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It is dedicated to the building sector and aims to software interoperability (all editors, all applications). IFC (Industry Foundation Classes) is an open and neutral data format allowing the definition of related classes to all construction objects. IFC-Architecture interface for importing models from Revit or other IFC compliant programs. The integration of the IFC in the GSE program enables importation of models from a large number of architectural and structural software. Reports are printed according to any unit system. Metric, imperial, and mixed unit systems are allowed and can be modified at any time. Surfaces can be used for load transfer and self-weight calculation. Similar connected members can be merged togetherĮlements of the structure can be renumbered according to several criterionsĮlement attributes can be set graphically or by means of spreadsheets (sections, analysis parameters, rotation angles, etc.) Powerful edition and automatic generation tools Persistent groups of selected objects can be created and edited graphically or by means of spreadsheets
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Models can be edited either graphically or by means of spreadsheetsĮlements can be created in batch or one by oneĮlements of the models can be selected either graphically or according to a set of criterions Linear or circular lines of constructions for model creationsĪutomated commands for model creation such as move, rotate, extrude, copy, attach, subdivide and others The GSE software includes powerful and productive features to generate any type of models:
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Versatile modelling tools to create any type of structures An object transparency option is available for various components such as current selection, solid members, plates, surfaces, spatial objects, panels. Functionalities of the GSE program allow to generate automatically detail elements in an automatically generated mesh perimeter. Models can be shown as lines, wire frames, or can be rendered as 3D solids. The unmatched graphical user interface of the GSE software allows to create, analyze and design large and complex models quickly and easily. Manipulate models graphically with extreme flexibility. Users can model structures using an intuitive graphical user interface powered by DirectX 11 and OpenGL 2.0 for increased speed and capabilities and generate executive and customizable formatted reports in Microsoft Word and Excel worksheets. Users can focus on the most critical regions of the model. Animating the envelopes helps minimizing the amount of information on the screen. This will provide users a better understanding of the structure behavior during the dynamic event, such as finding the critical time of the dynamic loading. The animation function displays every saved time-step to provide an accurate representation of the displacements, velocities, accelerations and internal forces acting on the structure. It also provides a very accurate interpretation of the participating mass of each mode in a seismic spectral analysis.
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It is easier to determine if the buckling mode is a local or global phenomenon. With large models, the animation is helpful to discern and understand the mode shapes. The frequency and buckling analysis provide multiple mode shapes describing multiple behaviors of the structure. Users are able to animate various static linear and P-Delta analysis results such as: The GSE software allows users to animate results from different types of analysis such as: Time-history results can be provided for selected parts of the models User defined incidence angle of seismic loads and vertical componentsĬustomized analysis and output time steps Graphical display of response spectrums and accelerograms Maximal response using CQC and SRSS methods Seismic response spectrum, seismic time-history and dynamic time-history analysisĬustomized response spectrums and accelerograms Possibility to add non-structural components using spatial objectsĪutomated static equivalent method of the building codes (NBCC and IBC) Non-linear analysis using load control and displacement control strategy for better convergence Linear and exact non-linear cable elements (catenary cables) Torsion including restrained warping of open sections The GSE software has comprehensive structural analysis methods such as FEA Finite Elements Analysis, Static Analysis, Linear and Nonlinear Analysis, P-Delta Analysis, Natural Frequency Analysis, Static Equivalent Seismic Analysis, Dynamic Time-History Analysis, Seismic Time-History Analysis, Modal Analysis, Spatial Objects and Spatial Loads*, Buckling Analysis, Response Spectrum Analysis, Advanced Section Stress Analysis, Torsion and Warping, Built Up Sections, Catenary Cables*, Non linear springs*, Diaphragm Analysis, Horizontal Notional Loads, Loads and Load Combinations.