Piping design and analysis software
An advanced and comprehensive tool, specialized in pipeline stress analysis.
Category/PLANTS
AutoPIPE is an advanced and comprehensive tool specialized in piping stress analysis. Its intuitive modeling environment and advanced analysis capabilities increase productivity and improve quality control. Interoperability with leading plant design applications ensures efficient workflows between piping stress engineers, structural engineers, and CAD designers.
This solution accelerates the design of Class 1, 2, and 3 piping systems for nuclear facilities, with advanced analysis capabilities such as nonlinear hydraulic test analysis, integrated thermal gradient analysis through walls, embedded transient flow analysis, thermal buckling or stratification, and seismic response spectra envelope; for power, process, oil and gas, nuclear, underground, offshore, and pipeline systems.
This nuclear industry-approved solution ensures compliance with design standards, including 10CFR Part 50, 10CFR 21, and ASME NQA-1-2008/2009a.
Save time and reduce errors with integration with leading intelligent 3D CAD systems, such as OpenPlant, AutoPLANT, PlantSpace, Intergraph PDS and SmartPlant, AutoDesk Plant3D, and Aveva PDMS.
AutoPIPE saves you time by allowing you to quickly and easily create, modify, and review piping and structural models and their results. This single application saves even more time with static and dynamic analyses, offering linear and nonlinear analysis capabilities for temperature, wind, wave, buoyancy, snow, seismic, and transient loads.
Add reliability and safety to your engineering projects with nonlinear analysis of load sequences and static loads. Run analyses to examine various loading scenarios, including thermal, seismic, wind, and dynamic load cases. Instantly visualize stresses, deflections, forces, and moments.
Increase the accuracy of your plant model by determining the displacement of pipes subjected to stress due to temperature changes, seismic events, or extreme loading situations. Analyze every load case applied to pipes and structures. Finally, evaluate and resolve conflicts using Navigator or OpenPlant Modeler.
Ensure your projects comply with more than 30 international design standards in the energy, offshore, chemical, and oil and gas industries. Incorporate guidelines and design limits from British, European, German, Japanese, Russian, ASME, API, NEMA, ANSI, ASCE, AISC, UBC, ISO, and WRC standards.
Design, model, and analyze 3D piping systems according to international piping specifications based on parametric component catalogs. Integrate the 3D piping model with stress analysis tools to increase design quality and engineering productivity. Improve the integrity and overall quality of the models themselves.
Reuse design data by creating a structural model in STAAD.Pro and importing it into AutoPIPE for more realistic, fully integrated bidirectional piping and structure analysis. You can also import the final model, complete with piping support loads, into Bentley’s STAAD model.
Cloud sharing
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Vessel Analysis
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Structural analysis
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Modellazione impianti 3D
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