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energy engineering

Subsea Dropped Object Analysis

QMF 21 Rev 3

23 Aug 2012 Prospect and Subsea Dropped Object Analysis 2

Content

• Company Background • Subsea Dropped Objects • Current Mitigation Techniques • Subsea Installation Analysis • Finite Element Analysis (FEA) • Computational Fluid Dynamics (CFD) • Case Studies • Questions

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Company Background

• Founded 1999 – Became part of Superior group Dec 2009

• Multidiscipline services – Design – Analysis – Management

• International Resources – Aberdeen, Derby, Houston, Singapore

• Client Orientated – Focus purely on client needs to provide a fast effective service of

the highest quality

Subsea Dropped Objects

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Subsea Asset Protection

• Modern Oilfield – Large subsea infrastructure

• Congested seabed – High Risk of dropped objects impacting and damaging assets

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Current Mitigation Techniques

• DROPS potential consequence table – Lookup table for range of objects with potential to be dropped – Gives approximate drop cone, velocity and impact

• Recommended Practice – DNV-RP-F107 2010 – Probability based quantification of events – Drag coefficients and terminal velocity highly generalised based on

shape

• Explicit Analysis – Use of latest software and analysis techniques – Fully quantify numerical values and potential consequences

Prospect Dropped Object Analysis

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Prospect Drop Analysis Tools

Prospect can provide; • Real world behaviour

– Physics based simulations which replicate real events

• Numbers behind the risks – Mitigation methods can be tested and compared

• Worst case scenarios – Outcomes if the worst does happen

• Front end engineering – Prevent incidents rather than react

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Subsea Installation Analysis

• Simulate an asset during move from vessel to subsea location – Pipe Lay – Cable Lay – Subsea Hardware – Splash Zone Deployment

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Finite Element Analysis (FEA)

• Computer modelling of component stress and deflection • Dropped object impact

– Forces on impact – Visualise outcomes – Quantify events

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Computational Fluid Dynamics (CFD)

• Computer modelling of fluid dynamics and subsequent loading – Determine where a dropped object is likely to land – “Virtual Wind Tunnel” for sea currents – Displacement forces – Objects drag coefficient – Determine an objects likely impact velocity

Case Studies

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Dropped Object - Installation

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Flexible Riser Impact (FEA)

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Subsea Manifold Impact (FEA)

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Subsea Manifold Impact (FEA)

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Subsea Manifold Impact (FEA)

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Questions

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Contact

John Eddie Prospect Cumberland House Endeavour Drive Westhill Aberdeenshire AB32 6UF T: +44 1224 651831 www.prospect-fs.com

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