Our Partners & Clients
We collaborate with internationally recognized companies on industrial projects of high technical complexity.
Sectors of Intervention
Oil & Gas
Integrated Upstream, Midstream and Downstream Engineering. ASME/API/NACE certified solutions for Onshore and Offshore facilities.
Learn morePower Generation
Multidisciplinary design for conventional and renewable energy plants, with a focus on efficiency and distribution.
Learn morePetrochemicals
Detail engineering for cracking, synthesis, and polymerization units. We offer comprehensive services in mechanical design, piping, and structural analysis, developing solutions in special materials for severe conditions.
Learn morePharmaceutical
Detail engineering for sterile process plants and biosynthesis. High-hygienic solutions in stainless steel and special materials, designed in full compliance with ASME BPE standards and cGMP/FDA guidelines. Learn more
Our Operating Process
A multidisciplinary and rigorous approach to ensure technical precision, quality, and timely delivery at every stage of the project.
1. Data Acquisition & Input
2. Basic & Detailed Engineering
3. Review & Quality Check
4. Final Delivery & Follow-up
Collection of input data, analysis of technical specifications and customer requirements to define the design basis.
Development of calculations, 3D models and multidisciplinary technical documentation, ensuring the integration of all specialisations.
Internal Check process for documents and models to ensure the absence of errors and compliance with the highest quality standards.
Issuance of "Approved for Construction" final documents and continuous technical support for project implementation on site.
Join the TEM Team
Let's build the future of engineering together. We are always looking for motivated talents and professionals to strengthen our multidisciplinary team.
Piping 3D Modeler
Role Purpose
Support the development and maintenance of 3D piping models by performing assigned modeling tasks under supervision, ensuring accuracy, compliance with standards, and timely delivery of project deliverables.
Key Responsibilities
1. 3D Modeling Support
- Assist in the development of 3D piping models using approved software (e.g., AVEVA E3D, S3D, Plant 3D).
- Model basic piping elements based on P&IDs, line lists, and engineering sketches.
- Ensure modeling follows established standards, specifications, and guidelines.
2. Data Interpretation and Application
- Interpret design inputs provided by senior designers and engineers.
- Apply specifications, catalogs, and project requirements within the 3D model.
- Maintain consistency and data accuracy within the model.
3. Coordination (Under Guidance)
- Coordinate with other disciplines by integrating their inputs into the model.
- Support clash detection activities and assist in resolving simple interferences.
- Maintain continuous communication with team members to ensure alignment.
4. Deliverable Preparation (Technical Documents)
- Assist in generating model outputs, such as: Isometric drawings, General Arrangement drawings (GA / Layout).
- Perform basic checks before submitting deliverables for review.
- Update drawings and models based on review comments received.
5. Model Quality and Control
- Perform self-checks to ensure the accuracy and completeness of assigned modeling tasks.
- Follow quality procedures and control standards before issuing work.
- Support senior designers in model review and update activities.
6. Learning and Development
- Develop knowledge of piping design principles, plant layout, and industry practices.
- Gain familiarity with company standards, tools, and workflows.
- Actively seek guidance and feedback to improve technical skills.
Key Skills and Competencies
Technical Skills
- Basic knowledge of: 3D modeling tools (E3D / PDMS / S3D / Plant 3D), Engineering drawings (P&ID, layout).
- Understanding of: Basic piping components (pipes, valves, fittings), Drafting and modeling standards.
Soft Skills
- Attention to detail
- Willingness to learn and grow professionally
- Collaboration and teamwork
- Basic communication skills
Qualifications and Experience
- Diploma or Degree in Mechanical Engineering or equivalent qualification.
- 0–3 years of experience in engineering design or 3D modeling.
- An internship or specific training on CAD/3D tools will be an advantage.
Typical Tools
- AVEVA E3D / PDMS / S3D / AutoCAD Plant 3D
- Basic model review tools (e.g., Navisworks – basic level/general knowledge)
Tekla Modeler (Structural 3D Modeler)
Role Purpose
Develop and maintain accurate, fabrication-ready 3D structural models using Tekla Structures, ensuring alignment with engineering designs, project standards, and constructability requirements throughout the entire project lifecycle.
Key Responsibilities
1. 3D Structural Modeling
- Develop detailed 3D models of structural steel and concrete elements using Tekla Structures.
- Model: Primary steelwork (columns, beams, girders); Secondary steelwork (platforms, pipe supports, stairs, access structures); Tertiary steelwork (handrails, gratings, plates).
- Ensure model accuracy to meet fabrication and construction requirements.
2. Fabrication-Oriented Modeling
- Build models suitable for: Material Take-Off (MTO), welding reports, shop / fabrication drawings.
- Include detailed connections, welds, and assemblies where required.
- Structure models to support direct extraction of fabrication deliverables.
3. Data Integration and Interoperability
- Coordinate with other modeling systems (e.g., E3D) to ensure consistent data exchange.
- Import/export models and maintain alignment between engineering and fabrication models.
- Maintain model hierarchy and structure for smooth integration.
4. Input Review and Application
- Interpret structural calculations, General Arrangement (GA) drawings, and specifications.
- Review design inputs and ensure their correct application in the 3D model.
- Report inconsistencies or missing information to discipline leads.
5. Model Coordination and Clash Resolution
- Coordinate with disciplines: Piping, Mechanical, Civil, and E&I (Electrical and Instrumentation).
- Perform clash checks and resolve them within the model.
- Ensure sufficient accessibility, safety clearances, and constructability in all designs.
6. Deliverables and Documentation
- Extract and produce: Shop / fabrication drawings, assembly drawings, single-part drawings, MTO reports.
- Ensure deliverables are accurate, complete, and issued according to the project schedule.
7. Model Quality and Control
- Perform self-checking of models to identify any discrepancies.
- Ensure compliance with company standards and project specifications.
- Participate in model review sessions, both internal and with the client.
8. Project Execution and Timelines
- Complete modeling activities in line with project timelines and milestones.
- Maintain an organized model structure and proper revision control.
- Support progress tracking and reporting for structural modeling deliverables.
Key Skills and Competencies
Technical Skills
- Strong proficiency in: Tekla Structures (essential), structural steel modeling and detailing.
- Good understanding of: Structural engineering fundamentals, fabrication processes and connection detailing, BIM workflows and interoperability.
Soft Skills
- High attention to detail
- Strong spatial and visualization skills
- Good coordination and communication skills
- Problem-solving mindset
Qualifiche ed Esperienza
- Diploma or Degree in Civil or Structural Engineering (or equivalent qualification).
- Typically 3 to 10 years of experience in structural modeling with Tekla (depending on the required seniority level).
- Experience in industrial projects (Oil & Gas, Mining, Infrastructure) is preferred.
Typical Tools and Systems
- Tekla Structures (main tool)
- AVEVA E3D / PDMS (interface coordination)
- Navisworks or similar model review software
- Data and model management platforms
Structural Engineer
Role Purpose
Support the structural engineering team in the analysis, design, and delivery of structural systems by performing assigned engineering tasks under supervision, ensuring compliance with project requirements, applicable codes, and company standards.
Key Responsibilities
1. Engineering Design Support
- Assist in the design and analysis of structural systems, including: Structural steelwork (frames, platforms, supports); Foundations and concrete structures.
- Prepare basic calculations and verify structural elements under supervision.
- Support the preparation of structural project documentation (calculations, technical reports, specifications).
2. Input Review and Data Interpretation
- Review and interpret: General Arrangement (GA / Layout) drawings; Load data and design criteria; Vendor and multidisciplinary inputs.
- Ensure correct application of design inputs and report any inconsistencies.
3. Coordination with Designers and 3D Modeling
- Collaborate closely with structural designers and modelers (E3D / Tekla) to ensure that engineering intent is reflected in the model.
- Provide engineering inputs for: Structural layouts; Pipe supports and equipment supports.
- Support coordination with other disciplines to achieve integrated design solutions.
4. Review of Drawings and Technical Deliverables
- Review structural drawings and deliverables to verify alignment with engineering intent.
- Assist in guiding designers to ensure drawings meet standards and specifications.
- Support the preparation of: Calculation packages (structural calculation reports); Technical specifications; Quantity take-offs / Material Take-Offs.
5. Quality, Safety, and Compliance
- Ensure all work complies with: Applicable industry codes and standards; Company procedures and quality systems.
- Perform checks on work outputs before submission for review.
6. Construction and Fabrication Support
- Assist in the review of: Fabrication / construction drawings; Vendor data and shop drawings.
- Provide basic technical support during construction and in response to site queries, if required.
7. Learning and Development
- Develop an understanding of: Structural analysis methods; Industry codes and regulations; Company systems and workflows.
- Develop skills in line with the engineering framework and professional growth model.
- Actively seek guidance and feedback to continuously improve technical capabilities.
Key Skills and Competencies
Technical Skills
- Basic knowledge of: Structural engineering principles (steel and concrete structure design); Load analysis and structural behavior.
- Familiarity with: Structural analysis software (e.g., STAAD, SAP2000, ETABS, SAFE – basic level/general knowledge); Engineering drawings and technical specifications.
- Awareness of: 3D modeling environment (E3D / Tekla interface).
Soft Skills
- Analytical thinking
- Attention to detail
- Strong willingness to learn and grow
- Collaboration and communication within the team
Qualifications and Experience
- Bachelor's or Master's Degree in Civil or Structural Engineering.
- 0–3 years of experience (graduate or entry-level).
- An internship or previous experience (including academic) on engineering projects will be an advantage.
Typical Tools and Systems
- Structural analysis software (basic level / general knowledge)
- Excel / engineering calculation tools
- E3D / Tekla (interface knowledge)
- Document and engineering management systems



