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Resistance of a Single Earth Electrode

earth_rod

The resistance of a single earth can be calculated if the soil resistivity is known. An earth rod driven vertically, the electrode resistance can be calculated using the following formula.

image001

where:

R = electrode resistance, ?

? = Soil resistivity, ?-m

L = Length of electrode buried in soil, m

D = Outer diameter of earth rod, m

Note: In Australia the minimum depth of vertical type earth electrode is 1.2 m [Clause 5.3.6.3, AS/NZS 3000 - 2007]

The soil resistivity at the location of the earth rod needs to be investigated. The resistivity of soils varies with

  1. the depth from the surface,
  2. the type and concentration of soluble chemicals in the soil,
  3. the moisture content, and
  4. the soil temperature.

In other words, the soil resistivity is dependent on the electrolyte in the soil. The presence of surface water does not necessarily indicate low resistivity.

In the absence of soil investigative data, typical resistivity of various soil types is given in the following table.

Typical soil resistivity (IEEE 142)

Soil Type Average Resistivity ?
Well-graded gravel 600 - 1000
Poorly graded gravel 1000 - 2500
Clayey gravel 200 - 400
Silty sand 100 - 800
Clayey sands 50 - 200
Silty or clayey sand with slight plasticity 30 - 80
Fine sandy soil 80 - 300
Gravelly clays 20 - 60
Inorganic clays of high plasticity 10 - 55

Example:

Soil resistivity = 180 ?-m

Earth rod = 19Ø x 1.8 m

Solution:

Assuming that the earth electrode is fully driven into the ground, the resistance will be

Earth rod 3

Earth rod 4

In the event that the desired soil resistivity is not achievable using a single earth electrode, multiple electrodes could be used. The multiplying factors for multiple electrodes are given in the following table

Multiplying Factor of Multiple Electrodes(IEEE 142)

Number of electrodes Factor
2 1.16
3 1.29
4 1.36
8 1.68
12 1.80
16 1.92
20 2.00
24 2.16

References

  1. IEEE 142 (Green Book) 2007IEEE Recommended Practice for Grounding of Industrial and Commercial Power Systems
  2. Practical Grounding, Bonding, Shielding and Surge ProtectionG. Vijayaraghavan, Mark Brown, Malcolm BarnesNewnes 2004 - IDC Technologies
  3. AS/NZS 3000 - 2007 Wiring Rules

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5 Responses

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  1. Charlie says

    s.pangonilo.com – da best. Keep it going!

  2. Wael says

    thanks a lot for your information
    but i want to know how can i no the exact number of earthing electrodes?

  3. Ver says

    Depending on your country, there is an allowable maximum earthing resistance. In Australia, for lightning protection, 10-ohms. The result of your calculation should not be greater than the acceptable value.

    You may want to see also this article.

    Thanks for asking.

  4. eric says

    Ver, I am Eric from Muscat, Oman. Pinagsusubmit kasi kami ng consultant para sa computation ng group resistance sa lahat ng electrodes sa buong runways and taxiways. confuse ako kasi mahigit 500 units ang gagamitin namin which is wala na sa list ng 7430 ang factor.
    ito ung mga give:
    Soil Resistance: 9.5 ohm-meter, silty sand
    Length of Rod: 3 meters, driven full length
    Diameter: 16mm
    Material: Solid Copper
    Spacing: 120m

    kailangan ko po ng Group resistance, salamat po.

  5. Ver says

    Hi Eric,

    Di ko alam kung ano ang standard ng Oman, pero kung base sa Australian standard (AS 1768), which is derived from IEC TC 81, ang group resistance ng mga earth rods kung ang spacing between earth rods ay mahigit sa 2x Earth rod lengths is equal to the parallel resistances of all the single earth rod resistances. To quote:

    AS 1758-2007
    Where the desired resistance can be achieved with only a few additional earthing electrodes
    and if the separation between the earthing electrodes is greater than their lengths (see Note),
    then the resultant resistance may be calculated by using the ordinary equation for
    resistances in parallel. In other situations the combined resistance owing to the mutual
    interaction between the earthing electrodes, will be always higher than given by this
    equation.
    NOTE: For practical purposes, the separation between vertical earthing electrodes can be taken as
    twice the length of the earthing electrode.

    Kung ang spacing mo ay 120m, ito may malayong higit sa 2x3m, kaya ang formula na ito ay valid.


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