CSI SAFE 22.3.0 Win x64 English
Free Download CSI SAFE 22.3.0 | 792.7 mb
Computers and Structures, Inc. (CSI)is pleased to announce the availability ofSAFE 22.2(3).0. This update adds Indian IS 11384:2022 and Chinese GB50017 composite beam design. When working with spring properties, it is now possible to use gap, hook, and multi-linear elastic links, as well as directly specify nonlinearity in the spring definitions. The punching shear report has been enhanced to include detailed information including equations and code references
Owner:Computers and Structures, Inc. (CSI)
Product Name:SAFE
Version:22.3.0.0
Supported Architectures:x64
Website Home Page :www.csiamerica.com
Languages Supported:english
System Requirements:Windows *
Size:792.7 mb.
SAFE 22.3.0 Enhancements - Date: 17-Oct-2024
Below lists changes made to SAFE since v22.2.0, released 01-October-2024.
* 10908 An enhancement to composite beam design per IS 11384:2022 was implemented. The plastic design capacity of composite beams is now computed with the equations listed in IS 11384 Table 17 for beams that support a solid slab, and with equivalent equations for beams that support a ribbed deck. The plastic design capacity was previously computed using slightly different assumptions regarding the stress distribution in the area of concrete in compression. Differences of up to 3% in resulting plastic capacity have been observed.
* 10910 An enhancement to composite beam design per Eurocode 4-2004 and IS11384 : 2022 was implemented. Users can now specify in the composite beam design preferences whether shear studs are to be welded through the deck, or threaded through holes in the deck. This choice affects the computation of the stud strength for shear studs in filled deck ribs with ribs transverse to the beam being designed. Previous versions of ETABS assumed shear studs were always to be welded through the deck.
* 10909 An incident affecting composite beam design per IS 11384:2022 was resolved. The minimum percentage of composite action to be applied to beams was computed per Eurocode 4-2004 instead of IS 11384:2022 and accordingly underestimated for certain combinations of grade of steel and beam span, although it never went below 40%. When this occurred, the bending capacity and effective moment of inertia of the design were still sufficient to ensure its adequacy. Also the percentage of composite action of the designs was displayed in both the interactive design form and the output, with the user having the option to choose a higher percentage in the form.
* 10901 An incident was resolved where spurious load transfer warning messages were given when a negative load was applied to null lines. Results are unaffected. This issue only affects SAFE v22.2.0.
SAFEis a software tailored for the engineering of elevated floor and foundation slab systems. Slab modeling, analysis, and design procedures feature a suite of sophisticated tools and applications, couple with post-tensioning, punching-shear, and beam detailing, and integrate the influence of soils, ramps, columns, braces, walls (rectilinear or curvilinear), and other interfacial elements. Interoperability with SAP2000 and ETABS allows users to import models, loading, and displacement fields into SAFE for more advanced local assessment of slab systems within larger structures. A 3D-object-based model may originate in SAFE or import from SAP2000, ETABS, or CAD. Templates quickly initiate a model. Grid, snap, chamfer/fillet, trim/extend, circular- and spline-curve controls allow direct drawing of any slab shape. Replication tools streamline modeling for a series of unique slab systems, as was done with Studio Gang's Aqua in Chicago, Illinois (Reid, Robert L. Chicago Tower's 'Wavelike' Design Features Different Shapes For Every Floor. Civil Engineering Apr. 2007: 22). Up to four simultaneous display windows present the model. Interactive database editing presents definition tables in SAFE and Excel.
Safe Software | CSI Safe | Introduction to Safe Software | Safe software slab & foundation Analysis
This video explains safe software and its uses, design codes, and other basic details.
Founded in 1975,Computers and Structures, Inc. (CSI)is recognized globally as the pioneering leader in software tools for structural and earthquake engineering. Software from CSI is used by thousands of engineering firms in over 160 countries for the design of major projects, including the Taipei 101 Tower in Taiwan, One World Trade Center in New York, the 2008 Olympics Birds Nest Stadium in Beijing and the cable-stayed Centenario Bridge over the Panama Canal. CSI's software is backed by more than three decades of research and development, making it the trusted choice of sophisticated design professionals everywhere.
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