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Determination of geotechnical characteristics of soil is either to use the field samples to measure the characteristics of
soil through laboratory test or measuring the characteristics directly in the field. Field test can be derived similar value by considering
characteristics of site and laboratory test can be confirmed the characteristic of soil by testing with field samples. This article describes
relative density as the measure of compaction for cohesionless soils and presents several simple and mathematical relationships to
help engineers estimate needed parameters for relative density calculations. The main purpose of this research is to investigate possible
correlations between coefficient of uniformity, coefficient of curvature, maximum and minimum void ratio, mean grain size. Results
show a linear relationship between the minimum and maximum void ratios and a power function relationship between coefficient
of uniformity and the limiting void ratios. Void ratio range, which is the difference between the maximum and minimum void ratios,
appeared to be log normally distributed but showed no simple mathematical fit to the data. these results were shown to help engineers
estimate needed parameters for relative density calculations.
Determination of geotechnical characteristics of soil is either to use the field samples to measure the characteristics of
soil through laboratory test or measuring the characteristics directly in the field. Field test can be derived similar value by considering
characteristics of site and laboratory test can be confirmed the characteristic of soil by testing with field samples. This article describes
relative density as the measure of compaction for cohesionless soils and presents several simple and mathematical relationships to
help engineers estimate needed parameters for relative density calculations. The main purpose of this research is to investigate possible
correlations between coefficient of uniformity, coefficient of curvature, maximum and minimum void ratio, mean grain size. Results
show a linear relationship between the minimum and maximum void ratios and a power function relationship between coefficient
of uniformity and the limiting void ratios. Void ratio range, which is the difference between the maximum and minimum void ratios,
appeared to be log normally distributed but showed no simple mathematical fit to the data. these results were shown to help engineers
estimate needed parameters for relative density calculations.
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- Publisher :Korean Geo-Environmental Society
- Publisher(Ko) :한국지반환경공학회
- Journal Title :Journal of the Korean Geo-Environmental Society
- Journal Title(Ko) :한국지반환경공학회 논문집
- Volume : 14
- No :3
- Pages :13~17


Journal of the Korean Geo-Environmental Society




