DocumentCode
3250611
Title
Effects of Moisture Contents in Soil and Impulse Polarity of Earth Electrode Under High Impulse Conditions
Author
Idris, N.A. ; Nor, N. Mohamad ; Ahmad, H.
Author_Institution
TM R&D Sdn. Bhd., Selangor
fYear
2006
fDate
38869
Firstpage
822
Lastpage
827
Abstract
The study on the physics of discharges in soil and performance of earthing networks subjected and obtain better electrical models of earthing systems. In this study, the characteristics of medium grain size sand of different moisture contents and impulse polarity are investigated. The soil characteristics of various moisture contents under high impulse currents have been well studied in previous work. Until today, no publication has been made on the dry soil characteristics and no direct comparisons has been made between the characteristics of dry and wet soils under impulse conditions. This paper is therefore aimed to observe the characteristics of dry and wet soil under both impulse polarities. The results were discussed based on its voltage and current traces, impulse resistances and breakdown characteristics of the cylindrical test cell
Keywords
discharges (electric); earth electrodes; impulse testing; ionisation; moisture; soil; breakdown characteristics; breakdown voltage; cylindrical test cell; discharges; dry soil characteristics; earth electrode; earthing networks; earthing systems; electrical models; impulse impedance; impulse polarity; impulse resistances; impulse tests; moisture content; soil ionization; thermal effect; wet soil characteristics; Breakdown voltage; Circuit testing; Earth; Electrodes; Grain size; Grounding; Impulse testing; Ionization; Moisture; Soil; Soil ionization; breakdown voltage; impulse impedance; non-linearity; thermal effect;
fLanguage
English
Publisher
ieee
Conference_Titel
Properties and applications of Dielectric Materials, 2006. 8th International Conference on
Conference_Location
Bali
Print_ISBN
1-4244-0189-5
Electronic_ISBN
1-4244-0190-9
Type
conf
DOI
10.1109/ICPADM.2006.284304
Filename
4062793
Link To Document