Warship Technology delivers in-depth analysis of advanced naval systems, platforms, and integration strategies shaping modern maritime defence capabilities.
Look out for topics such as combat management systems, radar and sensor integration, propulsion advancements, survivability and stealth technologies, and the growing role of autonomy and artificial intelligence in naval operations.
Gain insight into the technologies underpinning next-generation warships, along with the practicalities of design, integration, and lifecycle support within complex naval environments.
Ship design complexity is accelerating, challenging naval architects to balance safety, sustainability, innovation and regulatory demands. A novel node-network methodology organizes multidisciplinary calculations around a 3D product model, enabling faster analysis, greater design transparency and flexible optimisation. The approach reveals new possibilities for more informed engineering decisions at scale today.
A structured methodology is improving conceptual design of complex systems where requirements, components and constraints are not yet fully defined. Combining Object-Process Methodology with System Dynamics simulation, the approach enables comparison of alternative concepts, reveals critical trade-offs and causal relationships, and supports more informed design decisions for innovative engineering challenges.
Digital assembly simulation is helping shipbuilders tackle one of production’s most complex challenges: piping installation. By combining collision-free path planning algorithms with automated assembly sequence generation and validation against real-world CAD models, the approach improves constructability assessment, installation planning and procurement decisions, enabling more efficient and reliable shipbuilding processes.
Navantia is advancing digital shipbuilding through an integrated design methodology that connects CAD, structural analysis and lifecycle management within a unified digital engineering environment. By linking 3D models, finite element simulations and PLM workflows from concept through construction, the approach improves collaboration, design accuracy and traceability, enabling faster decisions and more efficient ship development.
A shift toward model-based structural approval is transforming collaboration between shipbuilders and classification societies. By embedding structural scantling data directly within 3D models, this approach promises improved traceability, reduced documentation effort and faster approvals. Early proof-of-concept work highlights remaining challenges in standardising complex structural details for a fully digital future.
Wind-Assisted Propulsion Systems are accelerating maritime decarbonisation through advanced digital engineering. By combining aerofoil optimisation, high-fidelity fluid dynamics and structural simulation within an integrated 3DEXPERIENCE® workflow, engineers can maximise propulsion efficiency, reduce emissions and shorten development cycles, demonstrating how virtual design technologies are enabling more sustainable shipping solutions.
Automated weld inspection is addressing growing workforce shortages and rising inspection costs in shipbuilding. By combining laser scanning, bead-shape analysis and AI-powered defect identification, the system enables accurate remote assessment of weld quality, reduces reliance on specialist inspectors and improves efficiency, consistency and accessibility across complex shipyard environments.
Digital process simulation is helping shipyards overcome the challenge of constantly changing designs and fragmented production planning. By introducing a network-based data structure that automatically synchronises design updates, production workflows and departmental plans, this approach enables more efficient scheduling, stronger cross-functional coordination and greater responsiveness across complex shipbuilding programmes.
Virtual reality is unlocking new possibilities for shipbuilding collaboration, training and design review, but handling massive 3D CAD models remains a major technical challenge. By combining GPU instancing, intelligent caching and voxel-based optimisation, this approach enables faster loading, lower memory demands and more immersive visualisation of complex ship designs.
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