Showing posts with label civil. Show all posts
Showing posts with label civil. Show all posts
Saturday, 4 October 2014
Saturday, 21 June 2014
CE6811 PROJECT WORK
CE6811 PROJECT WORK L T P C 0 0 12 6
OBJECTIVES:
To develop the ability to solve a specific problem right from its identification and literature review till the successful solution of the same. To train the students in preparing project reports and to face reviews and viva voce examination.
The students in a group of 3 to 4 works on a topic approved by the head of the department under the guidance of a faculty member and prepares a comprehensive project report after completing the work to the satisfaction of the supervisor. The progress of the project is evaluated based on a minimum of three reviews. The review committee may be constituted by the Head of the Department. A project report is required at the end of the semester. The project work is evaluated based on oral presentation and the project report jointly by external and internal examiners constituted by the Head of the Department.
TOTAL: 180 PERIODS
OUTCOMES:
On Completion of the project work students will be in a position to take up any challenging practical problems and find solution by formulating proper methodology.
Click here to download full syllabus AULibrary.com
CE6021 REPAIR AND REHABILITATION OF STRUCTURES SYLLABUS(Elective-V)
CE6021 REPAIR AND REHABILITATION OF STRUCTURES L T P C 3 0 0 3
OBJECTIVES:
To make the students to gain the knowledge on quality of concrete, durability aspects, causes of deterioration, assessment of distressed structures, repairing of structures and demolition procedures.
UNIT I MAINTENANCE AND REPAIR STRATEGIES (9)
Maintenance, Repair and Rehabilitation, Facets of Maintenance, importance of Maintenance, Various aspects of Inspection, Assessment procedure for evaluating a damaged structure, causes of deterioration.
UNIT II STRENGTH AND DURABILITY OF CONCRETE (9)
Quality assurance for concrete – Strength, Durability and Thermal properties, of concrete - Cracks, different types, causes – Effects due to climate, temperature, Sustained elevated temperature, Corrosion - Effects of cover thickness.
UNIT III SPECIAL CONCRETES (9)
Polymer concrete, Sulphur infiltrated concrete, Fibre reinforced concrete, High strength concrete, High performance concrete, Vacuum concrete, Self compacting concrete, Geopolymer concrete, Reactive powder concrete, Concrete made with industrial wastes.
UNIT IV TECHNIQUES FOR REPAIR AND PROTECTION METHODS (9)
Non-destructive Testing Techniques, Epoxy injection, Shoring, Underpinning, Corrosion protection techniques – Corrosion inhibitors, Corrosion resistant steels, Coatings to reinforcement, cathodic protection.
UNIT V REPAIR, REHABILITATION AND RETROFITTING OF STRUCTURES (9)
Strengthening of Structural elements, Repair of structures distressed due to corrosion, fire, Leakage, earthquake – DEMOLITION TECHNIQUES - Engineered demolition methods - Case studies.
TOTAL: 45 PERIODS
OUTCOMES:
Students must gained knowledge on quality of concrete, durability aspects, causes of deterioration, assessment of distressed structures, repairing of structures and demolition procedures.
TEXT BOOKS:
1. Denison Campbell, Allen and Harold Roper, “Concrete Structures, Materials, Maintenance and Repair”, Longman Scientific and Technical UK, 1991.
2. Allen R.T. & Edwards S.C, Repair of Concrete Structures, Blakie and Sons, UK, 1987
REFERENCES:
1. Shetty M.S., "Concrete Technology - Theory and Practice", S.Chand and Company, 2008.
2. Dov Kominetzky.M.S., "Design and Construction Failures", Galgotia Publications Pvt. Ltd., 2001
3. Ravishankar.K., Krishnamoorthy.T.S, "Structural Health Monitoring, Repair and Rehabilitation of Concrete Structures", Allied Publishers, 2004.
4. CPWD and Indian Buildings Congress, Hand book on Seismic Retrofit of Buildings, Narosa Publishers, 2008.
5. Gambhir.M.L., "Concrete Technology", McGraw Hill, 2013.
Click here to download full syllabus AULibrary.com
CE6020 FINITE ELEMENT TECHNIQUES SYLLABUS (Elective-V)
CE6020 FINITE ELEMENT TECHNIQUES L T P C 3 0 0 3
OBJECTIVES:
To apprise the students about the basics of Finite Element theory, computer implementation of this theory and its practical applications.
UNIT I INTRODUCTION TO FINITE ELEMENT ANALYSIS AND FINITE ELEMENT FORMULATION TECHNIQUES (9)
Introduction - Basic Concepts of Finite Element Analysis - Introduction to Elasticity - Steps in Finite Element Analysis - Virtual Work and Variational Principle - Galerkin Method- Finite Element Method: Displacement Approach - Stiffness Matrix and Boundary Conditions.
UNIT II ELEMENT PROPERTIES (9)
Natural Coordinates - Triangular Elements - Rectangular Elements - Lagrange and Serendipity Elements - Solid Elements -Isoparametric Formulation - Stiffness Matrix of Isoparametric Elements Numerical Integration: One, Two and Three Dimensional
UNIT III ANALYSIS OF FRAME STRUCTURES (9)
Stiffness of Truss Members - Analysis of Truss - Stiffness of Beam Members - Finite Element Analysis of Continuous Beam - Plane Frame Analysis - Analysis of Grid and Space Frame.
UNIT IV FEM FOR TWO AND THREE DIMENSIONAL SOLIDS (9)
Constant Strain Triangle - Linear Strain Triangle - Rectangular Elements -Numerical Evaluation of Element Stiffness -Computation of Stresses, Geometric Nonlinearity and Static Condensation -Axisymmetric Element -Finite Element Formulation of Axisymmetric Element -Finite Element Formulation for 3 Dimensional Elements
UNIT V APPLICATIONS OF FEM (9)
Plate Bending Problems - Finite Elements for Elastic Stability - Finite Elements in Fluid Mechanics - Dynamic Analysis
TOTAL: 45 PERIODS
OUTCOMES:
Students will be in a position to develop computer codes for any physical problems using FE techniques.
TEXT BOOKS:
1. Chandrupatla, T.R., and Belegundu, A.D., “Introduction to Finite Element in Engineering”, Third Edition, Prentice Hall, India, 2003.
2. Krishnamoorthy C. S. ,"Finite Element Analysis Theory and Programming", Tata McGraw Hill Education, 1994
3. David V. Hutton,"Fundamentals of Finite Element Analysis", Tata McGraw Hill, 2004
4. Daryl L.Logan, "A First Course in Finite Element Method", Cengage Learning, 2012.
REFERENCES:
1. Reddy J.N., “An Introduction to Finite Element Method”, McGraw-Hill, Intl. Student Edition, 1985.
2. Zienkiewics, “The finite element method, Basic formulation and linear problems”, Vol.1, 4th Edition, McGraw-Hill, Book Co., 1987
3. Rao S.S, “The Finite Element Method in Engineering”, Pergaman Press, 2003.
4. Desai C.S. and. Abel J.F, “Introduction to the Finite Element Method”, Affiliated East West Press, 1972. 5. Cook R. D.,"Concepts and Applications of Finite Element Analysis", Wiley and Sons, 1989.
Click here to download full syllabus AULibrary.com
CE6019 INDUSTRIAL STRUCTURES SYLLABUS(Elective-V)
CE6019 INDUSTRIAL STRUCTURES L T P C 3 0 0 3
OBJECTIVES:
This course deals with some of the special aspects with respect to Civil Engineering structures in industries.
UNIT I PLANNING (9)
Classification of industries and industrial structures – General requirements of various industries – Planning and layout of buildings and components.
UNIT II FUNCTIONAL REQUIREMENTS (9)
Lighting – Ventilation - Acoustics – Fire safety – Guidelines from factories act.
UNIT III DESIGN OF STEEL STRUCTURES (9)
Industrial roofs – Crane girders – Mills buildings – Bunkers and Silos - Chimney.
UNIT IV DESIGN OF R.C. STRUCTURES (9)
Corbels, Brackets and Nibs - Silos and bunkers –Chimney - Principles of folded plates and shell roofs
UNIT V PREFABRICATION (9)
Principles of prefabrication – Prestressed precast roof trusses - Construction of roof and floor slabs - Wall panels.
TOTAL: 45 PERIODS
OUTCOMES: At the end of this course the student shall be able to design some of the structures used in industries.
TEXT BOOKS:
1. Ramamrutham.S., "Design of Reinforced Concrete Structures", Dhanpat Rai Publishing Company, 2007. 2. Varghese.P.C., "Limit State Design of Reinforced Concrete", Prentice Hall of India Eastern Economy Editions, 2nd Edition, 2003.
3. Bhavikatti.S.S., "Design of Steel Structures", J.K. International Publishing House Pvt.Ltd., 2009.
REFERENCES:
1. Henn W. "Buildings for Industry", Vol.I and II, London Hill Books, 1995
2. SP32-1986, Handbook on Functional Requirements of Industrial buildings, Bureau of Indian Standards, 1990
3. Structural Engineering Research Centre,Course Notes on Modern Developments in the Design and Construction of Industrial Structures, Madras, 1982
4. Koncz.J., "Manual of Precast Construction", Vol.I and II, Bauverlay GMBH, 1971.
CE6022 EARTHQUAKE GEOTECHNICAL ENGINEERING SYLLABUS(Elective-V)
CE6022 EARTHQUAKE GEOTECHNICAL ENGINEERING L T P C 3 0 0 3
To understand the dynamics of earth and to estimate dynamic properties of soils
To develop the site specific design spectrum for design of sub structure and evaluation of liquefaction potential.
UNIT I SEISMOLOGY AND EARTHQUAKES (7)
Internal Structure of the Earth – Continental Drift and Plate Tectonics – Faults – Elastic rebound theory – Different sources of Seismic Activity – Geometric Notation – Location of Earthquakes – Size of Earthquakes.
UNIT II DYNAMIC PROPERTIES OF SOILS (11)
Measurement of Dynamic Properties of soils – Field Tests – Low strain – Seismic Reflection – Seismic Refraction – Horizontal layering – Steady State Vibration – Spectral analysis of surface wave – Seismic cross hole – Down Hole – Up hole – tests – Laboratory tests – Resonance Column Test – Bender Element – Cyclic Tri-axial test.
UNIT III SEISMIC HAZARD ANALYSIS (9)
Identification and Evaluation of Earthquake Sources – Geologic Evidence – Tectonic Evidence – Historical Seismicity – Instrumental Seismicity – Deterministic Seismic Hazard Analysis – Probabilistic Seismic Hazard Analysis.
UNIT IV GROUND RESPONSE ANALYSIS (9)
Ground Response Analysis – One Dimensional Linear – Evaluation of Transfer Function – Uniform undamped soil on rigid rock – Uniform damped soil on Rigid Rock – Uniform damped soil on elastic rock – layered damped soil on elastic rock – Equivalent linear Approximation – Deconvolution.
UNIT V LIQUEFACTION ANALYSIS (9)
Liquefaction – Flow liquefaction – Cyclic Mobility – Evaluation of liquefaction Hazards – Liquefaction Susceptibility – Criteria – Historical Geologic – Compositional – State – Evaluation of Initiation of Liquefaction – Cyclic stress approach – Characterization of Liquefaction Resistance – SPT Test – Various correction factor – Factor of Safety.
TOTAL: 45 PERIODS
OUTCOMES:
Students are able to perform site specific response analysis to develop design spectra and to do detailed liquefaction analysis using SPT data.
TEXT BOOKS:
1. Krammer S.L., "Geotechnical Earthquake Engineering", Prentice Hall, International Series, Pearson Education Inc and Donling Kindersley Publishing Inc. 2013
2. Roberto Villaverde, “Fundamental Concepts of Earthquake Engineering”,CRC Press Taylor & Francis Group, 2009.
REFERENCES:
1. Kameswara Rao, N.S.V., "Dynamics soil tests and applications", Wheeler Publishing - New Delhi, 2000.
2. Kameswara Rao, "Vibration Analysis and Foundation Dynamics", Wheeler Publishing, New Delhi, 1998.
3. McGuire, R.K. "Seismic Hazard and Risk Analysis Earthquake Engineering" Research Institute, 2004.
4. Mahanti, N.C. Samal, S.K. Datta, P. Nag.N.K., "Diaster Management", Narosa Publishing House, New Delhi, India, 2006.
5. Wai-Fah Chen and Cgharles Scawthem, "Earthquake Engineering Hand book", Caspress, 2003.
6. Robert W. Day, "Geotechnical Earthquake Engineering" Hand book, McGraw Hill, 2002.
Click here to download full syllabus AULibrary.com
CE6018 COMPUTER AIDED DESIGN OF STRUCTURES SYLLABUS(Elective-V)
CE6018 COMPUTER AIDED DESIGN OF STRUCTURES LT P C 3 0 0 3
OBJECTIVES:
To introduce the students about computer graphics, structural analysis, design and optimization and expert systems, applications in analysis.UNIT I INTRODUCTION (9)
Fundamental reason for implementing CAD - Software requirements – Hardware components in CAD system – Design process - Applications and benefits.
UNIT II COMPUTER GRAPHICS (9)
Graphic Software – Graphic primitives - Transformations - 2 Dimensional and 3 Dimensional transformations – Concatenation - Wire frame modeling - Solid modeling - Graphic standards - Drafting packages – Auto CAD.
UNIT III STRUCTURAL ANALYSIS (9)
Principles of structural analysis - Fundamentals of finite element analysis - Concepts of finite elements – Stiffness matrix formulation – Variational Method – Weighted residual method – Problems – Conditions of convergence of functions – Analysis packages and applications.
UNIT IV DESIGN AND OPTIMIZATION (9)
Principles of design of steel and RC structures - Beams and Columns - Applications to simple design problems - Optimization techniques - Algorithms - Linear programming.
UNIT V EXPERT SYSTEMS (9)
Introduction to artificial intelligence - Knowledge based expert systems – Applications of KBES- Rules and decision tables - Inference mechanisms - simple applications
TOTAL: 45 PERIODS
OUTCOMES: Students will be able to implement ideas of computer aided design with advantages and demerits.
TEXT BOOKS:
1. Groover M.P. and Zimmers E.W. Jr., “CAD/CAM, Computer Aided Design and Manufacturing”, Prentice Hall of India Ltd, New Delhi, 1993.
2. Krishnamoorthy C.S.Rajeev S., “Computer Aided Design”, Narosa Publishing House, New Delhi, 1993
REFERENCES:
1. Harrison H.B., “Structural Analysis and Design”, Part I and II Pergamon Press, Oxford, 1990.
2. Rao S.S., “Optimisation Theory and Applications”, Wiley Eastern Limited, New Delhi, 1977.
3. Richard Forsyth (Ed), “Expert System Principles and Case Studies”, Chapman and Hall, London, 1989.
Click here to download full syllabus AULibrary.com
GE6757 TOTAL QUALITY MANAGEMENT SYLLABUS(Elective-IV)
GE6757 TOTAL QUALITY MANAGEMENT L T P C 3 0 0 3
OBJECTIVES :
To facilitate the understanding of Quality Management principles and process.
UNIT I INTRODUCTION (9)
Introduction - Need for quality - Evolution of quality - Definitions of quality - Dimensions of product and service quality - Basic concepts of TQM - TQM Framework - Contributions of Deming, Juran and Crosby - Barriers to TQM - Quality statements - Customer focus - Customer orientation, Customer satisfaction, Customer complaints, Customer retention - Costs of quality.
UNIT II TQM PRINCIPLES (9)
Leadership - Strategic quality planning, Quality Councils - Employee involvement - Motivation, Empowerment, Team and Teamwork, Quality circles Recognition and Reward, Performance appraisal - Continuous process improvement - PDCA cycle, 5S, Kaizen - Supplier partnership - Partnering, Supplier selection, Supplier Rating.
UNIT III TQM TOOLS AND TECHNIQUES I (9)
The seven traditional tools of quality - New management tools - Six sigma: Concepts, Methodology, applications to manufacturing, service sector including IT - Bench marking - Reason to bench mark, Bench marking process - FMEA - Stages, Types.
UNIT IV TQM TOOLS AND TECHNIQUES II (9)
Control Charts - Process Capability - Concepts of Six Sigma - Quality Function Development (QFD) - Taguchi quality loss function - TPM - Concepts, improvement needs - Performance measures.
UNIT V QUALITY SYSTEMS (9)
Need for ISO 9000 - ISO 9001-2008 Quality System - Elements, Documentation, Quality Auditing - QS 9000 - ISO 14000 - Concepts, Requirements and Benefits - TQM Implementation in manufacturing and service sectors..
TOTAL: 45 PERIODS
OUTCOMES:
The student would be able to apply the tools and techniques of quality management to manufacturing and services processes.
TEXTBOOK:
1. Dale H. Besterfiled, et at., "Total quality Management", Pearson Education Asia, Third Edition, Indian Reprint, 2006.
REFERENCES:
1. James R. Evans and William M. Lindsay, "The Management and Control of Quality", 8th Edition, First Indian Edition, Cengage Learning, 2012.
2. Suganthi. L and Anand Samuel, "Total Quality Management", Prentice Hall (India) Pvt. Ltd., 2006.
3. Janakiraman. B and Gopal .R.K., "Total Quality Management - Text and Cases", Prentice Hall (India) Pvt. Ltd., 2006.
Click here to download full syllabus AULibrary.com
CE6017 EXPERIMENTAL ANALYSIS OF STRESS SYLLABUS(Elective-IV)
CE6017 EXPERIMENTAL ANALYSIS OF STRESS L T P C 3 0 0 3
To make students aware of various measurement techniques and experimental planning and procedures adopted in laboratory.
UNIT I STRAIN GAUGES (9)
Definition of Gauge length, sensitivity and range – Characteristics of an ideal strain gauge – Different types of mechanical strain gauges for use in metal and concrete specimens – Optical strain gauge – Acoustic strain gauge – Pneumatic strain gauge – Merits and demerits.
UNIT II ELECTRICAL STRAIN GAUGES (9)
Inductance, capacitance and piezo-electric gauges – Bonded and unbounded resistance gauges and their application in stress analysis – Fixing technique and measurement of strains – Rosettes – Determination of principal strains using rosettes – Use of Murphy‟s construction for drawing circle of strains – Mohr‟s stress circle – Analytical solution.
UNIT III PHOTOELASTICITY (9)
Principles – Maxwell‟s stress optic law – Plane and circularly polarised light and their use in photo elasticity – Polariscopes – Diffusion type, lense type and reflection type polariscopes – Isochromatics and Isoclinics – Model materials – Calibration methods for finding material fringe value – Model fringe value – Examples of beam flexure and diametrically loaded circular plates.
UNIT IV MODEL ANALYSIS (9)
Direct and indirect models – Laws of structural similitude – Choice of scales – Limitation of model studies - Buckingham piktheorem – Dimensional analysis – Model materials – Begg‟s deformeter and its use in model analysis – Simple design of models for direct and indirect model analysis.
UNIT V BRITTLE COATINGS (9)
Historical review – Stress Coat – Ceramic coatings – Application – Moire fringe method of stress analysis.
TOTAL: 45 PERIODS
OUTCOMES:
Students will be able to select the appropriate strain gauges for strain measurements and they have sufficient knowledge in model analysis and predict the behaviour of prototypes.
TEXT BOOKS:
1. T.K.Roy, "Experimental Analysis of Stress and Strains", S.Chand and Company Ltd., New Delhi, 2000
2. Hetenyi. M., Hand Book of Experimental Stress Analysis, John Wiley and Sons Inc., New York, 1966
REFERENCES:
1. J.W.Dally and W.F.Riley, "Experimental Stress Analysis", McGraw Hill Book, New York, 1990
2. L.S. Srinath, "Experimental Stress Analysis", Tata-McGraw Hill Book Company, New Delhi, 2001.
3. Sadhu Singh, "Experimental Stress Analysis", Khanna Publishers, New Delhi, 2004
Click here to download full syllabus AULibrary.com
CE6016 PREFABRICATED STRUCTURES SYLLABUS(Elective-IV)
CE6016 PREFABRICATED STRUCTURES L T P C 3 0 0 3
OBJECTIVES:
To impart knowledge to students on modular construction, industrialised construction and design of prefabricated elements and construction methods.
UNIT I INTRODUCTION (9)
Need for prefabrication – Principles – Materials – Modular coordination – Standarization – Systems – Production – Transportation – Erection.
UNIT II PREFABRICATED COMPONENTS (9)
Behaviour of structural components – Large panel constructions – Construction of roof and floor slabs – Wall panels – Columns – Shear walls
UNIT III DESIGN PRINCIPLES (9)
Disuniting of structures- Design of cross section based on efficiency of material used – Problems in design because of joint flexibility – Allowance for joint deformation.
UNIT IV JOINT IN STRUCTURAL MEMBERS (9)
Joints for different structural connections – Dimensions and detailing – Design of expansion joints
UNIT V DESIGN FOR ABNORMAL LOADS (9)
Progressive collapse – Code provisions – Equivalent design loads for considering abnormal effects such as earthquakes, cyclones, etc., - Importance of avoidance of progressive collapse.
TOTAL: 45 PERIODS
OUTCOMES:
The student shall be able to design some of the prefabricated elements and also have the knowledge of the construction methods in using these elements.
TEXT BOOKS:
1. CBRI, Building materials and components, India, 1990
2. Gerostiza C.Z., Hendrikson C. and Rehat D.R., "Knowledge based process planning for construction and manufacturing", Academic Press Inc., 1994
REFERENCES:
1. Koncz T., "Manual of precast concrete construction", Vol. I, II and III, Bauverlag, GMBH, 1976.
2. "Structural design manual", Precast concrete connection details, Society for the studies in the use of precast concrete, Netherland Betor Verlag, 2009
Click here to download full syllabus AULibrary.com
CE6015 TALL BUILDINGS SYLLABUS(Elective-IV)
CE6015 TALL BUILDINGS L T P C 3 0 0 3
OBJECTIVES:
The design aspects and analysis methodologies of tall buildings will be introduced. The stability analysis of tall buildings is another important objective of this course.UNIT I DESIGN CRITERIA AND MATERIALS (9)
Development of High Rise Structures - General Planning Considerations - Design philosophies - Materials used for Construction - High Strength Concrete - High Performance Concrete - Self Compacting Concrete - Glass - High Strength Steel
UNIT II LOADING (9)
Gravity Loading - Dead Load - Live Load - Live load reduction technique - Impact Load - Construction Load - Sequential Loading. Lateral Loading - Wind load - Earthquake Load. Combination of Loads.
UNIT III BEHAVIOUR OF VARIOUS STRUCTURAL SYSTEMS (9)
Factors affecting growth, Height and Structural form. High rise behaviour of Various structural systems - Rigid frames, braced frames, Infilled frames, shear walls, coupled shear walls, wall-frames, tubular structures, cores, outrigger - braced and hybrid mega systems.
UNIT IV ANALYSIS AND DESIGN (9)
Modeling for approximate analysis, Accurate analysis and reduction techniques, Analysis of buildings as total structural system considering overall integrity and major subsystem interaction, Analysis for member forces, drift and twist, computerised general three dimensional analysis.
UNIT V STABILITY OF TALL BUILDINGS (9)
Overall buckling analysis of frames, wall-frames, Approximate methods, second order effects of gravity of loading, P-Delta analysis, simultaneous first-order and P-Delta analysis, Translational,
Torsional instability, out of plumb effects, stiffness of member in stability, effect of foundation rotation.
TOTAL: 45 PERIODS
OUTCOMES:
At the end of this course the student should have an understanding on the behaviour of tall buildings subjected to lateral building. The students should have knowledge about the rudimentary principles of designing tall buildings as per the existing codes.
TEXT BOOKS:
1. Bryan Stafford Smith, Alex coull, “Tall Building Structures, Analysis and Design”, John Wiley and Sons, Inc., 1991.
2. Taranath B.S., “Structural Analysis and Design of Tall Buildings”, McGraw Hill, 2011.
REFERENCES:
1. Lin.T.Y, Stotes Burry.D, “Structural Concepts and systems for Architects and Engineers”, John Wiley, 1988.
2. Lynn S.Beedle, “Advances in Tall Buildings”, CBS Publishers and Distributors, Delhi, 1986.
3. Wolfgang Schueller "High Rise Building Structures", John Wiley and Sons, New York 1977.
CE6013 BRIDGE STRUCTURES SYLLABUS(Elective-IV)
CE6013 BRIDGE STRUCTURES LT P C 3 0 0 3
OBJECTIVES:
To make the student to know about various bridge structures, selection of appropriate bridge structures and design it for given site conditions.
UNIT I INTRODUCTION (9)
History of Bridges - Components of a Bridge and its definitions- Classification of Road Bridges - Selection of Site and Initial Decision Process - Survey and Alignment; Geotechnical Investigations and Interpretations. River Bridge: Selection of Bridge site and planning - Collection of Bridge design data - Hydrological calculation Road Bridges - IRC codes - Standard Loading for Bridge Design - Influence lines for statically determinate structures - I.L. for statically indeterminate structures - Transverse distribution of Live loads among deck longitudinal - Load combinations for different working state and limit state designs Railway Bridges: Loadings for Railway Bridges; Railroad data. Pre-design considerations; - Railroad vs. Highway bridges.
UNIT II SUPERSTRUCTURES (9)
Selection of main bridge parameters, design methodologies -Choices of superstructure types; Orthotropic plate theory, load + techniques - Grillage analysis - Finite element analysis - Different types of superstructure (RCC and PSC); Longitudinal Analysis of Bridge.- Transverse Analysis of Bridge- Temperature Analysis-Distortional Analysis-Effects of Differential settlement of supports-Reinforced earth structures
UNIT III DESIGN OF STEEL BRIDGES (9)
Design of Truss Bridges – Design of Plate girder bridges.
UNIT IV DESIGN OF RC AND PSC BRIDGES (9)
Design of slab bridges – Girder bridges – PSC bridges
UNIT V SUBSTRUCTURE, BEARINGS AND DECK JOINTS, PARAPETS AND RAILINGS (9)
Substructure - Pier; Abutment - Wing walls- Importance of Soil-Structure Interaction - Types of foundations - Open foundation- Pile foundation- Well foundation- Simply supported bridge- Continuous Bridge - Bearings and Deck Joints - Different types of bridge bearings and expansion joints - Parapets and Railings for Highway Bridges
TOTAL: 45 PERIODS
OUTCOMES:
To develop an understanding of an appreciation for basic concepts in proportioning and design of bridges in terms of aesthetics, geographical location and functionality.
To help the student develop an intuitive feeling about the sizing of bridge elements, ie., develop a clear understanding of conceptual design
To understand the load flow mechanism and identify loads on bridges.
To carry out a design of bridge starting from conceptual design, selecting suitable bridge, geometry to sizing of its elements.
TEXT BOOKS:
1. Johnson Victor D., “Essentials of Bridge Engineering”, Oxford and IBH Publishing Co., New Delhi, 1990.
2. Jagadeesh .T.R. and Jayaram.M.A., "Design of Bridge Structures", Prentice Hall of India Pvt. Ltd, Learning Pvt. Ltd., 2013
REFERENCES:
1. Phatak D.R., “Bridge Engineering”, Satya Prakashan, New Delhi, 1990.
2. Ponnuswamy S., “Bridge Engineering”, Tata McGraw-Hill, New Delhi, 1996. 3. Rajagopalan. N. “Bridge Superstructure”, Alpha Science International, 2006
CE6014 STORAGE STRUCTURES SYLLABUS(Elective-IV)
CE6014 STORAGE STRUCTURES LT P C 3 0 0 3
OBJECTIVES:
To introduce the student to basic theory and concepts of design of storage structures like steel and concrete tanks, bunkers and silos.
UNIT I STEEL WATER TANKS (9)
Design of rectangular riveted steel water tank – Tee covers – Plates – Stays –Longitudinal and transverse beams – Design of staging – Base plates – Foundation and anchor bolts – Design of pressed steel water tank – Design of stays – Joints – Design of hemispherical bottom water tank – side plates – Bottom plates – joints – Ring girder – Design of staging and foundation.
UNIT II CONCRETE WATER TANKS (9)
Design of Circular tanks – Hinged and fixed at the base – IS method of calculating shear forces and moments – Hoop tension – Design of intze tank – Dome – Ring girders – Conical dome – Staging – Bracings – Raft foundation – Design of rectangular tanks – Approximate methods and IS methods – Design of under ground tanks – Design of base slab and side wall – Check for uplift.
UNIT III STEEL BUNKERS AND SILOS (9)
Design of square bunker – Jansen‟s and Airy‟s theories – IS Codal provisions – Design of side plates – Stiffeners – Hooper – Longitudinal beams – Design of cylindrical silo – Side plates – Ring girder – stiffeners.
UNIT IV CONCRETE BUNKERS AND SILOS (9)
Design of square bunker – Side Walls – Hopper bottom – Top and bottom edge beams – Design of cylindrical silo – Wall portion – Design of conical hopper – Ring beam at junction
UNIT V PRESTRESSED CONCRETE WATER TANKS (9)
Principles of circular prestressing – Design of prestressed concrete circular water tanks
TOTAL: 45 PERIODS
OUTCOMES:
At the end of the course the student shall be able to design concrete and steel material storage structures.
TEXT BOOKS:
1. Rajagopalan K., "Storage Structures", Tata McGraw Hill, New Delhi, 1998. 2. Krishna Raju N., "Advanced Reinforced Concrete Design", CBS Publishers and Distributors, New Delhi, 1998.
REFERENCES:
1. Punmia B.C, Ashok Kumar Jain, Arun K.Jain, "R.C.C. Designs Reinforced Concrete Structures", Laxmi Publications Pvt. Ltd., New Delhi, 2006.
2. Gambhir.M.L., "Design of Reinforced Concrete Structures", Prentice Hall of India Private Limited, 2012.
MG6851 PRINCIPLES OF MANAGEMENT SYLLABUS
MG6851 PRINCIPLES OF MANAGEMENT LT P C 3 0 0 3
OBJECTIVES:
To enable the students to study the evolution of Management, to study the functions and principles of management and to learn the application of the principles in an organization .
UNIT I INTRODUCTION TO MANAGEMENT AND ORGANIZATIONS
(9)
Definition of Management – Science or Art – Manager Vs Entrepreneur - types of managers -managerial roles and skills – Evolution of Management – Scientific, human relations , system and contingency approaches – Types of Business organization - Sole proprietorship, partnership, company-public and private sector enterprises - Organization culture and Environment – Current trends and issues in Management.
UNIT II PLANNING
(9)
Nature and purpose of planning – planning process – types of planning – objectives – setting objectives – policies – Planning premises – Strategic Management – Planning Tools and Techniques – Decision making steps and process.
UNIT III ORGANISING
(9)
Nature and purpose – Formal and informal organization – organization chart – organization structure – types – Line and staff authority – departmentalization – delegation of authority – centralization and decentralization – Job Design - Human Resource Management – HR Planning, Recruitment, selection, Training and Development, Performance Management , Career planning and management.
UNIT IV DIRECTING
(9)
Foundations of individual and group behaviour – motivation – motivation theories – motivational techniques – job satisfaction – job enrichment – leadership – types and theories of leadership –communication – process of communication – barrier in communication – effective communication –communication and IT.
UNIT V CONTROLLING
(9)
System and process of controlling – budgetary and non-budgetary control techniques – use of computers and IT in Management control – Productivity problems and management – control and performance – direct and preventive control – reporting.
TOTAL: 45 PERIODS
OUTCOMES:
Upon completion of the course, students will be able to have clear understanding of managerial functions like planning, organizing, staffing, leading & controlling and have same basic knowledge on international aspect of management
TEXTBOOKS:
1. Stephen P. Robbins & Mary Coulter, “Management”, 10th Edition,Prentice Hall (India) Pvt. Ltd., 2009.
2. JAF Stoner, Freeman R.E and Daniel R Gilbert “Management”, 6th Edition,Pearson Education, 2004.
REFERENCES:
1. Stephen A. Robbins & David A. Decenzo & Mary Coulter, “Fundamentals of Management” 7th Edition, Pearson Education, 2011.
2. Robert Kreitner & Mamata Mohapatra, “ Management”, Biztantra, 2008.
3. Harold Koontz & Heinz Weihrich “Essentials of management” Tata McGraw Hill,1998.
4. Tripathy PC & Reddy PN, “Principles of Management”, Tata McGraw Hill, 1999
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