DocumentCode :
3302831
Title :
Laboratory model study for granular pile with various backfill materials
Author :
Al-Waily, Maki Jafar Mohammed
Author_Institution :
Found. of Tech. Educ., Al-Musiab Tech. Inst., Babylon, Iraq
fYear :
2012
fDate :
7-8 Nov. 2012
Firstpage :
1
Lastpage :
7
Abstract :
In this work, laboratory experiments have been carried out to study the bearing capacity ratio which is defined as ratio of the bearing capacity of treated soil with granular pile to the bearing capacity of untreated soil at a given settlement for the foundation. A laboratory setup was used electronic load cell to measure the applied load to the soil-granular pile system and used the displacement transducer to measure the settlement. Granular piles made of crushed stone or gravel or sand with a diameter of 50 mm were installed in very soft clays having undrained shear strength ranging between 13 and 21 kPa. Two ratios of the length to diameter were tried, namely 5.2 and 4. The experimental tests showed that the granular pile using crushed stone as backfill material provided a highest bearing capacity ratio equal to 1.6 and 1.5 for the soil having a shear strength = 13 kPa at the two ratios of length to diameter respectively.
Keywords :
clay; displacement measurement; foundations; geotechnical engineering; granular materials; rocks; sand; shear strength; soil; transducers; backfill materials; bearing capacity ratio; crushed stone; displacement transducer; electronic load cell; foundation settlement; gravel; laboratory experiments; laboratory model study; load measurement; sand; settlement measurement; soft clays; soil-granular pile system; treated soil; undrained shear strength; Displacement measurement; Laboratories; Load modeling; Materials; Soil; Soil measurements; Transducers; Granular pile; backfill materials; laboratory model; various;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering Sciences (FNCES), 2012 First National Conference for
Conference_Location :
Baghdad
Print_ISBN :
978-1-4673-5033-4
Type :
conf
DOI :
10.1109/NCES.2012.6740464
Filename :
6740464
Link To Document :
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