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Safe 5 Tutorial


 









Safe 5 Tutorial

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Index Safe 5 Tutorial


Integrated Analysis and Design of Slabs
Table of Contents
CHAPTER I Welcome to SAFE 1
CHAPTER II Getting Started 3
Overview
What Your SAFE Package Includes
About This Manual
System Requirements
Installation
Single User Installation
Network Server Installation
Network Workstation Installation
Installing from CD
Installing from Disks
Installing from a Network Server
Removing SAFE from Your System
Using the Hardware Key Device
On a Local Workstation
On a Local Area Network
Installing the Sentinel Driver
Technical Support
Help Us to Help You
Phone and Fax Support
Online Support
Upgrading from SAFE V5
CHAPTER III SAFE Concepts and Techniques
The SAFE Objects
The SAFE Plane and Gridline System
The SAFE Templates
The SAFE Layers
The SAFE Finite Element Mesh
Slab Element
Beam Element
Support Elements
Slab Element Releases
Loading
SAFE Reinforced Concrete Design
Design Load Combinations
Design of Slab
Defining Slab Strips
Integrated Strip Moments and Shears
Flexural Design of Slab Strips
Checking Punching Shear Capacity
Design of Beam Elements
Analysis for No-Tension Surface Supports
Analysis for Cracked Deflections
SAFE Units
CHAPTER IV The Graphical User Interface
Overview
The Structural Model
Coordinate System
The SAFE Screen
Main Window
Menu Bar
Toolbar
Display Windows
Status Line
Viewing Options
2-D and 3-D Views
Aerial View
View Layers of the Slab
Pan, Zoom, and Limits
Object View Options
Other Options
Gridlines
Mesh
Basic Operations
File Operations
Draw
Select
Edit
Assign
Define
Analyze
Display
Graphical Displays
Tabular Displays
Design
Undo and Redo
Locking and Unlocking
Refreshing the Display Window
Preferences
CHAPTER V Quick Tutorial
Overview
Description of the Model
Starting the Tutorial
Setting Up the Geometry
Checking Slab Properties
Checking Column Support Properties
Checking Load Cases
Checking Design Strips
Analyzing the Model
Displaying the Deformed Shape
Displaying Slab Forces
Selecting the Design Code
Checking Load Combinations
Starting Design
Displaying Slab Reinforcement
Displaying Punching Shear Ratios
Saving the Model
Printing Graphics
Displaying Output Tables
Displaying Design Tables
Printing/Saving Output Tables
Printing/Saving Design Tables
Modifying the Structure
Unlocking the Model
Adding Slab Geometry
Adjusting the Coordinate
Assigning Slab Property
Defining Beam Properties
Assigning Beam Properties
Deleting Drop-Panels
Adding an Opening
Assigning Surface Loads
Assigning Line Loads
Modifying the X-Strip Definition
Re-analyzing the Model
Starting Design
Displaying Beam Forces
Displaying Beam Reinforcement
Saving the Model
Concluding Remarks
CHAPTER VI Program Output
Overview
Displacements
Reactions
Integrated Strip Moments and Shears
Beam Moments and Shears
Slab Moments and Shears
Slab Reinforcing
Beam Reinforcing
Punching Shear Results
Design Load Combinations
Strength Reduction Factors
Beam Design
Design Flexural Reinforcement
Determine Factored Moments
Determine Required Flexural Reinforcement
Design Beam Shear Reinforcement
Determine Shear Force
Determine Concrete Shear Capacity
Determine Required Shear Reinforcement
Slab Design
Design for Flexure
Determine Factored Moments for the Strip
Design Flexural reinforcement for the Strip
Check for Punching Shear
Critical Section for Punching Shear
Transfer of Unbalanced Moment
Determination of Concrete Capacity
Determination of Capacity Ratio
Design Load Combinations
Strength Reduction Factors
Beam Design
Design Beam Flexural Reinforcement
Determine Factored Moments
Determine Required Flexural Reinforcement
Design Beam Shear Reinforcement
Determine Shear Force and Moment
Determine Concrete Shear Capacity
Determine Required Shear Reinforcement
Slab Design
Design for Flexure
Determine Factored Moments for the Strip
Design Flexural reinforcement for the Strip
Check for Punching Shear
Critical Section for Punching Shear
Transfer of Unbalanced Moment
Determination of Concrete Capacity
Determination of Capacity Ratio
Design Load Combinations
Design Strength
Beam Design
Design Beam Flexural Reinforcement
Determine Factored Moments
Determine Required Flexural Reinforcement
Design Beam Shear Reinforcement
Slab Design
Design for Flexure
Determine Factored Moments for the Strip
Design Flexural reinforcement for the Strip
Check for Punching Shear
Critical Section for Punching Shear
Determination of Concrete Capacity
Determination of Capacity Ratio
APPENDIX D Design for Eurocode 2
Design Load Combinations
Design Strength
Beam Design
Design Beam Flexural Reinforcement
Determine Factored Moments
Determine Required Flexural Reinforcement
Design Beam Shear Reinforcement
Slab Design
Design for Flexure
Determine Factored Moments for the Strip
Design Flexural reinforcement for the Strip
Check for Punching Shear
Critical Section for Punching Shear
Determination of Concrete Capacity
Determination of Capacity Ratio
Design Load Combinations
Strength Reduction Factors
Beam Design
Design Beam Flexural Reinforcement
Determine Factored Moments
Determine Required Flexural Reinforcement
Design Beam Shear Reinforcement
Determine Shear Force and Moment
Determine Concrete Shear Capacity
Determine Required Shear Reinforcement
Slab Design
Design for Flexure
Determine Factored Moments for the Strip
Design Flexural reinforcement for the Strip
Check for Punching Shear
Critical Section for Punching Shear
Transfer of Unbalanced Moment
Determination of Capacity Ratio
Determination of Capacity Ratio
Design Load Combinations
Design Strength
Beam Design
Design Beam Flexural Reinforcement
Determine Factored Moments
Determine Required Flexural Reinforcement
Design Beam Shear Reinforcement
Slab Design
Design for Flexure
Determine Factored Moments for the Strip
Design Flexural reinforcement for the Strip
Check for Punching Shear
Critical Section for Punching Shear
Transfer of Unbalanced Moment
Determination of Concrete Capacity
Determination of Capacity Ratio
References
Index







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