List of Autodesk InfoDrainage Customers
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United States
Since 2010, our global team of researchers has been studying Autodesk InfoDrainage 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 Autodesk InfoDrainage for 3D Modeling 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 Autodesk InfoDrainage for 3D Modeling include: Kier Group, a United Kingdom based Construction and Real Estate organisation with 11083 employees and revenues of $3.91 billion, The University of Oklahoma, a United States based Education organisation with 10000 employees and revenues of $886.0 million, Johnson, Mirmiran & Thompson, a United States based Construction and Real Estate organisation with 1600 employees and revenues of $300.0 million, Verlagsgruppe Handelsblatt, a Germany based Media organisation with 700 employees and revenues of $220.0 million, Ridge and Partners, a United Kingdom based Construction and Real Estate organisation with 1174 employees and revenues of $182.0 million and many others.
Contact us if you need a completed and verified list of companies using Autodesk InfoDrainage, 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 software purchases.
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| Logo | Customer | Industry | Empl. | Revenue | Country | Vendor | Application | Category | When | SI | Insight |
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Johnson, Mirmiran & Thompson | Construction and Real Estate | 1600 | $300M | United States | Autodesk | Autodesk InfoDrainage | 3D Modeling | 2023 | n/a |
In 2023, Johnson, Mirmiran & Thompson implemented Autodesk InfoDrainage to support stormwater and drainage design for the Low Battery Seawall rehabilitation in Charleston, South Carolina, within the broader multi phase contract that began in 2015. The deployment used Autodesk InfoDrainage within the 3D Modeling category to model tidal interactions and drainage responses for coastal resilience planning.
Autodesk InfoDrainage was used to run tidal tailwater analyses, HEC-22 inlet sizing, and pipe and network hydraulic modelling, producing longitudinal and cross sectional profiles and graphical conveyance models for inlet and pipe hydraulics. The implementation leveraged the application’s hydraulic network modeling and profile visualization capabilities to iterate drainage layouts and verify post tide drawdown behavior.
Operationally the tool was embedded in civil engineering workflows for stormwater design and resilience assessment for the Charleston site, supporting engineering design reviews and client and public stakeholder communication. The implementation scope was project level for the Low Battery Seawall rehabilitation, and the functional use touched drainage design, resilience planning, and external communications.
Governance and rollout aligned with the multi phase seawall project execution, delivering outputs as clear graphical profiles to improve communication with clients and public stakeholders. Use of Autodesk InfoDrainage helped design drainage that drains quickly after high tides and supported the project objective of increasing resilience to sea level rise.
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Kier Group | Construction and Real Estate | 11083 | $3.9B | United Kingdom | Autodesk | Autodesk InfoDrainage | 3D Modeling | 2022 | n/a |
In 2022 Kier Group used Autodesk InfoDrainage on the A66 engineering survey engagement to support drainage design, drawing production and site coordination. Autodesk InfoDrainage was applied as part of a 3D Modeling toolset to enable engineering surveyors to perform volume take-offs and produce updated construction and land acquisition drawings.
Autodesk InfoDrainage was used for detailed drainage modeling workflows including catchment delineation, pipe network configuration and runoff routing consistent with 3D Modeling practices, supporting design support tasks and Infraworks visualizations. The implementation supported production of mass haul diagrams, accommodation works plans and permanent acquisition land plans, reflecting integration of modeling outputs into civil design deliverables.
The workstream integrated Autodesk InfoDrainage outputs with Civil 3D, Map3D, InfoWorks, Navisworks, Recap and LSS as part of a contiguous Autodesk product workflow. Integration points focused on drawing updates, clash detection during site support, survey data interrogation and coordination of diversion proposals, enabling engineers to reconcile model data with site conditions.
Operational coverage centered on engineering survey, design and site support functions for the A66 project, with remote engineering surveyor activity documented for November 2022. Governance and workflow practices emphasized iterative drawing interpretation, model-driven updates and interdisciplinary coordination between survey, design and site teams to manage clashes and statutory diversion proposals.
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Ridge and Partners | Construction and Real Estate | 1174 | $182M | United Kingdom | Autodesk | Autodesk InfoDrainage | 3D Modeling | 2023 | n/a |
In 2023 Ridge and Partners implemented Autodesk InfoDrainage as part of its 3D Modeling toolset to support the civil engineering discipline. The work centered on the Oxford office and extended across all offices of the Civil Engineering discipline, establishing Autodesk InfoDrainage as a standard application for drainage and surface water modelling within the firm.
Deployment emphasized modelling and quality control, with Autodesk InfoDrainage used alongside Civil 3D and MicroDrainage for coordinated 3D drainage and hydraulic modelling workflows. A named lead for Civil 3D and InfoDrainage modelling held a formal quality control role for Civil 3D, MicroDrainage and InfoDrainage, and produced resourcing schedules and programmes to sequence modelling work across multiple projects.
Governance and rollout combined role-based quality control with capability uplift, delivered through two four day Civil 3D workshops for senior and junior engineers across all civil engineering offices. Configuration and operational practice centered on standardized modelling workflows, reviewer checkpoints, and resourcing governance to embed Autodesk InfoDrainage into project delivery and discipline level processes.
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The University of Oklahoma | Education | 10000 | $886M | United States | Autodesk | Autodesk InfoDrainage | 3D Modeling | 2022 | n/a |
In 2022, The University of Oklahoma used Autodesk InfoDrainage, a 3D Modeling application, to model Low Impact Development green infrastructure for neighborhoods in Oklahoma City and Tulsa. The work was performed as an academic research project led by a graduate student and targeted neighborhood-scale stormwater planning and urban drainage design in U.S. municipal contexts.
The implementation leveraged Autodesk InfoDrainage for hydrologic and hydraulic analysis, including catchment delineation, LID element modeling, scenario comparison, and peak flow estimation consistent with 3D Modeling workflows. The project used the application to configure distributed LID practices and to visualize three dimensional drainage geometry and surface storage interactions, supporting iterative design and comparative analysis across alternative green infrastructure scenarios.
Operational scope covered neighborhood sites in Oklahoma City and Tulsa, and the effort was positioned as an academic to municipal planning signal rather than an enterprise IT rollout. The deployment context was research and applied design, with outputs intended to inform municipal stormwater planning, civil engineering design reviews, and urban drainage decision making at the neighborhood level.
The study produced explicit outcomes for stormwater performance, achieving notable peak flow reductions, for example approximately 30 percent peak flow reduction at one Oklahoma City site, and demonstrated Autodesk InfoDrainage use cases for flood mitigation and water quality improvement in U.S. urban drainage projects. Autodesk InfoDrainage in this 3D Modeling use case illustrated practicable workflows for Low Impact Development design and scenario-based evaluation in academic and municipal environments.
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Verlagsgruppe Handelsblatt | Media | 700 | $220M | Germany | Autodesk | Autodesk InfoDrainage | 3D Modeling | 2023 | n/a |
In 2023, Verlagsgruppe Handelsblatt implemented Autodesk InfoDrainage in a 3D Modeling deployment to streamline stormwater and drainage design workflows for coastal and land development projects in the United States. The Autodesk InfoDrainage application was applied to project-level engineering tasks including tidal tailwater modeling, roadway drainage design, and bioretention SuDS planning.
The rollout emphasized the hydrology and hydraulics module and the BMP SuDS module as described in the case study, configuring workflows for hydrologic runoff generation, hydraulic routing, and BMP performance modelling for bioretention systems. Autodesk InfoDrainage graphical profile outputs were used to enhance stakeholder visualisation and to produce consistent plan and profile deliverables for design reviews and permit submittals.
Autodesk InfoDrainage was integrated with Civil 3D to keep drainage models synchronized with corridor and roadway geometry, enabling combined modeling of tidal tailwater effects and site drainage within a single coordinated environment. The integration reduced manual geometry transfers and preserved model provenance between design and drainage analysis assets.
Process changes focused on consolidating calculations and graphical profiles inside Autodesk InfoDrainage, which reduced tool handoffs and modelling errors by centralizing hydrology and hydraulics computations and standardizing outputs across project teams. Verification steps were shifted earlier in the design sequence and review artifacts were unified to improve interdisciplinary coordination.
Explicit outcomes reported in the case study included reduced tool handoffs, fewer modelling errors, improved stakeholder visualisation through graphical profiles, and net runoff reductions on tested projects where Autodesk InfoDrainage was used. These results demonstrate tightened technical governance of stormwater analysis workflows when Autodesk InfoDrainage is deployed alongside Civil 3D for 3D Modeling driven drainage design.
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