Our software packages help structural engineers to maximize design efficiency, minimize costs and accelerate success
Methods & support for every project phase
From early studies and R&D to detailed design, access comprehensive solutions for every phase of your project.
A variety of methods is available, ensuring you get the right level of accuracy with minimum analysis cost required at each design stage.
Up to date with the latest offshore wind design standards and RP's ensuring smoother certification.
Maximize design efficiency
Reduce your design timelines by up to 20 times, whilst aligning with industry practices and standards
Minimize costly in-house development and maintenance by using DNV's well-interfaced, accurate and verified solvers
Increase efficiency by accessing virtually unlimited computational power with Sesam's cloud compute services
Integrate and automate
Maximize your operations with our advanced OneWorkflow Python package, simplifying your workflow scripting
Seamlessly integrate with your existing in-house tools and automate repetitive tasks effortlessly
Access advanced tools for mooring and cable design, concrete analysis, turbine design, and corrosion analysis
Methodologies
Choose between four different methods to design and analyse floating offshore wind substructures based on your and the industry's needs.
Time Domain Methods
Time Domain Direct Load Generation
For engineers performing detailed design, this is the most accurate method available with an associated higher computational cost. It may be used to investigate which effects of non-linear hydrodynamics are relevant for the model and serve as a baseline to determine if the faster Load and Response Reconstruction methods can be used.
Time Domain Load Reconstruction
A more cost-effective method than the Time Domain Direct Load Generation method, which is also applicable for detailed design stages and down to (pre)FEED stages. With its associated capabilities and assumptions, it can be used to investigate the effect of dynamics on the structural response and both fatigue and ultimate limit state results.
Time Domain Response Reconstruction
The most computationally efficient time domain method available in the market. This method can be used from (pre)FEED and all the way to detailed design for structures that are not dynamically sensitive.
Frequency Domain Uncoupled
The quickest method available, it offers fast and efficient design iterations suitable for initial sizing, early design and prototyping stages.
One of the reasons we like using Bladed and Sesam together is because we can bring our initial foundation design closer to our final and more refined design, earlier on, meaning there's less risk.
- a leading engineering company
Resources
We'll help you hit the ground running and continue to support you to deliver:
Frequently asked questions:
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AnswerYes, you can trial a reduced version of Sesam to learn how to model a structure, add loads, run structural analysis, perform code checking and re-design. All usage shall be of non-commercial nature. Contact us to request a free trial. |
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AnswerYes, academic licenses are offered to universities on highly favourable terms. Academic licences are to be used for educational and non-commercial research projects only.
DNV offers department or university licences only (not on an individual student's). Please liaise with your professor and contact us to discuss.
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AnswerWe've created three software packages based on different capabilities needed to design fixed offshore wind foundations. Prices for the packages and modules included can be found in the product brochure. For additional capabilities / modules, please contact us. |
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AnswerWe've created three software packages, you can find a list of their modules and capabilities in the product brochure. For any additional capabilities / modules, please contact us. |
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AnswerPlease view our package product brochure for pricing and licencing information and then contact us to purchase. |
Sima
Marine operations and mooring analysis software