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Numerical investigation of the soil replacement effectiveness in swelling clays / Dalia Abdel Moneim Ali Mohamed Aborageh ; Supervised Hussein H. Mamlouk , Sherif Adel Akl , Mohamed Eltaher

By: Contributor(s): Material type: TextLanguage: English Publication details: Cairo : Dalia Abdelmoneim Ali Mohamed Aborageh , 2019Description: 172 P. : charts , facsimiles ; 30cmOther title:
  • تحقيق عددى لفاعلية استبدال التربة فى حالة الطين الانتفاشى [Added title page title]
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Dissertation note: Thesis (Ph.D.) - Cairo University - Faculty of Engineering - Department of Civil Engineering Summary: The first part of the present thesis concerns with performing a numerical simulation of the swelling pressure test to evaluate the effect of SWCC shape on the swelling pressure. The second part concerns with performing a simulation of the replacement method to evaluate its effectiveness on the heave. The effect of the building stiffness on the swelling deformation was also studied. The impact of increasing the building stiffness of the first two stories of the building on the swelling deformation was also studied. The influence of the replacement soil depth and the building stiffness on the differential upward movement in different stories of a building was investigated. The ABAQUS software and Regina clay are used in this analysis. The present results show that the swelling pressure increases with decreasing the initial water content and increasing the initial soil suction. Higher replacement soil stiffness increases the differential heave between footings
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Thesis قاعة الرسائل الجامعية - الدور الاول المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.13.05.Ph.D.2019.Da.N (Browse shelf(Opens below)) Not for loan 01010110078895000
CD - Rom مخـــزن الرســائل الجـــامعية - البدروم المكتبة المركزبة الجديدة - جامعة القاهرة Cai01.13.05.Ph.D.2019.Da.N (Browse shelf(Opens below)) 78895.CD Not for loan 01020110078895000

Thesis (Ph.D.) - Cairo University - Faculty of Engineering - Department of Civil Engineering

The first part of the present thesis concerns with performing a numerical simulation of the swelling pressure test to evaluate the effect of SWCC shape on the swelling pressure. The second part concerns with performing a simulation of the replacement method to evaluate its effectiveness on the heave. The effect of the building stiffness on the swelling deformation was also studied. The impact of increasing the building stiffness of the first two stories of the building on the swelling deformation was also studied. The influence of the replacement soil depth and the building stiffness on the differential upward movement in different stories of a building was investigated. The ABAQUS software and Regina clay are used in this analysis. The present results show that the swelling pressure increases with decreasing the initial water content and increasing the initial soil suction. Higher replacement soil stiffness increases the differential heave between footings

Issued also as CD

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