Showing posts with label Electrical Power. Show all posts
Showing posts with label Electrical Power. Show all posts

Thursday, January 14, 2016

January 14, 2016

How Voltage Drop Affect Electrical Equipment and Installations

In an electrical installation, determination of voltage drop from the point of supply to the load is very important. Excessive voltage drop on the supply line impacts most electrical equipment but not to the same degree. The effect of voltage drop on some key electrical equipment is given below.

Effects of Voltage Drop

Electric Motors
In an electric motor, the torque is proportional to the square of the supply voltage. Therefore, if the voltage drops the starting torque will also decrease, making it more difficult to start up motors. The maximum torque will also decrease .
Incandescent Lamps
The more the voltage drops the weaker the beam becomes and the light takes on a reddish tone.
Discharge Lamps
In general, they are not very sensitive to small variations in voltage, but in certain cases, great variation may cause them to switch off.
Electronic Appliances
They are very sensitive to
variations in voltage and that is why they are often fitted with internal stabilizer circuitry.
Electromechanical Devices
Devices such as contactors and auxiliary releases have a minimum voltage below which their performances cannot be guaranteed. For a contactor, for example, the
holding of the contacts becomes unreliable below 85% of the rated voltage.
Voltage Drop Limits for Electrical Installations
To limit the problems of voltage drop on electrical equipment, the IEC 60364-5-52 
Electrical installations of buildings. Selection and erection of electrical equipment - Wiring systems 
Annex G states that the voltage drop between the origin of an installation and any load point should not be greater than certain limits specified in the table below expressed with respect to the value of the nominal voltage of the installation:

Type of Installation Lighting (%) Other Uses (%)
A - low voltage installation supplied directly from a public low voltage distribution system 3 5
B - Low voltage installation supplied from a private low voltage supply. 6 8
Notes:
1. As far as possible, it is recommended that voltage drop within the final circuits do not exceed those recommended for type A installations.
2. When the main wiring systems of the installation are longer than 100 m, these voltage drops may be increased by 0.005% per meter of wiring system beyond 100 m without this supplement being greater than 0.5%
3. Voltage drop is determined from the demand by the current using equipment, applying diversity factors where applicable or from the values of the design current of the circuits

Exceptions to the IEC 60364-5-52 standard
A greater voltage drop may be accepted for

  • Electric motors during starting period
  • For other electrical equipment have high in-rush current
Provided that in both cases it is ensured that the voltage variations remains within the limits specified in the relevant equipment standard
The following temporary conditions are excluded from the voltage drop restrictions in the table above:
  • Voltage transients
  • Voltage variation due to abnormal operation

Wednesday, December 23, 2015

December 23, 2015

Basics of Explosive Atmospheres

An explosive atmosphere is an atmosphere that develops explosively because of an uncontrollable combustion. Explosive atmosphere consists of air and some sort of combustible material such as gas, vapours, mists or dust in which the explosion spreads after ignition. Typical examples of productions where combustible dust is of major concern, is the handling of cereals, animal feed, paper, wood, chemicals, plastics and coal.

Sources of Ignition

Sources of ignition that can cause the atmosphere to explode are listed below:

Common Sources of Ignition
Electrical sparks
Flames
Hot surfaces/ spots
Static electricity
Electromagnetic radiation
Chemical reaction
Mechanical forces
Mechanical friction
Compression ignition
Acoustic energy
Ionizing radiation

Fire Triangle

For an explosion to take place, three elements have to be present at the same time: fuel (such as explosive gas) , an oxidizer (such as the oxygen in the air) and a source of ignition (such as electrical sparks). The combination of these three elements is generally referred to as the Fire Triangle.

Explosion Limits for Typical Combustible Gases

For an explosive atmosphere to form, a certain concentration of combustible material must be present. When the concentration of combustible material is too low (lean mixture) or too high (rich mixture), no explosion will take place. In that case only a slow combustion or none at all will occur. It is only within the range of the upper and the lower explosion limit that the mixture of fuel and oxidizer reacts explosively when exposed to a source of ignition and becomes very devastating in terms of the scale of destruction.
Below are the lower and upper explosion limits of some common gases which may exist in the atmosphere where electrical or electronic equipment are installed:

Substance Designation
Lower Explosion Limit (Vol. %)
Upper Explosion Limit (Vol. %)
Acetylene
2.3
78.0 (self decomposing)
Ethylene
2.3
32.4
Gasoline
0.6
8.0
Benzol
1.2
8.0
Natural gas
4.0 - 7.0
13.0 - 17.0
Heating Oil/Diesel
0.6
6.5
Methane
4.4
16.5
Propane
1.7
10.9
Carbon Disulphide
0.6
80.0
Town gas
4.0 - 6.0
30.0 - 40.0
Hydrogen
4.0
77.0