Floatfarm
- Company typePrivate
- Founded2024
- HeadquartersBerlin, Germany
- Headcount11–50
- GTM typeB2B
- OfferingSoftware
What Floatfarm does
Floatfarm is a Horizon Europe-funded research consortium (January 2024 – December 2027) advancing Floating Offshore Wind (FOW) turbine technology toward industrial maturity, with explicit attention to reducing environmental impacts on marine ecosystems and enhancing public acceptability of FOW farms. The project is coordinated by Euronovia (Paris, France) and unites 14–17 European partners across academia and industry, with R&D hubs in Berlin (Technische Universität Berlin), Florence (Università degli Studi di Firenze), Nantes (Ecole Centrale Nantes), Lyngby (DTU), Ghent (Ghent University), and Naples (CNR-INM, Seapower).
Its core technical outputs are open-access reference models and software tools: the MED15-300-RWT 15 MW reference floating turbine for moderate-wind sea basins; QBtoWEIS and WEIS-HAWC2 interfaces coupling QBlade and HAWC2 to NREL's WEIS optimization framework; HFJOINT for high-fidelity welded-joint stress analysis; RAINDROP for real-time underwater acoustic mapping; and a dynamic cable optimization tool built on OrcaFlex-Python. Quantified performance targets include up to 20% increase in annual energy production, up to 66% reduction in mooring system footprint, up to 26% reduction in mooring installation costs, and up to 80% weight reduction in the Rotor-Nacelle Assembly.
The business model is grant-funded, non-commercial dissemination: Floatfarm receives an undisclosed multi-million-euro Horizon Europe grant, allocates funds across consortium partners, and distributes all scientific publications, reference models, datasets, and software tools freely through Zenodo, GitLab, the project website, and biannual newsletters. Go-to-market is community-led and event-driven, anchored by WindEurope, FOWT, TORQUE, and WESC conferences and coordinated with sister projects INF4INiTY, MADE4WIND, and TAILWIND. Customers are the wind-energy research community, floating offshore wind industry developers, and EU/national policymakers.
Floatfarm firmographics
Firmographics- Name
- Floatfarm
- Legal name
- FLOATFARM (coordinated by Euronovia)
- Website
- https://floatfarm-project.eu
- Company type
- Private
- Founded year
- 2024
- Operating status
- Operating
- Headcount range
- 11–50 employees
- Ownership category
- akta.pro rank
Floatfarm industry classification
Industry- Product category
- Renewable Energy Research
- NAICS
- Wind Electric Power Generation (221115), Turbine and Turbine Generator Set Units Manufacturing (333611), Geophysical Surveying and Mapping Services (541360)
- SIC
- Engines & Turbines (3510)
- akta.pro primary industry
- Offshore Wind Power Generation (Floating) (EUACAFAC)
- akta.pro secondary industries
- Advanced Wind Technology R&D (Floating Offshore, Airborne Wind, New Rotor/Blade Concepts) (EUAMAOAB), Offshore Wind Substructures & Marine Engineering (Monopiles, Jackets, Floating) (EUAMACAE), Wind Turbine OEMs & System Integration (Nacelle/Generator/Controls) (EUAMACAC)
Keywords
Where Floatfarm is headquartered
LocationHeadquarters
- HQ city
- Berlin
- HQ country
- Germany
- HQ region
- Europe
Offices7 records
Markets served
Floatfarm business model
Business model- GTM type
- B2B
- Offering type
- Software
- Cost components
- Personnel, Technology or R&D, Operations, Marketing or Sales
Revenue model
- EU Horizon Europe Research Grant: FLOATFARM is a Horizon Europe funded research project. The project receives EU funding to advance Floating Offshore Wind technology. The project runs from January 2024 to December 2027 with a multi-million euro budget distributed among consortium partners.
Go-to-market motion2 records
Distribution channels3 records
Marketing channels8 records
Floatfarm product offering
Product offeringCore offering
Floatfarm develops open-source software tools, reference turbine models, and experimental datasets that advance Floating Offshore Wind (FOW) technology. Core offerings include the MED15-300-RWT 15 MW reference turbine, the QBtoWEIS and WEIS-HAWC2 optimization framework interfaces, the HFJOINT structural analysis tool, and the RAINDROP underwater acoustic modeling toolbox. All outputs are released as open-access deliverables for the wind energy research community and industry.
Product overview
Floatfarm is a Horizon Europe research project (not a commercial company) developing a suite of open-source software tools, reference models, and datasets for the floating offshore wind industry. The core offerings include: the MED15-300-RWT 15 MW reference floating wind turbine (open-access model for moderate-wind sea basins); QBtoWEIS and WEIS-HAWC2 interfaces connecting QBlade and HAWC2 simulation tools with NREL's WEIS optimization framework; HFJOINT for high-fidelity stress analysis of welded tubular joints; and RAINDROP for underwater acoustic mapping. These tools collectively enable multi-disciplinary design optimization, structural analysis, and environmental assessment for floating offshore wind turbine development.
Differentiator
Problem solved
Functional benefit
Products and services
- MED15-300-RWT (15 MW Reference Floating Wind Turbine) Open-access 15 MW reference floating offshore wind turbine model designed for moderate-wind sea basins such as the Mediterranean Sea. Features a semi-submersible floating platform with a 308-metre rotor diameter and aeroelastically tailored blades for floating offshore applications. Used by researchers and industry for benchmarking and design studies.
- QBtoWEIS (QBlade-WEIS Interface) Open-source interface coupling QBlade aero-hydro-servo-elastic simulation tool with NREL's WEIS optimization framework. Enables multi-disciplinary design optimization and control co-design for floating offshore wind turbines, with automated WindIO format conversion and batch simulation capabilities. Used by FOWT researchers and developers.
- WEIS-HAWC2 (HAWC2-WEIS Interface) Open-source interface coupling HAWC2 (Horizontal Axis Wind turbine simulation Code 2nd generation) with NREL's WEIS optimization framework. Provides a basis for optimization and design tasks for floating offshore wind turbines. Available from DTU GitLab.
- HFJOINT (High-Fidelity Tubular Joint Analysis Tool) High-fidelity numerical tool for stress concentration factor analysis of welded tubular joints in FOWT substructures. Uses 27-node completely quadratic hexahedron elements with automatic 3D mesh generation per AWS standards. Supports hot-spot stress calculation for fatigue life prediction. Integrates with QBlade for extracting interface loads from aero-hydro-elastic simulations.
- RAINDROP (Underwater Acoustic Modeling Toolbox)
Quantifiable outcome
- Up to 20% increase in annual energy production
- +5 more outcomes
Companies that use Floatfarm
Customer profileNamed customers1 record
Segments3 records
Ideal customer profiles3 records
Floatfarm technology and API
TechnologyTechnology focussed Yes
API detail
- Has API
- No
- API docs
- API detail
Core technology
AI maturity
App detail
Integration5 records
AI capability5 records
Feature8 records
Floatfarm partnerships and signals
Strategic signalPartnerships
17 partnerships are on record, tiered core.
- INF4INiTYcoreINF4INiTY is a sister project funded under the same Horizon Europe topic as FLOATFARM. Both projects collaborate on floating offshore wind technologies, sharing communication resources and participating jointly in key events. INF4INiTY focuses on nature-inclusive design for gravity anchors and artificial reef structures combined with floating wind turbine foundations.
- MADE4WINDcoreMADE4WIND is a sister project under the same Horizon Europe topic, focused on developing innovative components for a 15 MW floating wind turbine including new designs for blades, substructure, and drivetrain. FLOATFARM collaborates with MADE4WIND on joint events and knowledge sharing within the European floating wind ecosystem.
- TAILWINDcoreTAILWIND is a sister project under the same Horizon Europe topic, advancing mooring lines and anchoring systems for cost reduction and environmental benefits. FLOATFARM collaborates with TAILWIND through joint communication activities and shared participation in floating wind conferences and events.
- EuronoviacoreEuronovia serves as the project coordinator for FLOATFARM. Based in Paris, Euronovia provides strategic oversight, communication, dissemination, and exploitation leadership for the project. Founded and led by Virginie Robin, Euronovia specializes in supporting EU-funded research projects.
- Technische Universität BerlincoreTUB is the host institution of Project Coordinator Dr. Joseph Saverin and leads the numerical wind energy research group. TUB contributes expertise in floating offshore wind aerodynamics, hydrodynamics, numerical modelling, and hosts the QBlade software development.
- Università degli Studi di FirenzecoreUniFi leads WP1 on Tower, Generator, Blade, and Control innovations. Led by Prof. Alessandro Bianchini, the university contributes expertise in wind turbine aerodynamics and serves as President of the European Academy of Wind Energy (EAWE).
- Ecole Centrale NantescoreECN provides experimental facilities through its LHEEA laboratory with large ocean basins for testing floating wind turbine scale models. The facility supports WP2 and WP4 experimental activities including Software-in-the-Loop testing.
- DTU - Technical University of DenmarkcoreDTU Wind and Energy Systems leads WP4 on Farm Marine Connectivity. DTU contributes expertise in floating wind turbine inflow and wake modelling, turbine loads, control algorithm development, and hosts the HAWC2 simulation software and WEIS-HAWC2 framework.
- Ghent UniversitycoreUGent's Laboratory Soete contributes expertise in structural integrity, fracture and fatigue analysis of metals. The team developed HFJOINT, a high-fidelity numerical tool for stress concentration factor analysis of welded tubular joints in FOWT structures.
- SaipemcoreSaipem is an EPCI company specializing in offshore infrastructures. In FLOATFARM, Saipem focuses on WP2, designing the STAR-1 medium-scale floating platform prototype and mooring system to be installed in Naples Bay.
- France Energies MarinescoreFEM is an offshore wind energy research and innovation centre. They lead WP5 on Environmental and Sociological Impacts, focusing on acoustic modeling of floating wind turbines and their effects on marine ecosystems.
- CNR - National Research Council of ItalycoreCNR-INM contributes to experimental investigation of floating offshore wind technologies at MaRELab in Naples port. They support assessment of platform dynamics, mooring behaviour, and system performance under realistic marine conditions.
- Seapower scrlcoreSeapower is a non-profit research center participated by University of Naples Federico II. They are responsible for the Economic Assessment work package, developing floating wind turbine cost models integrated into the optimization framework.
- SowentocoreSowento specializes in control engineering for wind turbines. The company leads Task 1.3 on innovative control concepts for floating wind turbines and supports development of the QBlade software platform.
- blueOASIScoreblueOASIS is a Portuguese R&D startup specializing in offshore maritime structures, renewable energy systems, and underwater acoustics. They developed the RAINDROP toolbox for real-time underwater acoustic mapping and lead acoustic noise modeling for WP5.
- TU DelftcoreTU Delft's Delft Center for Systems and Control contributes to WP3 on Farm Flow Control, researching turbine repositioning and wave feedforward control strategies for floating wind farms.
- Hagnesia WindcoreHagnesia Wind develops direct-drive generator technology for floating wind turbines with high torque density and low conversion losses. They contribute a 15 MW generator design to FLOATFARM, reducing material use and environmental impact.
Scale indicators10 records
Recent moves6 records
Expansion highlights6 records
Floatfarm competitors and assessment
Company assessmentBroad incumbents
- Aker Solutions: Norwegian engineering company developing floating wind substructure concepts (e.g., Aker BP-inspired platforms). Comparable as a major offshore engineering firm with commercial floating wind programmes, sharing the platform and mooring substructure focus area.
- Saipem: Italian EPCI contractor for offshore infrastructure and FLOATFARM consortium partner (designing STAR-1 platform). Comparable as a floating wind EPCI contractor with overlapping technology scope (FOWT platforms, mooring systems) and a direct commercial pathway for FLOATFARM innovations.
- Equinor (Hywind): Energy major operating the Hywind floating wind farm (Scotland, Norway). Comparable as a major offshore wind operator pushing commercialisation of floating wind — a prime downstream adopter of FLOATFARM's LCOE-reducing innovations.
- NREL (National Renewable Energy Laboratory): US national laboratory that owns the WEIS framework FLOATFARM integrates with via QBtoWEIS and WEIS-HAWC2. Comparable as a publicly funded research institution conducting wind energy R&D at scale, including offshore wind, with overlapping simulation toolchains.
Direct peers
- MADE4WIND: Sister Horizon Europe project under the same floating offshore wind topic, focused on 15 MW turbine components (blades, substructure, drivetrain). Directly comparable as a parallel R&D consortium pursuing complementary innovations in floating wind, sharing the same funding and timeframe.
- INF4INiTY: Sister Horizon Europe project focused on nature-inclusive design for floating wind foundations (gravity anchors with artificial reef structures). Directly comparable as a peer consortium under the same call, collaborating on floating wind environmental and structural innovation.
- FLOATECH (Predecessor Project): Predecessor Horizon 2020 project that FLOATFARM explicitly builds on. Directly comparable as a prior floating offshore wind R&D consortium with similar scope (FOWT design, platform, mooring, control) and shared partner institutions.
- TAILWIND: Sister Horizon Europe project advancing mooring and anchoring systems for floating wind. Highly comparable as a coordinated consortium with overlapping partners (e.g., CNR), shared dissemination channels, and joint participation in floating wind events.
- Principle Power: Leading floating offshore wind technology company developing the semi-submersible WindFloat platform. Comparable as a commercial counterpart advancing floating foundations, with parallel push to industrialise the same substructure category FLOATFARM is optimising.
- BW Ideol: Floating offshore wind developer with the damping pool WindFloat-derived technology. Comparable as a commercial floating wind technology company working on LCOE reduction and platform innovation — a direct downstream target for FLOATFARM's innovations.
Market position
Strengths5 records
Weaknesses5 records
Competitive moat6 records
Key risks6 records
Key highlights6 records
Customer concentration
Floatfarm social profiles
Digital presenceFloatfarm compliance and trust
Trust signalCompliance1 record
Floatfarm financial estimates
Financial estimateRevenue estimate
Valuation estimate
Floatfarm leadership team
Management profileNumber of profiles
Profiles11 records
Floatfarm funding detail
Funding detailFunding overview
Funding rounds
Investors
Funding detail is available on the Subscription and Enterprise plan.Contact sales →
Floatfarm M&A and investment
M&A and investmentM&A
Investments
M&A and investment is available on the Subscription and Enterprise plan.Contact sales →
Frequently asked questions about Floatfarm
What does Floatfarm do?
Floatfarm develops open-source software tools, reference turbine models, and experimental datasets that advance Floating Offshore Wind (FOW) technology. Core offerings include the MED15-300-RWT 15 MW reference turbine, the QBtoWEIS and WEIS-HAWC2 optimization framework interfaces, the HFJOINT structural analysis tool, and the RAINDROP underwater acoustic modeling toolbox. All outputs are released as open-access deliverables for the wind energy research community and industry.
Is Floatfarm a public or private company?
Floatfarm is a private company. It is classified as unknown and is currently operating.
When was Floatfarm founded?
Floatfarm was founded in 2024. It employs 11 to 50 people.
Where is Floatfarm based?
Floatfarm is headquartered in Berlin, Germany, in the Europe region.
How does Floatfarm make money?
One revenue line is on record: EU Horizon Europe Research Grant.
Who are Floatfarm's main competitors?
Broad incumbents on record are Aker Solutions, Saipem, Equinor (Hywind) and NREL (National Renewable Energy Laboratory). Direct peers are MADE4WIND, INF4INiTY, FLOATECH (Predecessor Project), TAILWIND, Principle Power and BW Ideol.
Does Floatfarm have an API?
No public API is recorded for Floatfarm.
What industry is Floatfarm in?
Floatfarm's product category is Renewable Energy Research. Its primary akta.pro industry code is EUACAFAC, Offshore Wind Power Generation (Floating), with a secondary code of EUAMAOAB, Advanced Wind Technology R&D (Floating Offshore, Airborne Wind, New Rotor/Blade Concepts). Its NAICS code is 221115 and its SIC code is 3510.