Bus Duct System: 5 Smart Reasons to Replace Heavy Cables

Share:
Industrial Electrical Systems
Bus Duct System: 5 Smart Reasons to Replace Heavy Cables

Busbars inside a metal enclosure carry thousands of amps in a neat, compact and easily extended route.

Busway Plug In Tap Off Sandwich Busbar Power Distribution

A bus duct is a prefabricated metal enclosure containing copper or aluminium busbars that carries high current from transformers to switchboards and loads. It often replaces several parallel runs of heavy cable.

Hello everyone, today we are going to learn what a bus duct is, the main types used in plants and buildings, and why it often beats heavy cables for high current distribution.
bus duct

What Is a Bus Duct?

A bus duct, also called busway, is a factory built system of insulated busbars inside a grounded sheet metal housing. It carries power between transformers, switchboards and distribution points, working on the same principles covered in our busbar sizing guide.

Current Midwest describes busway as a sheet metal duct containing copper or aluminium busbars, with ratings from about 100 A up to 6500 A. It was first introduced in 1932 for the automotive industry.

Low voltage busway run mounted overhead in an industrial building
Image credit: Current Midwest

Sections bolt together like building blocks, with elbows, tees and flanged ends. Tap off units plug into outlets along the length to feed machines or distribution boards.

Where a transformer feeds a main switchboard through a short, high current link, busway is often neater than many parallel cables pulled through a crowded cable tray.

5 Smart Reasons to Choose Busway

1
Compact Route
Carries very high current in a small cross section.
2
Fast Installation
Prefabricated sections bolt together quickly.
3
Flexible Tap Offs
Loads can be added or moved without rewiring.
4
Low Voltage Drop
Close phase spacing gives low reactance.
5
High Fault Withstand
Rigid bars and supports resist short circuit forces.

Reason 3 is why busway is loved in factories and data centres. When a production line changes, a plug in unit can be moved instead of pulling new cable.

Reason 5 matters at high fault levels near transformers. Check the rated short time current against results from short circuit current calculation.

Main Types of Busway

Feeder Busway

No outlets, used to move bulk power from point to point.

Best for: transformer to switchboard links
Bulk Power
Plug In Busway

Outlets along the length accept tap off units.

Best for: factory floors and risers
Flexible
Sandwich Busway

Bars pressed together with thin insulation for compact size.

Best for: high rise buildings and data centres
Compact
Air Insulated Busway

Bars separated by air and supports.

Best for: outdoor and MV links
Ventilated

At medium voltage, non segregated, segregated and isolated phase bus ducts are used, especially between generators and transformers in power plants.

Data centres use busway overhead to feed rack power units, as discussed in data center power distribution.

Bus Duct vs Cable Comparison

FeatureBus DuctParallel Cables
Space neededSmallLarge trays or trenches
Installation timeShortLong for heavy runs
Future changesEasy with tap offsNeeds new cables
Voltage dropLowHigher due to spacing
Initial costHigher for short runsLower for short runs
Fire loadLowHigher insulation volume

For long feeders above roughly 1000 A, busway often wins on total installed cost once labour, trays and space are included. For small currents, cable is usually cheaper.

Always compare the full picture, including cable derating for grouping, which can force much larger cables than expected.

Bus Duct Voltage Drop Formula

Vd = √3 × I × L × (R cos φ + X sin φ)

R, X = resistance and reactance per metre per phase
I = load current, L = length

Worked example, 1600 A copper busway:
R = 0.03 mΩ per m, X = 0.02 mΩ per m (example values)
L = 50 m, power factor 0.85, sin φ = 0.527
Vd = 1.732 × 1600 × 50 × (0.0255 + 0.0105) mΩ
Vd ≈ 5.0 V, about 1.2 percent of 415 V

Always take R and X from the maker catalogue for the exact rating and material. Aluminium busway has higher resistance than copper for the same current rating.

The result should meet the limits used in voltage drop calculation, typically a few percent for feeders.

Installation and Maintenance Tips

Keep bus duct routes away from corrosive vapours and water unless the enclosure rating suits the area. Current Midwest notes busway cannot be installed where corrosive vapours are present.

Choose the enclosure IP rating to suit the site, as explained in IP rating. Outdoor sections need weatherproof covers and drainage.

Torque every joint to the maker value and recheck during shutdowns. Thermal imaging of joints under load is the best way to catch loose connections early.

Where Busway Is Used

Transformer Links
Short high current connection to the main switchboard.
Factory Floors
Plug in feeders above production lines.
High Rise Risers
Vertical distribution to each floor.
Data Centres
Overhead power to rack PDUs.
Power Plants
Generator to transformer isolated phase ducts.
Hospitals and Malls
Reliable, low fire load distribution.

Busway often feeds a motor control center or several distribution boards from one main incomer.

Fire barriers are needed where the duct passes through walls and floors. Use the maker approved fire stop kits to maintain the building fire rating.

Busway Voltage Drop Calculator

Three Phase Busway Drop
Voltage drop
4.99 V, 1.20 percent

Use catalogue R and X at operating temperature for accurate results. The calculator treats a balanced three phase load.

Advantages
  • Compact and tidy high current routes.
  • Quick installation and easy extension.
  • Low voltage drop and reactance.
  • Low fire load compared with cables.
Limitations
  • Higher cost for short, low current runs.
  • Needs accurate route planning.
  • Joints require periodic inspection.
  • Not suitable for corrosive areas without protection.

Busway Selection and Application Guide

PDF
SENTRON Busway Systems Selection and Application Guide
Siemens guide with busway types, ratings and application data

Busway Explained Video

Bus Duct FAQ

What is a bus duct?
A metal enclosure with busbars that distributes high current like a rigid cable.
What is the difference between busway and bus duct?
They are the same thing, with busway being the common American term.
What ratings are available?
From about 100 A up to 6500 A in low voltage systems.
What is a plug in busway?
Busway with outlets for tap off units along its length.
Is copper or aluminium better?
Copper is smaller and more conductive, aluminium is lighter and cheaper.
Does busway need maintenance?
Yes, mainly joint torque checks and thermal imaging.
Where is sandwich busway used?
In risers and compact routes in buildings and data centres.

Related Articles

External References

What We Learn Today

  • Busway carries high current in a compact, prefabricated metal enclosure.
  • Plug in tap offs make it easy to add or move loads.
  • Low reactance gives low voltage drop, but joints need regular checks.
I hope you like above blog. There is no cost associated in sharing the article in your social media. Thanks for reading!! Happy Learning!!

Leave a Reply

Your email address will not be published. Required fields are marked *