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dc.contributor.advisor Jayasinghe, MTR
dc.contributor.advisor De Silva, LIN
dc.contributor.advisor Karunawardena, A
dc.contributor.author Kumara, JMP
dc.date.accessioned 2018-10-19T19:56:46Z
dc.date.available 2018-10-19T19:56:46Z
dc.identifier.uri http://dl.lib.mrt.ac.lk/handle/123/13631
dc.description.abstract The design of embankments on weak foundation soils is a challenge to the geotechnical Engineer. There are several issues related to bearing capacity failures, intolerable settlements and slope instability that need to be addressed. The piled embankments with the inclusion of a geosynthetic layer have proved to be one of the economic and effective techniques to handle such problems. The inclusion of the geosynthetic reinforcement eliminates the need for inclined piles used in conventional piled embankments for resisting large lateral pressures. The geosynthetic layer enhances the load transfer mechanism and considerably minimizes the differential and maximum settlements. This study attempts to analyze the various methods available today for the design of these structures. A numerical study is carried out. The effects of certain factors like pile modulus, stiffness of the geosynthetic reinforcement, height of the embankment, effect of the soil layer directly below the geogrid which are not considered by other available methods aire studied using a finite element program - Plaxis 2D. The results from two design methods are evaluated and compared with the results from Plaxis. It is found that numerical analysis was able to address many factors that were neglected by all the other available methods. It was also found to be more reliable than currently used methods. The German Draft Standard (EBGEO) approaches the numerical Plaxis calculations better than British Standard 8006 ii en_US
dc.language.iso en en_US
dc.subject Geosynthetic reinforced pile supported embankments en_US
dc.subject Geosynthetic en_US
dc.subject reinforced pile en_US
dc.subject Geosynthetic reinforced pile en_US
dc.title Geosynthetic reinforced pile supported embankments en_US
dc.type Thesis-Abstract en_US
dc.identifier.faculty Engineering en_US
dc.identifier.degree Master of Engineering in Structural Engineering Design en_US
dc.identifier.department Department of Civil Engineering en_US
dc.date.accept 2015-07
dc.identifier.accno 109272 en_US


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