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Use of light, material, s un. Overview of render. About render environment and render presets. About render window.

Controlling render output size. Use of camera and views. Develop the following: 1. Use Autodesk Navisworks to create a schedule report on project and render the construction staging progress of the same. Seismic design philosophy and limit states Earthquake and their geotechnical and structural effects Capacity design philosophy Problem statement. Single Degree of Freedom Systems. Earthquake Response of Linear Systems. Multi Degree of Freedom Systems.

General principles of conceptual seismic design Regularity and irregularity of building structures Problem statement. Essentials of structural system for seismic resistance — RC frame systems, wall systems and dual systems The Capacity Design Philosophy The role of a stiff and strong vertical spine in the building Ductility as an alternative to strength.

Design of beams with reference to IS Problem statement. Design of columns and beam - column joints with reference to IS Problem statement. Architectural drawings will be presented.

A cost efficient load path will be carved out using Etabs From identifying loads, to creating etabs model Complete analysis and design of RCC building in zone 5 will be demonstrated.

Buildings oscillate during earthquake shaking. The oscillation causes inertia force to be induced in the building. The intensity and duration of oscillation, and the amount of inertia force induced in a building depend on the dynamic characteristics of the building, in addition to the characteristics of the earthquake shaking beyond the control of an engineer itself. The important dynamic characteristics of buildings are modes of oscillation and damping assumed constant in most practical cases.

A mode of oscillation of a building is defined by associated Natural Period of Vibration and associated Deformed Shape in which it oscillates. The project will shed light on various fundamental factors influencing the dynamic characteristics of a multi-storey building, using ETABS program. Moreover, by modelling several simple structures in ETABS, hands-on training in the software will also be imparted. Architectural drawings will be provided. An efficient load path will be have to be carved out using basic principles of conceptual design for earthquake resistance.

The conceptual design of the structure will be followed by analysis for the design load combinations as per IS Finally, detailed design of individual structural elements will be carried out, as per IS Complete analysis and design of RCC building in zone 5 is to be performed.

The challenge will teach participants how to model structural systems using etabs software, extract output from the program and draft construction drawings. This skill is highly desired at the entry level in any design firm. To begin with, Preparation of DBR will be touched upon in this session. This module covers the steps involved in modeling, design and analysis of RCC structure.

The next step involves the input viz material specifications, assigning supports and constants and design parameters of the model under study. The analysis of the building as per requirements will be discussed.

The Load Cases and Load Combinations to consider while designing a structure will be discussed in this module. The load calculations involved for each load case viz. This module covers the complete analysis part of the structure. Post Processing Results — Output file will be explained. At the end of the session, students will able to understand and execute the design of structural elements slab, beam, column and foundation with the aid of STAAD.

Pro and verify the results with manual calculation sheets. This module covers the types of steel structures and introduction to various components in a steel building. In this module, we will discuss the steel structure taken for study.

The modeling of the structure will be carried out using coordinate method. The Inputs to be given as per the specifications and codal standards will be explained first and then generated in the model. The loads considered in a steel building will be calculated using MS Excel and applied on the model.

After entering the input parameters and specifying the design specs, the analysis of the structure is carried out in this module. This module covers the interpretation of Output file generated and extraction of results like Bending Moment, Shear Force Diagram and Serviceability check for each element considered in the building under study. At the end of this session we will be going through the representation of the analysis carried out in the form of document and drawing.

The topics to be covered under this week are: -. In this week you will continue based on the structural plan understanding from the last week and start developing model on the software. In this week you continue the modeling of the remaining elements based on previous learning. In this week you will move from modeling to load applications. We will focus on gravity loads and their application on the model based on the inputs and IS code. In this week you will calculate lateral loads based on IS code and apply on the steel structural model.

In this week you will conclude the design of the steel building. In this week you will learn to calculate gravity loads and lateral loads apply to the model based on inputs and IS code. In this week ,you will continue on lateral loadings based on inputs and IS code and run analysis. In this week you will design the elements of the structure and will learn to group the members.

In this week you will continue the design of remaining elements of the structure. In this week you will learn to generate reports and drawings which are used for submission while working on a live project. The objective of this project is to design the building in such a way that it is laterally stable with the help of bracings and moment connections. The plan and elevation of the building will be provided and the building is supposed to be analysed for four types of loading:.

Consider the brick wall loading for mm thick and 1. At the end of the project, the student is expected to present their findings in the form of a report. The objective of this project is to design the building as per IS standard code.

Introduction to connection module in Staad Welded connections method of design Moment Connection method of design. Introduction to connection module in Profis Cast in place Anchor Design method Cast in place rebar design method for anchorage. Introduction to tall buildings Tallest buildings in the world in Loadings and supports Structural mechanics concepts Structural elements and their behaviour Structural systems and their classification.

Steel vs Concrete comparative study Structural steel sections Section classification Allowable stress design Limit state design Design flow chart Design of tension members Failure modes and strength estimation.

Design of compression member Euler buckling criteria Flexural buckling Torsional-Flexural buckling Design of beams Deflection criteria for the beams Bolted connection Welded connection. Composite structures Practical applications Key advantages Composite deck slab Design philosophy Construction of composite deck slab Advantages of composite deck slab Connection details. Composite beam philosophy Load transfer Design criteria Prefabricated composite beams Composite coupling beams Composite columns Load capacity of composite columns Composite connection Composite wall Software advances.

Understanding the use and importance of liquid retaining s tructures in residential, commercial and industrial aspect. Basics of calculating bending moments and shear forces for RCC members and designing them. Manual Analysis of tank walls - Hand calculations to determine the expected forces on the tank walls.

Modelling Tank walls on STAAD in the form of line elements, applying appropriate gravity and lateral loads and extracting the forces for design from the model. Pro FEA Analysis with creation of plate element,loading,support creation etc. Pro FEA and extracting analysis results like plate stress ,deflection, bending moment, shear force etc. Introduction to portal frame structures Various types of portal frames — Single storied single bay Single storied — two bays Two storied single bay Two storied two bays Multi storied multibay Application of portal frames in real life structures — steel and concrete buildings.

Analysis of an over ground storage tank with staging and extracting analysis results like plate stress ,deflection, bending moment shear force etc. Foundation Base slab ,wall, beam, slab Design for underground and elevated tanks. Basics of RC Detailing in Walls and slabs as per design requirements. Things to be r emembered during design and erection process. The topics that will be covered in this segment are —. The students would be introduced to beams and its various types. Students would be introduced to analysis approach for single span beams.

Types of loading that will be considered are. Also, the approach to determine bending moment and shear force diagrams of these beams will be discussed in detail.

The usual sign convention used in the industry will also be discussed. Introduction to statically indeterminate beams would be done.

Different methods of analysis of statically indeterminate structures — stiffness method and force method will be introduced. The above methods will be used to determine bending moment and shear force diagrams of a single span statically indeterminate beam — analysis of propped cantilever beam subjected to uniform load and concentrated load. Introduction to internal hinges in statically indeterminate beams along with real life example.

Implications of internal hinges on bending moments. Analysis of single span and two span beams with internal hinge. Determination of bending moment diagram and shear force diagrams for these beams. Concept of influence line diagram will be introduced. This will be followed by its applications. Influence lines of vertical reactions, bending moment and shear force will be derived and discussed for a single span simply supported beam.

Concept of moving loads will be discussed and determination of absolute maximum bending moment in beam due to a system of concentrated loads will be discussed. Introduction to concept of flexible supports will be done. Real life examples of flexible supports would be discussed. Two span beam with one of the supports as spring would be analyzed. Introduction to portal frame structures and various types of portal frames —. Analysis of a single storied portal frame with pinned bases using moment distribution method; Analysis of single storied portal frame with fixed bases using slope deflection method.

Analysis of single storied portal frame with pinned bases subjected uniform gravity load using moment distribution method Analysis of single storied portal frame with fixed base subjected to concentrated load using slope deflection method Concept of sway of portal frame due to gravity loads. Introduction to approximate methods of analysis of multi-storied portal frames using portal frame menthod and cantilever method Derivation of bending moment and shear force diagrams.

The courses at Skill-Lync are designed to focus on the core fundamentals and their implementation in industry-oriented projects. These courses are designed by industry experts who understand the job market. Skill-Lync provided me with constant support and guidance and gave me an opportunity to explore new tangents in my field. Trainee Engineer Equilibrium Solutions Pvt. Skill-Lync offers industry-oriented programs.

The support team cleared all my doubts in a timely manner and ensured that I understood the problem areas. Thanks to the many interviews that Skill-Lync sent my way.

Design Engineer Brain Capital Technology. Detailed project-based courses that teach you the fundamentals of designing and building a high-rise building.

Learning these tools and techniques may allow you to pursue a career in the design of high-rise buildings. This program is directly mapped to job functions that are available in major construction firms. Skill-Lync offers industry relevent advanced engineering courses for engineering students by partnering with industry experts.

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