Showing posts with label Structural Design. Show all posts
Showing posts with label Structural Design. Show all posts

Thursday, December 7, 2023

Unified Design of Steel Structures : principles of structural design, loads, load factors and load combinations, steel building materials, tension members, compression members, bending members, plate girders, beam-columns and frame behavior, composite construction, connection elements, simple connections, moment connections, steel system for seismic resistance, single plate shear connections, beam to column connections, moment frame systems, special truss moment frames, bolted and welded connections, cross sectional shapes for compression, bearing wall construction, ling span construction, high rise construction, single story construction, built-up shapes, steel for welding.
Design of Concrete Structure(1) : concrete, reinforced concrete and prestressed concrete, materials, design of concrete structures and fundamental assumptions, flexural analysis and design of beams, shear and diagonal tension in beams, bond, anchorage and development length, serviceability, analysis and design for torsion, short columns, slender columns, analysis of indeterminate beams and frames, analysis and design of one-way slabs, analysis and design of two-way slabs, walls, footings and foundations, retaining walls, strut-and-tie models, design of reinforcement at joints, concrete building systems, seismic design, anchoring to concrete, prestressed concrete, yield line analysis for slabs, strip method for slabs, floor and roof systems, ledge girders, beam column joints, wall footings, column footings, direct design method for column-supported slabs.
Sustainable Steel Buildings a Practical Guide for Structures : aims of sustainable construction, basic principles of sustainability assessment, sustainable steel construction, sustainability certification labels for buildings, case studies and life-cycle assessment comparisons, calculation of external cost for highway bridges, effective application of high strength steels, column without foundation single structural member, flexibility of the building, methods for bridge analyses, thermal activation of steel floor systems, effective thermal insulation by application of steel, the structure of fire protective coating systems, composite beams with moderate high strength materials, design for deconstruction reuse and recycling.
Structural Steel Drafting and Design : structural steel design drawings for steel construction, the world of structural steel, the structural drafter at work, reading architectural drawings for steel-framed buildings, an overview of basic structural steel design calculations, the preparation of structural steel design, drawings and details, structural steel sections and details, beam to column connections, beam to girder connections, steel joist to column and joist to beam connections, structural steel framing plans, design of beam bearing plates, design of structural steel columns, wall sections and details, structural engineering, essential skills for a structural drafter, the steel construction manual, load and resistance factor design.
Structural Steel Designers : properties of structural steels and effects of steelmaking and fabrication, fabrication and erection, general structural theory, analysis of special structures, connections, building design criteria, design of building members, floor and roof systems, lateral-force design, cold-formed steel design, design criteria for bridges, application of criteria for cost-effective highway bridge design, railroad bridge design, beam and girder bridges, truss bridges, arch bridges, cable-suspended bridges, need for longer spans, design of arch bridges, load factor design of truss joint, truss joint design procedure, allowable stress design of a composite box girder bridge, composite steel and concrete spans, span lengths and deflections, highway design loadings, maximum width-to-thickness ratios, structural steel systems for seismic design, lightweight steel framing.
Structural Modelling Manual : modelling principles, modelling specific structural members, beams and columns, joints and connections between beams and columns, slabs and walls, modelling specific structure types, multistorey buildings, roof structures, symmetrical structures, tunnels and culverts, cylindrical structures, bridge decks, reinforced concrete, steel, composite, modelling loads, point of application of load, other permanent loads, transient loads, internal loads, modelling restraints, modelling for dynamic analysis, beams and columns, slabs and walls, warnings and errors during analysis, concrete post processing of 2d element results, modelling beams with long slabs, grillage analogy for slabs, setting up a model with 2d elements, axis systems and element orientation, section properties from first principles, modelling beams and slab floors with in plane stresses, symmetrical and anti-symmetrical loads.
Structural Design of Building : loadings and aspects of structural theory relating to buildings, the construction of buildings, steel, concrete, timber, foundations, walls, floors, roofs, arches and columns, geology, site investigation, stability of buildings, dimensions of buildings, basements and retaining structures, structural alterations, structural defects in buildings, the ancient use of sign and geometry in the setting out of buildings, wall tie failure, compression, structural defects, high alumina cement, theory behind the design, magnetic surveys, made-up ground or fill, height and thickness of an arch, modern rafter design, wind bracing, beam and block suspended floors and hollow core floors, changes due to temperature changes, hydraulic lime, leaning walls and stability, bearing pressure, bearing capacity, failure of concrete, concrete mix designs, shear failure, fire and corrosion, solid brick construction.
Steel Detailer Manual : use of structural steel, structural shapes, tolerances, connections, interface to foundations, welding, bolting, protective treatment, drawings, codes of practice, detailing practice, layout of drawings, beam and column detailing conventions, erection marks, holding down bolts, design guidance, load capacities of simple connections, sizes and load capacity of simple column bases, detailing data, connection details, steel work detailing, constructing a 3-d model of a steel structure, future developments, multi-storey frame buildings, single-storey frame buildings, portal frame buildings, vessel support structure, roof over reservoir, tower, bridges, single-span highway bridge, highway sign gantry, staircase, mass of round and square bars, mass of flats, metric conversion of units, building materials.
Reliability Analysis for Structural Design : design working life and design situation, probability theory in structural reliability, selected models of random variables, elementary reliability theory, time variant reliability, reliability under variable loads with intermittencies, reliability basis of the partial factor method, system reliability, principles of risk assessment, parallel system, the design value method, partial factors for permanent load, limit state function, rectangular wave processes, simulation methods, comparison of the coverage and prediction methods, beta distribution, fundamental cases of one random variable, estimation of consequences.
Fundamentals of Structural Engineering : introduction to structural engineering, statically determinate truss structures, statically determinate beams, statically determinate plane frames, cable structures, statically determinate curved members, shallow foundations, vertical retaining wall structures, statically indeterminate structures, the force method, the displacement method, approximate methods for estimating forces in statically indeterminate structures, finite element displacement method for framed structures, practice of structural engineering, multi-span horizontal structures, lateral load issues for buildings, vertical loads on multistory buildings, inelastic response of structures, live load patterns for frame structures, shear beam model, building response under lateral loads.
Analysis and Design of Steel and Steel Concrete Composite Bridges : types of steel and steel concrete composite bridges, nonlinear material behavior of the bridge components, applied loads and stability of steel and steel concrete composite bridges, design examples of steel and steel concrete composite bridges, finite element analysis of steel and steel concrete composite bridges, examples of finite element models of steel bridges, examples of finite element models of steel concrete composite bridges, modeling of shear connection for steel concrete composite bridges, material modeling of the bridge components, design example of a highway steel concrete composite bridge, design of bolted and welded joints.
Earthquake Engineering for Structural Design : new challenges in seismic design, living with earthquakes, learning from earthquakes, advances in conception about earthquakes, tectonic plates and faults, faults and earthquakes, earthquakes and ground motions, ground motions and structures, advances in seismic design methodologies, challenges for next code generation of seismic codes, structural response to interpolate crustal earthquakes, structural response to intraslab deep earthquakes, structure influence on ground motions, ground response to earthquakes, diffuse zones and fault types, lessons for earthquake hazard, lessons for seismic design.
Earthquake Disasters the Grand Challenge Engineering : the grand challenge for earthquake engineering research, issues in earthquake engineering research, revolutionizing earthquake engineering research through information technology, achieving the grand challenge, water and sewage systems, highways, railroads and mass transit systems, performance of soil foundation structure interaction systems, amplification of ground motion, soil failure and earthquake damage, tsunamis in waiting, earthquake simulation, soil foundation structure interaction, earthquake sources, mitigation measures, ports and air transportation systems.
Design of Concrete Structures : design of reinforced concrete beams, flexural analysis and design of beams, shear and diagonal tension in beams, bond, anchorage and development length, analysis and design for torsion, continuous beams analysis and design, design of reinforced concrete slabs, design of one-way slabs, design of edge supported two-way slabs, design of reinforced columns, design of reinforced concrete columns, slender concrete columns, design of concrete structural systems, analysis of a column with compression load plus uniaxial moment, development of bars in compression, design of a beam with t-shape, practical flexure design of a rectangular beam with tension reinforcement.
Practice for the Structural Use of Steel : structural system, design working life, structural element definitions, design justification by tests, foundation design, ultimate limit states, structural integrity and robustness, serviceability loads, loading, structural steel, prevention of brittle fracture, welding consumables, steel castings and forgings, materials for grouting of baseplates, materials for composite construction, cold formed steel material properties, load factors and material factors, load factors and combinations, design methods and analysis, analysis models and assumptions, first order linear elastic analysis, advanced analysis, stress ratios for classification, effective width method for slender cross-sections, restrained beams, lateral torsional buckling of beams.
Advanced Analysis and Design of Steel Frames : type of steel frames, type of beam column connections, analysis tasks and method for steel frame design, elastic stiffness of prismatic beam element, elastic stiffness equation of tapered beam element, elastic stiffness equation of composite beam element, sectional yielding and hysteretic model of steel beam columns, hysteretic behavior of composite beams, elasto-plastic stiffness equation of beam element, elastic and elasto-plastic stiffness equations of column element, effects of joint panel and beam-column connection, brace element and its elastic and elasto-plastic stiffness equations, shear beam and its elastic and elasto-plastic stiffness equations, elastic stability analysis of planar steel frames, nonlinear analysis of planar steel srames, seismic response analysis of planar steel frames, analysis model for space steel frames, development of structural design approach, structural system reliability calculation, system reliability assessment of steel frames, reliability-based advanced design of steel frames.