[4262] S.E. (Civil) STRUCTURAL ANALYSIS - I (2008 Pattern) (Semester - I)

Similar documents
Shear Forces and Bending Moments

MECHANICS OF SOLIDS - BEAMS TUTORIAL 2 SHEAR FORCE AND BENDING MOMENTS IN BEAMS

ENGINEERING SCIENCE H1 OUTCOME 1 - TUTORIAL 3 BENDING MOMENTS EDEXCEL HNC/D ENGINEERING SCIENCE LEVEL 4 H1 FORMERLY UNIT 21718P

2. Axial Force, Shear Force, Torque and Bending Moment Diagrams

Approximate Analysis of Statically Indeterminate Structures

INTRODUCTION TO BEAMS

Module 2. Analysis of Statically Indeterminate Structures by the Matrix Force Method. Version 2 CE IIT, Kharagpur

Stresses in Beam (Basic Topics)

MECHANICS OF SOLIDS - BEAMS TUTORIAL 1 STRESSES IN BEAMS DUE TO BENDING. On completion of this tutorial you should be able to do the following.

Design of Steel Structures Prof. S.R.Satish Kumar and Prof. A.R.Santha Kumar

Recitation #5. Understanding Shear Force and Bending Moment Diagrams

Statics of Structural Supports

Deflections. Question: What are Structural Deflections?

STRUCTURAL ANALYSIS II (A60131)

Chapter 8. Shear Force and Bending Moment Diagrams for Uniformly Distributed Loads.

Finite Element Simulation of Simple Bending Problem and Code Development in C++

Structural Axial, Shear and Bending Moments

Optimum proportions for the design of suspension bridge

Mechanics of Materials. Chapter 4 Shear and Moment In Beams

EDEXCEL NATIONAL CERTIFICATE/DIPLOMA MECHANICAL PRINCIPLES AND APPLICATIONS NQF LEVEL 3 OUTCOME 1 - LOADING SYSTEMS TUTORIAL 3 LOADED COMPONENTS

Structural Analysis - II Prof. P. Banerjee Department of Civil Engineering Indian Institute of Technology, Bombay. Lecture - 02

DESIGN OF SLABS. 3) Based on support or boundary condition: Simply supported, Cantilever slab,

Bending Stress in Beams

ENGINEERING MECHANICS STATIC

EDEXCEL NATIONAL CERTIFICATE/DIPLOMA MECHANICAL PRINCIPLES OUTCOME 2 ENGINEERING COMPONENTS TUTORIAL 1 STRUCTURAL MEMBERS

Problem 1: Computation of Reactions. Problem 2: Computation of Reactions. Problem 3: Computation of Reactions

CHAPTER 3 SHEARING FORCE AND BENDING MOMENT DIAGRAMS. Summary

STRESS AND DEFORMATION ANALYSIS OF LINEAR ELASTIC BARS IN TENSION

MECHANICS OF SOLIDS - BEAMS TUTORIAL TUTORIAL 4 - COMPLEMENTARY SHEAR STRESS

Modeling Beams on Elastic Foundations Using Plate Elements in Finite Element Method

Structural Design Calculation For Pergola

Introduction to Mechanical Behavior of Biological Materials

Optimising plate girder design

Shear Force and Moment Diagrams

MCE380: Measurements and Instrumentation Lab. Chapter 9: Force, Torque and Strain Measurements

DESIGN OF SLABS. Department of Structures and Materials Engineering Faculty of Civil and Environmental Engineering University Tun Hussein Onn Malaysia

B.TECH. (AEROSPACE ENGINEERING) PROGRAMME (BTAE) Term-End Examination December, 2011 BAS-010 : MACHINE DESIGN

16. Beam-and-Slab Design

Analysis of Statically Determinate Trusses

Rigid and Braced Frames

ME 343: Mechanical Design-3

Design of Steel Structures Prof. S.R.Satish Kumar and Prof. A.R.Santha Kumar. Fig some of the trusses that are used in steel bridges

Introduction to Beam. Area Moments of Inertia, Deflection, and Volumes of Beams

Aluminium systems profile selection

The elements used in commercial codes can be classified in two basic categories:

The Analysis of Open Web Steel Joists in Existing Buildings

P4 Stress and Strain Dr. A.B. Zavatsky MT07 Lecture 3 Statically Indeterminate Structures

HØGSKOLEN I GJØVIK Avdeling for teknologi, økonomi og ledelse. Løsningsforslag for kontinuasjonseksamen i Mekanikk 4/1-10

Eurocode 3 for Dummies The Opportunities and Traps

Qualitative Influence Lines. Qualitative Influence Lines. Qualitative Influence Lines. Qualitative Influence Lines. Qualitative Influence Lines

A Case Study Comparing Two Approaches for Applying Area Loads: Tributary Area Loads vs Shell Pressure Loads

8.2 Elastic Strain Energy

ANALYSIS FOR BEHAVIOR AND ULTIMATE STRENGTH OF CONCRETE CORBELS WITH HYBRID REINFORCEMENT

Module 5 (Lectures 17 to 19) MAT FOUNDATIONS

Advanced Structural Analysis. Prof. Devdas Menon. Department of Civil Engineering. Indian Institute of Technology, Madras. Module

CLASSICAL STRUCTURAL ANALYSIS

SECTION 3 DESIGN OF POST TENSIONED COMPONENTS FOR FLEXURE

MECHANICS OF MATERIALS

Lecture 8 Bending & Shear Stresses on Beams

REPAIR AND STRENGTHENING OF HISTORICAL CONCRETE BRIDGE OVER VENTA RIVER IN LATVIA

Objectives. Experimentally determine the yield strength, tensile strength, and modules of elasticity and ductility of given materials.

BEAMS: SHEAR AND MOMENT DIAGRAMS (GRAPHICAL)

III. Compression Members. Design of Steel Structures. Introduction. Compression Members (cont.)

APOLLO SALES LTD SITE SCAFFOLD STEP DESIGN CHECK CALCULATIONS

Magnetic / Gravity Loading Analysis

ARCH 331 Structural Glossary S2014abn. Structural Glossary

2. ARRANGEMENT OF SENSORS ON THE MODEL OF THE MS-40 BRIDGE SPAN

Designing a Structural Steel Beam. Kristen M. Lechner

5 G R A TINGS ENGINEERING DESIGN MANUAL. MBG Metal Bar Grating METAL BAR GRATING MANUAL MBG METAL BAR GRATING NAAMM

Solid Mechanics. Stress. What you ll learn: Motivation

EVALUATION OF SEISMIC RESPONSE - FACULTY OF LAND RECLAMATION AND ENVIRONMENTAL ENGINEERING -BUCHAREST

SEISMIC DESIGN. Various building codes consider the following categories for the analysis and design for earthquake loading:

SECTION 3 DESIGN OF POST- TENSIONED COMPONENTS FOR FLEXURE

DS/EN DK NA:2014

COMPUTATIONAL ENGINEERING OF FINITE ELEMENT MODELLING FOR AUTOMOTIVE APPLICATION USING ABAQUS

BASIC CONCEPTS AND CONVENTIONAL METHODS OF STUCTURAL ANALYSIS (LECTURE NOTES)

SECTION 5 ANALYSIS OF CONTINUOUS SPANS DEVELOPED BY THE PTI EDC-130 EDUCATION COMMITTEE LEAD AUTHOR: BRYAN ALLRED

INTRODUCTION TO LIMIT STATES

ADVANTAGES OF STEEL FIBRE REINFORCED CONCRETE IN INDUSTRIAL FLOORS

Sheet metal operations - Bending and related processes

Steel joists and joist girders are

Field Damage Inspection and Static Load Test Analysis of Jiamusi Highway Prestressed Concrete Bridge in China

USE OF CFRP LAMINATES FOR STRENGTHENING OF REINFORCED CONCRETE CORBELS

Formwork for Concrete

CH. 2 LOADS ON BUILDINGS

Finite Element Method (ENGC 6321) Syllabus. Second Semester

Chapter 5: Indeterminate Structures Slope-Deflection Method

4.2 Free Body Diagrams

Problem Set 1 Solutions to ME problems Fall 2013

STANDARD SPECIFICATIONS

The following sketches show the plans of the two cases of one-way slabs. The spanning direction in each case is shown by the double headed arrow.

COMPLEX STRESS TUTORIAL 3 COMPLEX STRESS AND STRAIN

Bending, Forming and Flexing Printed Circuits

Design of reinforced concrete columns. Type of columns. Failure of reinforced concrete columns. Short column. Long column

Finite Element Formulation for Beams - Handout 2 -

Basics of Reinforced Concrete Design

Chapter 5 Bridge Deck Slabs. Bridge Engineering 1

SLAB DESIGN. Introduction ACI318 Code provides two design procedures for slab systems:

APPENDIX C Slab Calculation 2

Transcription:

Total No. of Questions : 12] P935 [4262] - 110 S.E. (Civil) STRUCTURAL ANALYSIS - I (2008 Pattern) (Semester - I) SEAT No. : [Total No. of Pages : 7 Time : 3 Hours] [Max. Marks :100 Instructions to the candidates: 1) Answer Q.No.1 or 2, Q.No.3 or 4, Q.No.5 or 6 from Section - I & Q.No.7 or 8, Q.No.9 or 10, Q.No.11 or 12 from Section - II. 2) Answers to the two sections must be written in separate books. 3) Neat diagrams must be drawn wherever necessary. 4) Figures to the right indicate full marks. 5) Use of electronic pocket calculator is allowed. 6) Assume suitable data, if necessary. SECTION - I Q1) a) A simply supported beam of span 6m is loaded and supported as shown in figure 1. Using Macaulay s method, determine slope and deflection at C. Assume EI = 4 10 4 kn-m 2. [7] b) Differentiate static and kinematic indeterminacy. [4] P.T.O.

c) Find slope and deflection at C for cantilever beam of uniform section as shown in figure 2. using moment area method. E = 2 10 5 MPa and I = 5 10 8 mm 4. [7] Q2) a) Explain relation between actual beam and conjugate beam. [4] b) A cantilever beam of span 6m is carrying load of 10 kn at the free end another 10 kn at its centre as shown in figure 3. Determine slope and deflection of the cantilever at the free end using conjugate beam method. Take EI = Constant. [7] c) A continuous member ABCD is bent in one plane as shown in figure 4. The member is rigidly fixed at A and carries a vertical load of 20kN at free end. Find vertical deflection at free. Take EI = 30 10 3 kn-m 2.[7] [4262]-110 2

Q3) a) A fixed beam AB of span 9m carries uniformly distributed load of 70 kn/m over span of 3m from A. Find fixed end moments from first principle. Draw SFD and BMD. b) A continuous beam ABCD supported and loaded as shown in figure 5. Find moments and reactions at supports using theorem of three moments. Draw SFD and BMD. Q4) a) Analyze the prop cantilever beam of span 5m subjected to udl of 10kN/m throughout the span and draw SFD and BMD. b) A fixed beam of span 10m carries two point loads of 50kN and 60kN acting at 3m and 6m from left support. Find fixed end moments by first principle and check the values with standard formula. Q5) A steel truss as shown in figure 6. The modulus of elasticity 210 GPa. The cross-sectional area of member AB is 200 mm 2, BC is 300 mm 2 and CA is 350 mm 2. Calculate horizontal and vertical deflection at joint A. [16] [4262]-110 3

Q6) Find the forces in the various members of the truss as shown in figure 7.[16] SECTION - II Q7) a) Write assumptions made in plastic theory. [4] b) Cross-Section of beam shown in figure 8 is subjected to sagging bending moment. Find shape factor if permissible yield stress in compression and tension are 230 MPa and 280 MPa respectively. [7] c) A continuous beam ABC is simply supported at A and C and continuous over B. If AB = 5m and BC = 7m Span AB is loaded with udl 40kN/m and span BC with udl 30kN/m. There act a point load of 80kN at 3m from left of C. If all loads are ultimate. Find plastic moment and BMD at collapse. Assume same Mp throughout. [7] [4262]-110 4

Q8) a) Determine the plastic moment at collapse for continuous beam ABC loaded with ultimate load and supported as mention below with constant Mp. Support A is fixed B and C are roller. AB = 3m, BC = 5m. Span AB is subjected to 50kN/m and BC is subjected to point load of 100kN at centre. b) The frame is supported and loaded with ultimate loads as shown in figure 9. Find plastic moment and collapse load. [10] Q9) a) Draw I.L.D. for the reaction at A, B and C. Also draw I.L.D. for S.F. at midpoint of AB for the beam as shown in figure 10. b) Construct I.L.D for forces in members U 3 U 4, L 3 L 4, L 3 U 4 and U 3 L 3 for the truss shown in figure 11. [4262]-110 5

Q10)a) A simply supported beam loaded as shown in figure 12. Find reactions using I.L.D. b) Draw I.L.D. for forces in members U 2 U 3, L 2 L 3, L 2 U 3 and U 2 L 2 for the truss shown in figure 13. Q11)a) Uniformly distributed load of 50kN/m 8m long crosses a girder AB having span 25m. Calculate maximum shear force and bending moment at a section 10m from left hand support A. b) Five point loads 80kN, 80kN, 150kN, 150kN and 90kN space at 2.1m, 2.4m, 2.1m and 1.8m in order to cross girder of 26m span from left to right with 80kN load leading. Determine bending moment at 8m from left hand support. Also determine shear force at same point. Q12)a) Two wheel loads 100kN and 120kN spaced at 0.8m apart roll on the girder as shown in figure 14. Find the maximum positive and negative shear force at section C. [4262]-110 6

b) Simply supported distributed load of 8kN/m length 4m moves on a girder of span 20m. Find maximum positive and maximum negative shear force at 8m from support A. Also find maximum bending moment at same point. vvvv [4262]-110 7