transmission Lines against Lightning

Examples – Crossing problems

Page 32: Shielding Transmission Lines against Lightning

Examples – Crossing problems

Cont.

Page 33: Shielding Transmission Lines against Lightning

Examples – Crossing Cont.

Page 34: Shielding Transmission Lines against Lightning

Examples – Mtn. Side Slopes

Page 35: Shielding Transmission Lines against Lightning

Examples – Valleys

Page 36: Shielding Transmission Lines against Lightning

Examples – Valleys Cont.

• The conductor sags 230 ft above valley

floor. The sphere rolls under the wires.

Page 37: Shielding Transmission Lines against Lightning

Examples – Canyon

Page 38: Shielding Transmission Lines against Lightning

Examples – Canyon Cont.

Page 39: Shielding Transmission Lines against Lightning

Issues- 18.25’ Arm

Page 40: Shielding Transmission Lines against Lightning

Issues-23’ Outside Arm

Page 41: Shielding Transmission Lines against Lightning

Issues-25’ Outside Arm

Page 42: Shielding Transmission Lines against Lightning

Issues-25’ Outside Arm 1’ Inside Arm

Page 43: Shielding Transmission Lines against Lightning

Extreme side slope

Page 44: Shielding Transmission Lines against Lightning

Issues

Page 45: Shielding Transmission Lines against Lightning

Issues Cont.

Page 46: Shielding Transmission Lines against Lightning

Issues Cont.

Page 47: Shielding Transmission Lines against Lightning

Issues Cont.

Page 48: Shielding Transmission Lines against Lightning

QUESTIONS?!?