List of SIGMA ROHR2 Customers
Unna, 59423,
Germany
Since 2010, our global team of researchers has been studying SIGMA ROHR2 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 SIGMA ROHR2 for Mesh Generation and 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 SIGMA ROHR2 for Mesh Generation and Analysis include: Uniper, a Germany based Utilities organisation with 7431 employees and revenues of $81.55 billion, Siemens Energy, a Germany based Manufacturing organisation with 98000 employees and revenues of $34.60 billion, Sant'Ambrogio Servizi Industriali Italy, a Italy based Professional Services organisation with 25 employees and revenues of $2.0 million and many others.
Contact us if you need a completed and verified list of companies using SIGMA ROHR2, 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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Sant'Ambrogio Servizi Industriali Italy | Professional Services | 25 | $2M | Italy | SIGMA | SIGMA ROHR2 | Mesh Generation and Analysis | 2014 | n/a |
In 2014 Sant'Ambrogio Servizi Industriali Italy began cooperating with SIGMA to represent and use SIGMA ROHR2, integrating Mesh Generation and Analysis capabilities into its engineering and piping stress analysis service offerings. The cooperation formally started on 1 March 2014 and positioned SIGMA ROHR2 as the primary application supporting mechanical design and piping stress workflows across the firm in Italy.
The implementation emphasizes piping stress analysis and mechanical design, with explicit utilization of ROHR2fesu for finite element method based calculations and mesh generation. SIGMA ROHR2 is configured to support core analysis functions consistent with Mesh Generation and Analysis, including model meshing, FEM solver execution, and result post processing for stress verification of piping systems.
Operationally the application is embedded into Sant'Ambrogio Servizi Industriali Italy engineering workflows and service delivery, where SIGMA ROHR2 inputs feed project level stress calculations and client deliverables. The rollout scope is focused on the companys engineering and piping stress analysis function within Italy, and the software is integrated into their service offerings for customers rather than into unrelated corporate systems.
Governance for the SIGMA ROHR2 adoption centers on process alignment of stress calculation procedures and incorporation into project quality control and technical proposals. Training and procedural embedding were implied by the cooperation, enabling Sant'Ambrogio Servizi Industriali Italy to standardize analytical methods and present SIGMA ROHR2 based FEM capabilities within its customer engagements.
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Siemens Energy | Manufacturing | 98000 | $34.6B | Germany | SIGMA | SIGMA ROHR2 | Mesh Generation and Analysis | 2015 | n/a |
In 2015, Siemens Energy deployed SIGMA ROHR2 for piping stress analysis within its engineering organization. Siemens Energy uses SIGMA ROHR2 in the Mesh Generation and Analysis category to support engineering and piping stress calculations, a usage footprint corroborated by role descriptions in turbomachinery and power generation engineering groups in Germany.
SIGMA ROHR2 is applied for engineering piping stress calculations to ensure compliance with standards ASME and PED and to support design and CE marking activities. Functional capabilities observed in practice include finite element meshing of pipework, static and dynamic stress analysis, code based stress and flexibility checks, definition and management of load cases, and generation of result reports for certification and design review.
Operational coverage is concentrated in Siemens Energy turbomachinery and power generation engineering groups in Germany, where job postings list ROHR2 as a required tool, signaling standardized use across hiring and engineering workflows. The application is embedded in business functions responsible for piping stress calculations, design documentation, and CE marking package preparation.
The explicit requirement for ROHR2 in job descriptions indicates governance and process alignment, with the tool incorporated into competency frameworks and mandated engineering workflows for code compliance checks and design deliverables. SIGMA ROHR2 therefore operates as a core Mesh Generation and Analysis application within Siemens Energy engineering practices.
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Uniper | Utilities | 7431 | $81.6B | Germany | SIGMA | SIGMA ROHR2 | Mesh Generation and Analysis | 2010 | n/a |
In 2010, Uniper implemented SIGMA ROHR2. Uniper uses SIGMA ROHR2 for Mesh Generation and Analysis in engineering, specifically piping stress analysis for power generation and plant engineering, a usage documented on ROHR2 distributor and partner product pages in Germany.
The deployment at Uniper centers on finite element based mesh generation and piping stress analysis workflows, with configuration of mesh parameters, material and section libraries, and load case modeling for thermal and mechanical loading. SIGMA ROHR2 was applied to static and dynamic stress calculations and to support and anchor load assessments typical of power plant piping networks.
Operational coverage is within Uniper engineering and plant engineering groups in Germany, used for design validation and detailed piping stress checks across generation assets. Governance emphasis focused on embedding piping analysis into engineering validation workflows and standardizing analysis procedures, consistent with the distributor referenced implementation.
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