Structural Integrity Engineer at Intertek Building Construction
, , Germany -
Full Time


Start Date

Immediate

Expiry Date

16 Sep, 26

Salary

0.0

Posted On

18 Jun, 26

Experience

5 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Structural Integrity Assessment, Load Evaluation, Structural Analysis Software, Eurocodes, AISC, ASCE, API 579, Corrosion Assessment, Brownfield Engineering, Structural Reliability, Foundation Analysis, Steel Frame Analysis, Technical Reporting, Life Extension Assessment, Tie-in Feasibility, Structural Design

Industry

International Trade and Development

Description
Intertek, Multinational Company leader in ATIC (Assurance, Testing, Inspection, Certification) is seeking an experienced Structural Integrity Engineers for upcoming work related to operational plants, brownfield modifications, and revamp projects across multiple Energy assets. This role focuses on evaluating the structural condition of existing facilities, assessing degradation, verifying load capacity, and supporting engineering decisions related to life extension, structural tie-ins and structural reliability. The Structural Integrity Engineer provides technical authority in structural assessment, load evaluation, and degradation‑related structural engineering, ensuring that all recommendations are technically defensible, compliant with international codes, and aligned with Client integrity requirements. Responsabilities: Perform structural integrity assessments for non‑pressurized structural elements, including pipe racks, platforms, walkways, supports, buildings, foundations, and steel frames. Evaluate corrosion‑related section loss, deformation, vibration issues, and structural overstress conditions. Conduct load evaluations (dead, live, thermal, wind, seismic, equipment loads) for existing structures. Assess structural adequacy for revamp scopes, equipment replacement, and structural tie‑ins. Support API 579 Part 5/9 assessments only where applicable to structural components (e.g., local thin areas, crack‑like flaws). Review legacy structural drawings, as‑built documentation, and field measurements to validate structural capacity. Evaluate use of existing structures for new loads or modified operating conditions. Provide structural input to revamp engineering packages, MOCs, and tie‑in feasibility studies. - Support temporary works, lifting studies, and construction‑related structural checks. - Interpret inspection data and correlate degradation mechanisms with structural performance. - Prepare structural assessment reports, engineering justifications, and recommendations for repair, reinforcement, or replacement. - Interface with Mechanical, Corrosion, Process, and Inspection teams to resolve data gaps and ensure alignment. - Ensure compliance with Eurocodes, AISC, ASCE, API, and Client standards. Bachelor’s degree in Civil or Structural Engineering. Master’s degree in Structural Engineering is an advantage. Minimum 5 years demonstrable experience acting as Structural Integrity Engineer. Experience with structural analysis software for assessment‑level calculations Chartered Engineer (CEng / PE / EUR Ing) or equivalent. API 579 familiarity (Parts 5 & 9) is an advantage. Training in structural assessment, Eurocodes, or API/ASME integrity standards. Strong understanding of structural analysis principles, load combinations, and code‑based assessment methods. Proficiency in evaluating non‑pressurized structural elements: steel structures, concrete structures, pipe racks, platforms, supports, and foundations. Ability to assess corrosion, section loss, deformation, vibration, and fatigue‑related issues. Familiarity with operational constraints, plant walkdowns, and brownfield engineering practices. Working knowledge of integrity management systems and inspection workflows.

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Responsibilities
Perform structural integrity assessments and load evaluations for non-pressurized elements in energy assets to ensure reliability and code compliance. Provide technical authority for revamp projects, life extensions, and structural repairs based on inspection data and international standards.
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