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رسائل ماجيستير الانجليزية 2022 01abf4af-d7ab-40cc-ad82-c779b944924a

Behavior of Bio cemented Sands under Cyclic Loading

Salah Sadek , Mohammed Sleiman Antar, Shadi Najjar

كلية مارون سمعان للهندسة والعمارة-الجامعة الأمريكية في بيروت · لبنان

الموضوعات

علوم تطبيقية وتكنولوجية

الملخص

In the past ten years, intensive research efforts were undertaken to study a newly emerging soil improvement technique that uses calcite-inducing reactions to produce natural cementation in soils. Given the fact that current ground improvement techniques are energy consuming, it is imperative that research in the soil improvement field be directed towards more sustainable eco-friendly techniques. Microbial induced calcite precipitation is a sustainable technique that allows for solid sandstone-like material to be produced from naturally loose sand. The technique uses bacterial species to produce urease enzymes, which catalyze the chemical reaction and induce calcite precipitation. Another way for inducing calcite precipitation is to directly use the urease enzyme, leading to enzyme-induced calcite precipitation. Researchers have studied the behavior of biocemented sand using conventional triaxial tests and compressive strength tests. However, the cyclic behavior of these samples is not yet significantly explored and/or understood.Thus, the objective of this study was to investigate the behavior of biocemented sand subjected to cyclic loading. The study focused on: (1) Measuring the improvement obtained on sand samples due to calcite precipitation by using “continuous” shear velocity measurements from embedded bender elements. (2) Studying the effect of increasing the calcite precipitation on the sand resistance to cyclic loading. The sand type and properties, percentage of cementation, curing time, and vertical confinement were also investigated.The study concluded with a significant improvement in treated samples which was noticed through the increase in the shear wave velocity, compared to the non-treated samples, and depending on the quantity of cementation solution. In addition, the samples showed resistance to cyclic loading as we increase the cementation, which implies resistance to liquefaction. Finally, the improvement measured using the cone penetration test was in compliance with the shear wave velocity readings.

التعريف والنوع

رقم الوثيقة
01abf4af-d7ab-40cc-ad82-c779b944924a
رقم العقد
0
نوع الوسائط
Crawler
نوع المحتوى
الرسائل العلمية
صيغة المصدر
رسائل ماجيستير
نوع الملف
pdf text
أسماء الملفات
2206245_1.pdf

بيانات النشر

ألقاب المؤلفين
[{"name_ar":" Salah Sadek ","title_ar":"اشراف","title_en":"Supervision"},{"name_ar":"Mohammed Sleiman Antar","title_ar":"اعداد","title_en":"Preparation"},{"name_ar":"Shadi Najjar ","title_ar":"اشراف","title_en":"Supervision"}]
اللغة
English

المصدر والدورية

اسم المصدر
Behavior of Bio cemented Sands under Cyclic Loading

المحتوى والصفحات

عدد الصفحات
0
كلمات الباحثين
Show simple item record dc.contributor.advisor Sadek, Salah dc.contributor.advisor Najjar, Shadi dc.contributor.author Antar, Mohammed dc.date.accessioned 2022-02-08T06:05:32Z dc.date.available 2022-02-08T06:05:32Z dc.date.issued 2022-02-08 dc.date.submitted 2022-02-07 dc.identifier.uri http://hdl.handle.net/10938/23342 dc.description.abstract In the past ten years, intensive research efforts were undertaken to study a newly emerging soil improvement technique that uses calcite-inducing reactions to produce natural cementation in soils. Given the fact that current ground improvement techniques are energy consuming, it is imperative that research in the soil improvement field be directed towards more sustainable eco-friendly techniques. Microbial induced calcite precipitation is a sustainable technique that allows for solid sandstone-like material to be produced from naturally loose sand. The technique uses bacterial species to produce urease enzymes, which catalyze the chemical reaction and induce calcite precipitation. Another way for inducing calcite precipitation is to directly use the urease enzyme, leading to enzyme-induced calcite precipitation. Researchers have studied the behavior of biocemented sand using conventional triaxial tests and compressive strength tests. However, the cyclic behavior of these samples is not yet significantly explored and/or understood.Thus, the objective of this study was to investigate the behavior of biocemented sand subjected to cyclic loading. The study focused on: (1) Measuring the improvement obtained on sand samples due to calcite precipitation by using “continuous” shear velocity measurements from embedded bender elements. (2) Studying the effect of increasing the calcite precipitation on the sand resistance to cyclic loading. The sand type and properties, percentage of cementation, curing time, and vertical confinement were also investigated.The study concluded with a significant improvement in treated samples which was noticed through the increase in the shear wave velocity, compared to the non-treated samples, and depending on the quantity of cementation solution. In addition, the samples showed resistance to cyclic loading as we increase the cementation, which implies resistance to liquefaction. Finally, the improvement measured using the cone penetration test was in compliance with the shear wave velocity readings. dc.language.iso en_US dc.subject Biocementation, ground improvement, cyclic loading, shear wave velocity

إشراف وإعداد

الإشراف
Salah Sadek , Shadi Najjar
الإعداد
Mohammed Sleiman Antar

الاقتباسات الببليوغرافية

APA

Salah Sadek ،Mohammed Sleiman Antar و Shadi Najjar . (2022). Behavior of Bio cemented Sands under Cyclic Loading. أطروحة(رسائل ماجيستير). كلية مارون سمعان للهندسة والعمارة-الجامعة الأمريكية في بيروت. لبنان.

MLA

Salah Sadek ،Mohammed Sleiman Antar و Shadi Najjar . Behavior of Bio cemented Sands under Cyclic Loading. 2022. كلية مارون سمعان للهندسة والعمارة-الجامعة الأمريكية في بيروت، رسائل ماجيستير.