/ Addressing complex challenges

NUCLEAR ENGINEERING

NUCLEAR ENGINEERING

The nuclear sector is among the most demanding, due to its complexity and the high technical and quality standards it requires. Its challenges are numerous and encompass all areas of engineering, making interdisciplinary collaboration essential. At INGECID, we have a multidisciplinary team specialized in nuclear engineering across various fields including civil-structural, mechanical, radiological protection, safety and licensing, quality assurance, decommissioning and waste management, BIM, and software development. Within the nuclear field, we integrate the capabilities of these areas to deliver tailored solutions and designs that meet the specific needs of our clients.

/ Our Nuclear Engineering Services

COMMITTED TO SAFETY

En INGECID realizamos el diseño de estructuras, sistemas y componentes para instalaciones del sector nuclear, aplicando simulaciones avanzadas y diferentes códigos y normas nacionales e internacionales. Nuestro equipo multidisciplinar integra los resultados de cada disciplina en un diseño optimizado, adaptado a los requisitos de cada cliente.

Contamos con amplia experiencia en el diseño de Almacenes Temporales Individualizados (ATI) y componentes para el transporte de material radiactivo, incluyendo la preparación de documentación y soporte durante el licenciamiento. Hemos participado en proyectos de ATI en centrales españolas y en la Central Nuclear de Koeberg (Sudáfrica), así como en Modificaciones de Diseño para los ATI de Santa María de Garoña y José Cabrera. Entre los proyectos más destacados se incluyen ATI-24 Cofrentes, Modificación de Diseño CNSMG, ATI Zorita, IA Garoña, AT Vandellòs y TISF Sudáfrica.

Además, desarrollamos soluciones innovadoras para el almacenamiento y transporte de combustible gastado o residuos radiactivos, generando incluso patentes propias. Entre los proyectos más relevantes figuran MAB, ENUN 52B, MATRIX, SOLECOM, EOS-HSM y el Embalaje Tipo B.

Our specialists are highly skilled in the use of advanced software applied to all areas of radiological engineering: Monte Carlo simulations with detailed models (MCNP, MAVRIC); source term calculations (gamma and neutron) for fuel elements, including decay heat and criticality (ORIGEM, TRITON, KENOVI); neutron fluence and activation assessments (MCNP/MAVRIC + ORIGEM/RAMA); radiological impact evaluations under normal conditions (GASPAR, LADTAP) or accident scenarios (RADTRAD, RASCAL); atmospheric dispersion factor calculations (XOQDOQ, PAVAN, Arcon96); and derivation of equivalent release limits for site clearance (RESRAD).

En INGECID realizamos la caracterización radiológica y gestión de residuos siguiendo las metodologías MARSSIM/MARSAME, con amplia experiencia tanto en residuos operacionales como en los generados durante el desmantelamiento.

Contamos con capacidades en ingeniería y modelado BIM para la gestión y seguimiento de actividades, así como en escaneado 3D para la planificación y ejecución de trabajos.

Participamos en proyectos como el desmantelamiento de la Central Nuclear de Santa María de Garoña, el proyecto PIMIC-Oeste en el CIEMAT y las caracterizaciones de los reactores de Halden y Kjeller en Noruega.

Nuestra participación en el ámbito nuclear junto con nuestra capacidad de desarrollo de software, nos permite conocer de primera mano las necesidades, inspirándonos a desarrollar herramientas enfocadas en la gestión del desmantelamiento y de los residuos generados en instalaciones nucleares aplicando las últimas tecnologías con el fin de optimizar los procesos. Estos proyectos se están llevando a cabo para Enresa en España para la gestión futura de todos los centrales a desmantelar (VIRCORE-SGDES) y para el NND (Norwegian Nuclear Decommissioning) en Noruega para la gestión de los reactores experimentales de Halden y Kjeller (VIRCORE-FLYT).

We have also developed a tool to support spent fuel management (COATI). This tool enables the design of optimized loading plans, the configuration of container locations within ISFSIs, and the calculation of dose rates at specific points and dates almost instantly. This allows compliance with radiological criteria to be verified while adapting to the unique conditions of any container or ISFSI.

  • VIRCORE-FLYT
  • VIRCORE-SGDES
  • COATI
Our experience, not only in applying technical knowledge but also in leading teaching teams both within and outside academia, has enabled us to develop effective teaching methods that facilitate learning and understanding in key areas of the nuclear sector (radiological protection, quality, ASME code, nuclear regulations). We also conduct research projects, including empirical testing in collaboration with the Physics Laboratory of the University of Cantabria to evaluate the shielding properties of different materials.

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PRECISION, EFFICIENCY AND SAFETY

The Spanish National Radioactive Waste Company (ENRESA) awarded the joint venture known as UTE INGENIERIA INSTALACION DE APOYO ATI GAROÑA 2022 the contract “Engineering for the design, licensing, environmental processing, and construction management for the execution of a support facility for the ATI at the Santa María de Garoña Nuclear Power Plant.”. The joint venture, formed by IDOM Consulting, Engineering, Architecture S.A.U., Westinghouse Electric Spain S.A.U. and INGECID Investigación y Desarrollo de Proyectos S.L., was awarded the contract for €5.7 million after submitting the best value for money bid.

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ENRESA trusted INGECID with the execution of the contract for “Engineering services for activities related to the ATI of the José Cabrera Nuclear Facility.” The scope of the service included various engineering activities aimed at ensuring compliance with the safety and radiation protection conditions established by the Nuclear Safety Council, maintaining the safe operation of the facility, and preparing it for future operation as an independent nuclear facility. The planned actions included the Periodic Safety Review of the ATI, the development of activities associated with recoverability and life management, as well as the design modifications necessary for the future operation of the ATI as an independent nuclear facility.

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Emirates Nuclear Energy Company (ENEC) trusted INGECID to participate in the strategic study aimed at defining the future spent fuel storage system for the Barakah nuclear power plant, a key infrastructure in the United Arab Emirates' energy strategy.

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Within ENRESA's Strategic Systems Plan, one of the priority areas for optimizing the decommissioning processes of Spanish nuclear power plants was the development of a digital solution that would provide all stakeholders with advanced tools for the comprehensive management of the waste generated during these processes. This initiative not only sought to incorporate best practices in the sector, but also to define future organizational needs that would enable business processes to be optimized in a more efficient and sustainable manner.

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ENRESA awarded the joint venture formed by INGECID, WESTINGHOUSE, and IDOM the engineering services for the decommissioning of the Santa María de Garoña Nuclear Power Plant, for a total amount of €24.4 million. The contract covered the development of the activities necessary to obtain phase 2 decommissioning authorization, the preparation of design modifications, the preparation of basic and detailed engineering documentation, the drafting of construction projects and technical specifications, as well as the performance of radiological studies, monitoring reports, and technical advice during on-site work.

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YOUR NEXT BIG PROJECT STARTS HERE

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/ Extensive experience across multiple sectors

OTHER PROJECTS

  • Nuclear Engineering
    Decommissioning engineering for the Santa María de Garoña Nuclear Power Plant
  • Nuclear Engineering
    Strategic study for the storage of spent fuel at the Barakah Nuclear Power Plant
  • Ingeniería de Software, Ingeniería Nuclear
    VIRCORE FLYT: Comprehensive management of nuclear power plant decommissioning in Norway