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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 NoTension 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 2D and 3D 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 DropPanels Adding an Opening Assigning Surface Loads Assigning Line Loads Modifying the XStrip Definition Reanalyzing 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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