- Beams
- Trusses
- Frames
- Bracing
- Spheres
- Roof Trusses
- Grillages
- Surfaces
- Curved Surfaces
- Solids
- Concrete Structures
- Steel Structures
- Masonry Structures
- Timber Structures
- Mechanical Engineering
- Process Manufacturing Plants
- Piping Systems
- Bridges
- Cranes and Craneways
- Towers and Masts
- Lift Shafts
- Power Plants
- Escalators
- Glass Structures
- Tensile Membrane Structures
- Cable and Tensile Structures
- Hybrid Structure Systems
- Laminate and CLT Structures
- Hydraulic Steel Engineering
- Buildings
- Temporary Structures
- Aluminum and Lightweight Structures
- Scaffolding and Rack Structures
- Offshore Structures
- Silos and Storage Tanks
- Pressure Vessels
- Renewable Energy Structures
- Shipbuilding and Floating Bodies
- Conveyor Structures
- Drilling Structures and Drilling Masts
- Swimming Pools and Water Parks
- Container Structures
- Foundations
- Stairway Structures
- Facade Structures
- Shelters and Roofings
- Billboard and Traffic Sign Structures
- Connections
- Wind Simulation
- Others
- Geotechnics
- Welded Sections
- Thin-Walled Sections
- Massive Sections
- Aluminum Extruded
- Built-up Sections
- Other Sections
- Description
- Reviews (0)
The model presents a cutting-edge residential tower made of reinforced concrete, which displays both a robust structure and a contemporary expression. The digital display conveys precise, realistic details through contrasting lines and balanced proportions. A clear structure and innovative component design are displayed in vivid perspectives. The project was developed in collaboration with bauart Konstruktions GmbH & Co. KG. This model symbolizes a sophisticated approach to modern residential construction concepts.
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Reinforced Concrete Residential High-Rise Building
Number of Nodes | 6335 |
Number of Lines | 8964 |
Number of Members | 64 |
Number of Surfaces | 1267 |
Number of Load Cases | 22 |
Number of Load Combinations | 3 |
Number of Result Combinations | 3 |
Total Weight | 38149.150 t |
Dimensions (Metric) | 80.170 x 48.848 x 55.528 m |
Dimensions (Imperial) | 263.02 x 160.26 x 182.18 feet |
Program Version | 5.25.01 |

The new generation of 3D FEA software is used for the structural analysis of members, surfaces, and solids.

The Timber Design add-on performs the ultimate, serviceability, and fire resistance limit state design checks of timber members according to various standards.

The Structure Stability add-on performs stability analysis of structures. It determines critical load factors and the corresponding stability modes.

The modern 3D structural analysis and design program is suitable for the structural and dynamic analysis of beam structures as well as the design of concrete, steel, timber, and other materials.

The Timber Design add-on performs the ultimate, serviceability, and fire resistance limit state design checks of timber members according to various standards.

Timber design of single-span and wide-span glulam beams according to Eurocode 5 or DIN 1052

Timber design of simple, continuous, and Gerber beams with or without cantilever according to Eurocode 5 or DIN 1052

Timber design of rectangular and circular columns according to Eurocode 5 or DIN 1052

Timber design of coupled purlins and continuous beams according to Eurocode 5 or DIN 1052

Timber design of three-hinged frames with finger joint connections according to Eurocode 5 or DIN 1052

Timber design of stiffening truss bracing according to Eurocode 5 or DIN 1052

Timber design of flat, monopitch, and duopitch roofs according to Eurocode 5

The Multilayer Surfaces add-on allows you to define multilayer surface structures. The calculation can be carried out with or without the shear coupling.

Structural engineering software for a finite element analysis (FEA) of planar and spatial structural systems consisting of plates, walls, shells, members (beams), solids, and contact elements

Deflection analysis and stress design of laminate and sandwich surfaces

Timber design according to Eurocode 5, SIA 265, and/or DIN 1052

Design of timber members according to the American standard ANSI/AWC NDS

Design of timber members according to the Canadian standard CSA O86-14

Design of timber members according to the Brazilian standard NBR 7190:1997

Design of timber members according to the South African standards SANS 10163-1:2003 and SANS 10163-2:2001

Timber design according to Eurocode 5, SIA 265 and/or DIN 1052

Design of timber members according to the American standard ANSI/AWC NDS

Design of timber members according to the Canadian standard CSA O86-14

Design of timber members according to the Brazilian standard NBR 7190:1997

Design of timber members according to the South African standards SANS 10163-1:2003 and SANS 10163-2:2001

The Nonlinear Material Behavior add-on allows you to consider material nonlinearities in RFEM for example, isotropic plastic, orthotropic plastic, isotropic damage).

The Torsional Warping (7 DOF) add-on allows you to consider cross-section warping as an additional degree of freedom.

The two-part Optimization & Costs / CO2 Emission Estimation add-on finds suitable parameters for parameterized models and blocks via the artificial intelligence (AI) technique of particle swarm optimization (PSO) for compliance with common optimization criteria. Furthermore, this add-on estimates the model costs or CO2 emissions by specifying unit costs or emissions per material definition for the structural model.

The Stress-Strain Analysis add-on performs general stress analysis by calculating the existing stresses and comparing them with the limit stresses.

The Concrete Design add-on allows for various design checks according to international standards. You can design members, surfaces, and columns, as well as perform punching and deformation analyses.

The Steel Design add-on performs the ultimate and serviceability limit state design checks of steel members according to various standards.

The Masonry Design add-on for RFEM allows you to design masonry using the finite element method. It was developed as part of the research project titled DDMaS – Digitizing the Design of Masonry Structures. The material model represents the nonlinear behavior of the brick-mortar combination in the form of macro-modeling.

The Aluminum Design add-on performs the ultimate and serviceability limit state design checks of aluminum members according to various standards.
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The Steel Joints add-on for RFEM allows you to analyze steel connections using an FE model. The FE model is generated automatically in the background and can be controlled via the simple and familiar input of components.

The Structure Stability add-on performs the stability analysis of structures. It determines critical load factors and the corresponding stability modes.

The Torsional Warping (7 DOF) add-on allows for considering cross-section warping as an additional degree of freedom when calculating members.

The two-part Optimization & Costs / CO2 Emission Estimation add-on finds suitable parameters for parameterized models and blocks via the artificial intelligence (AI) technique of particle swarm optimization (PSO) for compliance with common optimization criteria. Furthermore, this add-on estimates the model costs or CO2 emissions by specifying unit costs or emissions per material definition for the structural model.

The Stress-Strain Analysis add-on performs a general stress analysis by calculating the existing stresses and comparing them to the limit stresses.

Concrete Design add-on allows for various design checks of members and columns according to international standards.

The Steel Design add-on performs the ultimate and serviceability limit state design checks of steel members according to various standards.

The Aluminum Design add-on performs the ultimate and serviceability limit state design checks of aluminum members according to various standards.