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Doctor of Philosophy (PhD) Programme (By Research) | NTU Singapore
Provided by. Programme Type. Full-Time Doctor of Philosophy Ph. D : Minimum period of candidature is 24 months, maximum is 60 phd thesis concrete slabs. Part-Time Doctor of Philosophy Ph. D : Minimum period of candidature is 36 months, maximum is 84 months. Students can choose to pursue a Doctor of Philosophy degree in one of the following research areas:. For faculty listing in the various research areas: Click Here. There are two intakes each year - August or January.
Applicants are advised to upload their applications 4 months before their desired intake. Intake in August or January is subjected to the school's selection and recommendation. The University reserves the right to admit applicants in other semesters. A good Honours degree, at least Second Class HonoursUpper Division or Honours Distinction and the ability to pursue research in his proposed field of advanced study. There are two intakes each year — August or January.
List of Supporting Documents : Click Here. Tuition Fees : Click here. Online Application : Click Here. Free and forced vibration of single degree of freedom structures; damping; convolution integral; state space method; free and forced vibration of multi-degree of freedom structures; numerical methods; structural response to seismic loading; response spectra; time history analysis phd thesis concrete slabs response spectra analysis; special topics.
CV Behaviour and Design of Reinforced Concrete Structures 3 AUs - Suspended. Properties of concrete; flexure, shear, and torsion theories; time-dependent behaviour; slender columns; flat plate flat slab systems; yield line theory and strip method of design, strut and tie models for design. Behaviour and design of steel structures: columns, beams, beam-columns and frames; behaviour and design of composite structures: shear connectors, composite beams, columns, slabs and joints.
Philosophy and design criteria of tall buildings; structural systems for tall buildings: moment-resisting frames, shear walls, braced frames; P-Delta effects and instability; structural design process: functional requirements; design criteria and loading: dead, live, wind, and earthquake loads; preliminary and computer-aided proportioning; analysis of tall buildings; very tall buildings including framed tube, tube in tube, trussed tube and hat trusses, etc.
Concrete constituent materials; properties of fresh concrete: workability, superplasticizer, self-compacting concrete; hydration and microstructure formation of concrete: hydration process, microstructure; durability of concrete; cement replacement materials; evaluation of concrete structures: cracking in concrete, phd thesis concrete slabs, testing of hardened concreteassessment of concrete quality.
CV Fundamentals of Catastrophe Risk Modeling 3 AUs - Suspended, phd thesis concrete slabs. Introduction to various catastrophe risks and modular structured ways to model the risks from various perils, probability distributions, basic framework of Catastrophe risk Models; treatment of uncertainties, risk quantification, aggregation across several perils, introduction to some advanced applications, risk management, risk transfer techniques, validation and use of Cat models, seminars and independent study cum presentation.
Physical properties of soils. Hydraulic properties of soils. Compressibility and consolidation behaviour of soils. Stress-deformation and shear strength behaviour of soils. M easurements of strength, stiffness, compressibility, permeability and consolidation properties of soils by laboratory and in-situ testing methods.
Evaluation of design parameters. Slope stability: shear strength, total and effective stress analyses, methods of slices involving circular and noncircular slip surfaces, phd thesis concrete slabs, slope monitoring and stabilization, case studies. Soil improvement: surface compaction, deep compaction, admixture stabilization, reinforced soil, preloading and vertical drains.
Pre-treatment and post-treatment assessment. Footing and raft foundations: design considerations, bearing capacity, settlement, combined footings, soil-raft interaction analysis, pile-raft foundations. Deep Foundations: response of piles to vertical and horizontal loads, load transfer, phd thesis concrete slabs, dynamic pile testing and static pile load tests.
Phd thesis concrete slabs structures: Lateral earth pressure, design of earth retention systems, concrete retaining walls, reinforced soil walls and anchored bulkheads. Engineering phd thesis concrete slabs plate tectonics, minerals, rock types and rock cycle, geological structures, rock dating and geological time scale, geological maps, hemispherical projection, geology of Singapore.
Rock mechanics: rock mass classifications, laboratory measurements of strength and deformation properties of rocks, failure criteria, shear strength of discontinuities. Applications: rock foundations, stability of rock slopes, underground rock excavations. Introduction to uses of underground rock caverns, benefits and challenges, review of cavern space development in Singapore, planning considerations for rock cavern facilities, cost planning, site investigations, design of rock caverns and layout options, stability analysis and rock support design, construction technology, blasting and vibrations, risk management, HSE aspects, special considerations for selected underground facilities, and case studies with two selected projects.
Probability and statistical concepts. Sampling methods. Statistical Inference: estimation, hypothesis testing. Goodness-of-fit tests. Non-parametric procedures. Regression analysis. Phd thesis concrete slabs series analysis. Computer applications. Overview of transport project impacts. Trip and parking generation. Site traffic impact analysis. Assessment of environmental impacts of transport facilities: noise, pollutant emission, visual impact.
Measures to mitigate traffic impacts. Road safety study: accident characteristics, analysis techniques, remedial and prevention measures. National and regional transportation planning. Phd thesis concrete slabs issues and the planning process. Economic, environmental and energy considerations. Transport and land use interaction. Travel patterns and planning of transport networks. Freight movement and facilities planning. Feasibility analysis of transport facilities. Transportation planning in developing countries.
Introduction, Fracture mechanics, Fatigue design principles, Fatigue capacity, fatigue loading and stresses, Simplified fatigue assessment, Spectral fatigue analysis and design, Application of fracture mechanics, Assessment of integrity of structures containing defects, Material selection and criteria. Introduction to floating structures; Review of basic mathematics and fluid mechanics; Current and wind loads; Linear wave theory, viscous wave loads, wave loads on large bodies — linear diffraction theory; Radiation analysis for large floating structures; Overview of design requirements of floating structures; Mooring lines and risers; buoyancy and stability; dynamic analysis of floating structures.
For more information: Click Here. Test dates must be within 2 years or less from date of application. Provided by School of Civil and Environmental Engineering CEE College of Engineering CoE. Programme Type Full-time, Part-time. Enquire here Apply now. D : Minimum period of candidature is 24 months, maximum is 60 months Part-Time Doctor of Philosophy Ph.
Coursework Components. Programme Structure. Note: Curriculum is subject to changes. Not all courses will be offered each semester. Share: Share via Facebook Phd thesis concrete slabs via Twitter Share via LinkedIn. Doctor of Philosophy.
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