List of ANSYS Aqwa Customers
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Since 2010, our global team of researchers has been studying ANSYS Aqwa customers around the world, aggregating massive amounts of data points that form the basis of our forecast assumptions and perhaps the rise and fall of certain vendors and their products on a quarterly basis.
Each quarter our research team identifies companies that have purchased ANSYS Aqwa for Finite Element Analysis from public (Press Releases, Customer References, Testimonials, Case Studies and Success Stories) and proprietary sources, including the customer size, industry, location, implementation status, partner involvement, LOB Key Stakeholders and related IT decision-makers contact details.
Companies using ANSYS Aqwa for Finite Element Analysis include: SBM Offshore, a Netherlands based Oil, Gas and Chemicals organisation with 6301 employees and revenues of $4.78 billion, AMOG Consulting, a Australia based Oil, Gas and Chemicals organisation with 90 employees and revenues of $11.0 million, SeaTwirl, a Sweden based Manufacturing organisation with 33 employees and revenues of $2.0 million and many others.
Contact us if you need a completed and verified list of companies using ANSYS Aqwa, including the breakdown by industry (21 Verticals), Geography (Region, Country, State, City), Company Size (Revenue, Employees, Asset) and related IT Decision Makers, Key Stakeholders, business and technology executives responsible for the PLM and Engineering software purchases.
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| Logo | Customer | Industry | Empl. | Revenue | Country | Vendor | Application | Category | When | SI | Insight | Insight Source |
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AMOG Consulting | Oil, Gas and Chemicals | 90 | $11M | Australia | Ansys Inc. | ANSYS Aqwa | Finite Element Analysis | 2016 | n/a | In 2016 AMOG Consulting integrated ANSYS Aqwa into its simulation-driven design process, using the ANSYS Aqwa application to support Hydrodynamics Simulation & Diffraction Analysis across its engineering workflows. The deployment placed ANSYS Aqwa at the center of offshore hydrodynamics and diffraction analysis activities, aligning the software with design iteration control for engineering and hydrodynamics teams. Implementation focused on hydrodynamics simulation and diffraction analysis capabilities, including frequency and time domain response analysis, wave load and motion estimation, and mooring and seakeeping scenario modeling consistent with Hydrodynamics Simulation & Diffraction Analysis practices. AMOG implemented pre-processing and model preparation workflows within ANSYS Aqwa to reduce manual geometry and mesh tasks, and to accelerate scenario setup during iterative design reviews. ANSYS Aqwa was integrated into AMOG Consulting engineering toolchains and project workflows rather than as a standalone silo, enabling engineers to run hydrodynamic and diffraction studies directly within established simulation cycles. The rollout targeted engineering and design functions, embedding ANSYS Aqwa results into decision loops for structural and marine system design without introducing named external system integrations. Governance changes emphasized standardized simulation inputs and repeatable setup procedures, removing time-costly model preparation and ad hoc data exchange protocols. These process changes eliminated previous time-costly model preparation and data exchange protocols and established more predictable simulation-driven design cadences using ANSYS Aqwa for Hydrodynamics Simulation & Diffraction Analysis. | |
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SBM Offshore | Oil, Gas and Chemicals | 6301 | $4.8B | Netherlands | Ansys Inc. | ANSYS Aqwa | Finite Element Analysis | 2011 | n/a | In 2011, SBM Offshore implemented ANSYS Aqwa for Hydrodynamics Simulation & Diffraction Analysis to support offshore hydrodynamic engineering and platform motion prediction. The deployment of ANSYS Aqwa was positioned within engineering simulation workflows to deliver frequency-domain and diffraction analyses aligned with offshore structural and marine systems design. ANSYS Aqwa was configured to perform standard hydrodynamic capabilities common to the category, including diffraction and radiation solvers, computation of added mass and damping coefficients, and Response Amplitude Operator calculations for hull and floating structure behavior. The implementation emphasized solver configuration and model setup consistent with hydrodynamics simulation practices, enabling wave loading characterization and multi-body interaction assessments. As part of governance and verification, SBM Offshore validated WAMIT v7.0 by comparing results with WAMIT v6.3 and Ansys AQWA v14.5, establishing a benchmarking workflow that cross-referenced spectral-domain outputs across solvers. The validation activity reinforced numerical agreement checks within the engineering simulation toolchain, with ANSYS Aqwa serving as a reference platform for diffraction and radiation analysis within the Hydrodynamics Simulation & Diffraction Analysis category. | |
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SeaTwirl | Manufacturing | 33 | $2M | Sweden | Ansys Inc. | ANSYS Aqwa | Finite Element Analysis | 2017 | n/a | In 2017 SeaTwirl implemented ANSYS Aqwa to support Hydrodynamics Simulation & Diffraction Analysis. The ANSYS Aqwa implementation was scoped for the company engineering and R&D teams in Sweden, aligning simulation workstreams with ongoing product development and design validation activities. ANSYS Aqwa was configured to run both frequency domain and time domain hydrodynamic simulations, including diffraction analysis and wave load calculations, reflecting core capabilities of the Hydrodynamics Simulation & Diffraction Analysis category. The implementation was complemented by use of Ansys Fluent for computational fluid dynamics coupling and Ansys Mechanical for structural response and modal analysis, enabling coupled hydro structural workflows across fluid and structural domains. The deployment used ANSYS Aqwa from Ansys Inc. on engineering workstations and shared on premise compute resources under centralized license management. Simulation models, case setups, and result archives were organized into standardized project directories and template input decks to support reproducible runs and iterative design studies. Governance emphasized controlled simulation file versioning, formal review checkpoints between engineering and test groups, and documented validation steps for hydrodynamic models and diffraction scenarios. Rollout was focused on embedding consistent simulation practices into product engineering, with structured handoffs between analysts and designers to ensure traceability of assumptions and boundary conditions. |
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