Australian Structural Engineering Course: Steel, RCC& Timber

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U P L O A D E R
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Australian Structural Engineering Course: Steel, RCC& Timber
Published 12/2024
Created by MileHigh Structures Academy & Consulting
MP4 | Video: h264, 1280x720 | Audio: AAC, 44.1 KHz, 2 Ch
Level: All | Genre: eLearning | Language: English | Duration: 124 Lectures ( 42h 40m ) | Size: 23.1 GB

Comprehensive Bootcamp Structural Engineering Course of Concrete, Steel, and Timber Structures for Australian Engineers



What you'll learn
Linear Static Analysis of Structures
Linear Dynamic Analysis of RCC Structures (Response Spectrum Analysis)
Design of Industrial Heavy Structures
Design of Steel Structures
Design of RCC Structures
Modal Analysis of RCC and Steel Structures

Requirements
Basic Knowledge of Structural Engineering

Description
Structural Analysis and Design of Platform Floor with Hot Rolled SectionsDesign of Structural Steel Mezzanine with Cold Form MembersDesign of Steel Structural Pipe Racks with Connection DesignDesign of Structural Steel Foot Overbridge as per AS4100:2020Introduction to Structural Steel Section Types Building SystemsDetailed Calculations of Steel Structure as per AS4100: 2020Calculations of Structural Steel Connections Components - Bolted and WeldedDesign of Mechanical and Chemical anchors as per AS5216:2021AS1170.0 - Structure Design Actions and General Principles ExplanationAS1170.2 Design of Structures with Wind Actions (Practical Example)Calculation of Cpe and Cpi (External and Internal Pressure Coefficient)Calculation of Aerodynamic Shape Factor Cshp as per AS1170.2-2021 (Annexure B)Dynamic Wind Load Calculation Cdyn for Different Buildings and StructuresImposed Actions Calculations as per AS1170.1 (Live Load Calculations)Advanced Concepts of Structural Wind Engineering for BuildingsCalculations of Seismic Actions as per AS/NZS1170.4Calculation of Snow and Ice Actions as per AS/NZS 1170.3This is an exclusive online course teaching you about the Australian Standards for Structural Steel Design i.e. all part of AS1170, AS4100, and AS3600 with a practical detailed explanation of the Structural engineering concepts widely used by Australian Structural Engineers. This plethora of information is shared to enable you to design better and more durable structures. This is an "in progress' online course with additional lectures added every week.

Who this course is for
Civil/Structural Engineers and Students

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Kommentar
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23.1 GB | 57min 48s | mp4 | 1280X720 | 16:9
Genre:eLearning |Language:English


Files Included :
1 -Introduction to the Structural Steel Mezzanine floors in Australia.mp4 (299.84 MB)
2 -Modelling of Mezzanine Floor in ETABS.mp4 (163.93 MB)
3 -Modelling of Secondary beams and Deck floors.mp4 (106.7 MB)
4 -Application of Seismic loads in ETABS as per AS1170 on Mezzanine Steel Structure.mp4 (247.77 MB)
5 -Defining Load Combinations, Mass Source and P-Delta in ETABS.mp4 (349.22 MB)
6 -Design Results and Verification in ETABS.mp4 (296.2 MB)
7 -Steel Design as per AS41002020 and Composite beam Design.mp4 (423.63 MB)
1 -An introduction to AS1170 2, including its Applicability and Basics.mp4 (115.89 MB)
10 -Explanation of Aerodynamic Shape Factor (Cshp).mp4 (189.06 MB)
2 -Site Wind Speed, Regional Wind Speed, and Design Wind Speed (Vsit,β, Vdes,θ, Vr).mp4 (169.47 MB)
3 -Wind Pressure, Friction Drag Forces, and Debris Impact Loading.mp4 (126.06 MB)
4 -Regional Wind Speed (Vr), Climate Change Multiplier (Mc) and (Md).mp4 (201.18 MB)
5 -Terrain Category and TerrainHeight Multiplier (Mz,cat).mp4 (121.69 MB)
6 -Shielding Multiplier (Ms) with Practical Example as per AS1170 2 21.mp4 (154.5 MB)
7 -Lee Multiplier (Mlee) Calculation for New Zealand.mp4 (20.93 MB)
8 -Topographic Multiplier (Mt) and Hill Shape Multiplier (Mh) for Hills.mp4 (141.07 MB)
9 -calculation of Regional Wind Speed, Wind Pressure & Topographic Multiplier (Mt).mp4 (268.02 MB)
1 -Internal Pressure Coefficient Cpi - Meaning and Detailed Explanation.mp4 (120.06 MB)
2 -Internal pressure Cpi Values for Different Opening Areas and Volume Factor kv.mp4 (274.01 MB)
3 -External Pressure Coefficient Cpe - Roofs and Walls.mp4 (241.89 MB)
4 -Cpe and Cpi Calculation Example with reference to the AS1170 2 2021.mp4 (225.19 MB)
1 -Calculation of Aerodynamic Shape Factor for Hoarding Structure (Cshp).mp4 (257.39 MB)
10 -Calculation of Aerodynamic Shape Factor for Conical Canopies (Cshp).mp4 (33.45 MB)
11 -Calculation of Cshp for Solar Panel mounted on Ground.mp4 (210.11 MB)
12 -Calculation of Cshp for Solar Panel mounted on Roof.mp4 (103.3 MB)
2 -Calculation of Aerodynamic Shape Factor for Hyperbolic Paraboloid Roof Structure.mp4 (137.02 MB)
3 -Calculation of Aerodynamic Shape Factor for Cantilever Roof and Canopies (Cshp).mp4 (265.72 MB)
4 -Calculation of Dynamic Coefficient Factor for Cantilever Roofs with Span 15m.mp4 (116.18 MB)
5 -Calculation of Aerodynamic Shape Factor for Troughed Free Roof (Cshp).mp4 (218.45 MB)
6 -Calculation of Aerodynamic Shape Factor for Mono-Slope Free Roof (Cshp).mp4 (132.82 MB)
7 -Calculation of Aerodynamic Shape Factor for Pitched Free Roof (Cshp).mp4 (96.47 MB)
8 -Calculation of Aerodynamic Shape Factor for Awnings and Canopies.mp4 (76.42 MB)
9 -Calculation of Aerodynamic Shape Factor for Carports (Cshp).mp4 (44.81 MB)
1 -Dynamic Response Factor Cdyn for Tall Buildings and Towers -Detailed Calculation.mp4 (275.67 MB)
2 -Dynamic Response Factor Cdyn for Towers, Poles and Masts with Head Frames.mp4 (285.07 MB)
3 -Dynamic Response Factor Cdyn for Timber Monopole.mp4 (172.54 MB)
4 -Design of Steel Monopoles with Head Frame as per AS4100 and AS1170 2 2021.mp4 (206.84 MB)
1 -Permanent and Imposed Actions for all categories of building structures.mp4 (379.47 MB)
2 -Calculation of Live Load Reduction Factor (LLRF) with Example in ETABS.mp4 (194.99 MB)
3 -Imposed Actions for Roofs, Car Parking Buildings and Railing Horizontal loads.mp4 (299.83 MB)
4 -Horizontal Actions on Crane Rails and Grandstands including Imposed Actions.mp4 (222.83 MB)
1 -Concept of Streamlined Body, Bluff Body Aerodynamics and Vortex Shedding.mp4 (205.08 MB)
2 -Mitigation of Vortex Shedding Effects with Stock Dampers and Helical Strakes.mp4 (117.83 MB)
3 -Significance of Reynolds Number, Strouhal Number and Wake effects.mp4 (139.63 MB)
4 -Along and Across Wind Motion in Detail including Comfort Criteria for Building.mp4 (223.73 MB)
1 -Annual Probability of Exceedance, Probability Factor (Kp) and Hazard Factor(z).mp4 (299.1 MB)
2 -Earthquake Design Categories EDC1, EDC2, EDC3 as per KpZ and Importance Factor.mp4 (200.94 MB)
3 -Design Principles of Seismic Force Resisting System of Buildings and Structures.mp4 (193.07 MB)
4 -Application of Static and Dynamic Analysis and Seismic Code Provisions.mp4 (356.48 MB)
5 -Natural Period of the Structure and Vertical Distribution of Earthquake Forces.mp4 (307.87 MB)
6 -Seismic Load Calculations for Moment Resisting Steel Frame Structure.mp4 (130.43 MB)
7 -Seismic Load Calculations for Moment Resisting Concrete Frame Parking Structure.mp4 (76.48 MB)
8 -Seismic Load Calculations for Moment Resisting Concrete Frame Golf Club.mp4 (44.49 MB)
9 -Theory Examples of Seismic Calculations for Buildings as per AS1170 4.mp4 (77.33 MB)
1 -Categorization of Region of Australia and New Zealand for Snow and Ice Actions.mp4 (153.17 MB)
2 -Ice Actions, Wind loads on Iced Structures, Snow Actions and Ground Snow loads.mp4 (210.81 MB)
3 -Ground snow load(Sg) for Alpine and Sub-Alpine region in Australia.mp4 (92.94 MB)
4 -Example calculation of Snow actions for Gable Roof as per AS1170 3.mp4 (73.97 MB)
1 -Introduction to the Cold Form Steel members.mp4 (113.76 MB)
10 -Design of Anchors to support the Mezzanine on the RCC Floor.mp4 (136.53 MB)
2 -Purlins and Girts in PEMB System - Detailed Explaination.mp4 (178.42 MB)
3 -Understanding Moment Capacity Tables for Purlins and Girts.mp4 (151.94 MB)
4 -Structure Design of C-Purlins in Ex-Facta Software - Strength and Serviceability.mp4 (160.72 MB)
5 -Structure Design of Purlins for 5 KPa Imposed Load on Mezzanine.mp4 (156.43 MB)
6 -Modelling of Structure Steel Mezzanine in ETABS.mp4 (163.42 MB)
7 -Defining Load Patterns in ETABS.mp4 (177.11 MB)
8 -Defining Load Combinations as per AS1170.mp4 (193.5 MB)
9 -Design Calculations Check for Steel Structure as per AS41002020.mp4 (224.12 MB)
1 -Introduction to Structural Steel Pipe Racks.mp4 (173.46 MB)
10 -Design of RCC Foundations for Axial Load and Bending Moment.mp4 (224.16 MB)
11 -Design of Moment Connection for Steel Moment Resistant Frame.mp4 (328.96 MB)
12 -Design of Shear Connection for Steel Frame of Pipe Rack.mp4 (107.08 MB)
13 -Design of Bracing connection as per AS41002020.mp4 (85.88 MB)
2 -Modelling of Structural Steel Piperacks with Plan and Elevation Bracings.mp4 (236.33 MB)
3 -Application of Dead Loads, Piping loads and Seismic Loads to the Pipe Rack.mp4 (401.65 MB)
4 -Preliminary Design for Gravity and Piping Loads as per AS41002020.mp4 (233.67 MB)
5 -Calculation of Wind Speed as per AS1170 2 for Open Steel Structure.mp4 (163.98 MB)
6 -Application of Wind Load on Open Steel Structures.mp4 (293.63 MB)
7 -Strength and Serviceability Design of Pipe Racks Steel Structure.mp4 (174.84 MB)
8 -Design of base plate for Axial load and Bending Moment as per AS41002020.mp4 (321.33 MB)
9 -Design of RCC Pedestals as per AS36002018.mp4 (107.35 MB)
1 -Introduction to Structural Steel Foot Over Bridges Constructed in Australia.mp4 (269.72 MB)
2 -Design of Cold Form Beams to support Deck.mp4 (31.71 MB)
3 -Modelling of Structural Steel Foot Over Bridge in ETABS.mp4 (88.28 MB)
4 -Application of Dead Loads, Live Loads and Seismic Loads on the foot Over Bridge.mp4 (80.91 MB)
5 -Calculation of Wind Load on Foot over bridge Structure as an Open Structure.mp4 (210.98 MB)
6 -Load Combinations as per AS1170 for Wind and Seismic Loads.mp4 (97.36 MB)
7 -Design of Steel Structure of Foot Over Bridge as per AS41002020.mp4 (120.59 MB)
8 -Design of Structural Steel Connections as per AS41002020 for Foot Over Bridge.mp4 (252.88 MB)
1 -Introduction to Uniform Beams and Uniform Columns - Structural Steel Members.mp4 (165.71 MB)
2 -Understanding Second Moment of Area & Sectional Modulus.mp4 (148.53 MB)
3 -Rectangular Hollow Sections, Square Hollow & Circular Hollow Sections.mp4 (207.56 MB)
4 -Capacity Reduction Factors for Bending, Shear and Compression as per AS4100.mp4 (126.63 MB)
5 -Introduction to Steel Buildings in Australia - Steel Structural System Followed.mp4 (755.8 MB)
6 -PEMB Steel Buildings - Pre-Engineered Metal Building systems and components.mp4 (557.45 MB)
7 -Different Structural Steel systems and their behavior.mp4 (254.32 MB)
1 -Understanding Different types of Members in Steel Structures.mp4 (273.52 MB)
10 -Detailed Calculations in ETABS for Laterally Unsupported Steel beams.mp4 (231.62 MB)
11 -Design of Cantilever Steel beams with Detailed Calculations.mp4 (257.58 MB)
12 -Design of Beam-Columns as per AS41002020.mp4 (229.9 MB)
2 -Design of Tension Members as per AS4100.mp4 (197.07 MB)
3 -Design of Compression members as per AS41002020.mp4 (330.58 MB)
4 -Design Calculations in ETABS for Compression members with Hand Calculation.mp4 (168.27 MB)
5 -Design of Laterally Supported Structural Steel Beams.mp4 (161.89 MB)
6 -Design of Laterally Unsupported Structural Steel beams.mp4 (165.72 MB)
7 -Values of Kt, Kl and Kr for Structural Steel beams.mp4 (111.05 MB)
8 -Bending capacity of Laterally Unsupported Steel beams.mp4 (224.64 MB)
9 -Calculation of Shear Capacity of Structural Steel beams.mp4 (238.86 MB)
1 -Types of Structural Steel Bolts - Different Grades and Strength Parameters.mp4 (71.16 MB)
2 -Snug Tight, Bearing Type and Friction Type Bolts as per AS41002020.mp4 (170.45 MB)
3 -Tension, Shear and Bearing Capacity of Steel Bolts.mp4 (161.97 MB)
4 -Thumbrules to calculate Capacity of Structure Steel Bolts.mp4 (38.1 MB)
5 -Calculation of Capacity of Weld for different grades and thickness.mp4 (38.56 MB)
6 -Difference in GP- SP - General purpose and Structural purpose Welding.mp4 (33.71 MB)
7 -Design of Structural Steel Pin as per AS4100.mp4 (143.86 MB)
1 -Mechanical and Chemical Anchors Meaning and Detailed Explanation.mp4 (167.14 MB)
2 -Types of Failure in Mechanical and Chemical Anchors.mp4 (126.54 MB)
3 -Detailed discussion on Mechanical and Chemical Anchors.mp4 (238.45 MB)
4 -Detailed Design Calculations of Anchors as per AS52162021.mp4 (192 MB)
1 -Introduction to Type of Loads for ASNZ and Section-1 of AS1170.mp4 (86.58 MB)
2 -Importance level of Buildings and Structures with Probability of Exceedance-AUST.mp4 (206.72 MB)
3 -Importance level of Buildings and Structures with Probability of Exceedance-NZS.mp4 (101.03 MB)
4 -Stability and Strength Load Combinations including Long Term and Earthquake.mp4 (201.53 MB)
5 -Serviceability Limit State and Combination of Actions including Criteria.mp4 (359.97 MB)
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