Mechanical Engineer at Oando

Entreprise Nigeria Nigeria Publié le 03/04/2026

### 📌 Résumé de l'offre Mechanical Engineer at Oando at Entreprise in Nigeria. View the details for more information. **Détails clés :** - 💼 **Contrat** : Non spécifié - 📍 **Localisation** : Nigeria - 🎓 **Niveau** : Selon profil - 🛠️ **Compétences** : data, design, ai, excel, Management --- Oando PLC is one of Africa’s largest integrated energy solutions providers with a proud heritage. It has a primary listing on the Nigerian Stock Exchange and a secondary listing on the Johannesburg Stock Exchange. With shared values of Teamwork, Respect, Integrity, Passion and Professionalism (TRIPP), the Oando Group comprises six companies who are lea... Read more about this company Mechanical Engineer Job Type Full Time Qualification BA/BSc/HND , MBA/MSc/MA Experience 5 years Location Rivers City Port Harcourt Job Field Engineering / Technical   To execute complex mechanical engineering designs and provide expert operational support for facilities equipment, for the engineering department and plant operations, in order to ensure the reliability, integrity, and safe operation of mechanical systems that sustain production performance and protect company assets. Key Responsibilities Areas (KRAs) and Initiatives Mechanical Equipment Design and Specification Develop, detailed specifications and datasheets for complex mechanical equipment (e.g., pumps, compressors, pressure vessels, heat exchangers) using industry codes (e.g., ASME, API) to ensure accurate procurement, reliable performance, and safe operation of assets. Perform detailed engineering calculations—including stress analysis, vibration analysis, and material selection studies—to ensure mechanical equipment and piping systems can safely withstand operational loads and environmental conditions, helping to prevent failures, equipment damage, and unplanned downtime. Support the technical evaluation of vendor proposals by reviewing equipment specifications, checking compliance with project requirements, handling technical clarification queries, and helping confirm that selected machinery is fit‑for‑purpose, reliable, and meets all safety and design standards. Assist in developing and updating standard engineering specifications and design philosophies by applying industry best practices (such as API standards) and incorporating lessons learned, helping ensure consistent, high‑quality design work that supports asset integrity and reduces operational risk Review mechanical engineering deliverables—including technical reports, calculation sheets, and vendor drawings—by performing detailed quality checks to verify design accuracy, compliance with engineering standards, and alignment with other disciplines, helping to minimize rework during construction. Asset Integrity, Reliability, and Operational Support Support asset integrity programs by performing condition assessments (such as API 579 Fitness‑for‑Service evaluations), reviewing maintenance strategies, and assisting in the coordination of repair scopes to help ensure the long‑term safety, reliability, and performance of mechanical equipment. Provide expert technical support for production equipment and processes by troubleshooting complex mechanical issues, conducting detailed root cause analysis (RCAs) for failures, and recommending timely solutions to minimize unplanned downtime, restore production quickly, and ensure sustained facility availability. Support the engineering activities during Turnarounds (TAR) and major maintenance events by helping define mechanical work scopes, coordinating repair and replacement plans, and participating in quality control (QC) inspections to ensure equipment is safely restored and returned to service efficiently. Assist in the selection of materials and corrosion control strategies by applying knowledge of metallurgy, corrosion mechanisms, and protective coatings to ensure compatibility with process fluids, minimize equipment degradation, and help maintain the mechanical integrity and lifespan of facility infrastructure. Support condition monitoring programs by helping define monitoring requirements and interpreting equipment performance trends to identify early signs of degradation, enabling timely preventive maintenance and improving overall asset availability. Piping Design and Engineering Excellence Develop and verify detailed piping designs—including layouts, routing, isometrics, and material specifications—using CAD/3D modelling tools and applying relevant international standards (such as ASME B31.3) to ensure efficient space utilization, safe access for operations and maintenance, and reliable system performance. Perform piping stress analysis using specialized software (such as CAESAR II) to evaluate the effects of operational loads, temperature variations, and environmental factors (e.g., wind or seismic activity), ensuring piping systems operate safely without excessive stress on connected equipment and helping prevent failures, equipment damage, and unplanned d

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