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  • 8/3/2019 110310 2 Statoil Innovate Whats Your Idea - An Introduction to Innovate Stat Oil Com and Statoil Subsea Technology Gaps Dag Oxnevad Statoil

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    Statoil Innovate: Whats your idea?

    An introduction to Innovate.statoil.com & Statoil Subsea Technology Challenges

    Dag xnevad

    10.03.2011

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    Innovate.statoil.com

    Promote Statoil as a technology

    driven and innovative company

    Get more ideas, better targeted at

    our needs

    Get solutions to specific challenges

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    Technology areas: Value creation and growth

    Statoils technology strategy outlinedthrough 7 technology areas

    Describing key challenges and indicatingtechnologies of special interest

    Exploration

    Reservoir

    Drilling & well

    Frontier facilities

    Processing & refining New energy/renewables

    Environmental

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    Challenge: Spotlight on specific needs

    Current challenge: Sub-basalt exploration

    Duration: 6 weeks

    Deadline: 20 February

    2011 plan: 4 Challenges from different

    technology areas

    How can we make the invisible visible?

    Exploration for oil and gas is becomingincreasingly challenging

    The toughest challenge is to image belowbasalt

    Even advanced sub-salt imagingtechnologies developed over the lastdecade do not tackle the problem

    Innovative approaches are needed!

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    Track record: Successful industry development

    8 examples of successful technology

    development cooperations

    Exemplifies Statoils industrial developmenttoolbox

    LOOP technology development programme

    Equity/venture investments

    R&D

    Seed funds, business incubators and

    science parks

    Joint ventures with suppliers and partners

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    Process & benefits: Whats in it for me?

    Statoil may contribute with technical expertise,user requirements, project supervision, pilot tests,

    networks, business/commercial advice, and

    financial support

    Creating win-win situations: Statoil gains access tonew technology; the idea contributor develops a

    commercially viable product

    Every idea is evaluated by a team of specialists:business developers, IP advisors, technical

    experts

    If the idea is endorsed by the evaluation team a

    technology development tool best suited for theproposal is selected

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    A history of global leadership in Subsea Processing

    Fitforpurp

    ose,st

    ate-of-

    the-art

    separ

    ation,b

    oosting,p

    ower&

    contro

    lsyste

    ms

    1996Gullfaks

    First multiphasePumps (topsides, part

    of Framocommercialisation)

    2003Norne Technology

    programSubsea

    separationconcept

    developments

    1986

    Start Poseidonmultiphase pump

    development

    1997LufengSubseapumps

    2000Troll

    Subsea water

    removal andinjection

    2007Tordis

    Subsea waterremoval &

    injection, oil &gas boosting

    2009

    TyrihansSubsea raw

    seawaterinjection (ready

    for operation2011)

    2005Troll Pipe

    separatorQualificationsSubsea water

    removal

    200910 subsea years Aniversary

    Statoil-operated fields

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    Subsea Technology Challenges Architecture & Systems

    4 Life time flexibility.

    3 Clamp connector that can be closed and seal with angular misalignment.

    2 Equipment flexibility for use on different suppliers and fields.

    1 All electrical subsea system.

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    Subsea Technology Challenges Structures & Valves

    1. Mud-mat foundation for a Template production manifold that can resist erosion from drilling andenvironmental loads.Including leveling system for subsea template with mud-mats.

    2. Retrofit solution for stop/limit actuator stem leakage on subsea manifold valves.

    3. Cost-effective satellite solutions for NCS (Norwegian Continental Shelf).

    4. Develop subsea Electric actuators from several suppliers.Development of generic requirements for such.

    5. Deep water developments.

    6. Valve leakage monitoring.

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    Subsea Technology Challenges Subsea Separation

    1. Compact system for bulk water separation including control system.(Inline separator).

    2. Remove water from oil dominated well stream to avoid hydrate formation in production pipe line(given MEG inhibition) to enable long distance transport.

    3. Remove liquid from gas dominated well stream to enable tie in to gas export pipe line or avoidhydrate formation in production pipeline.

    4. Measurement and control of gas quality for subsea gas scrubber.

    5. Online subsea OIW (Oil in Water) monitoring.

    6. Subsea fast responding control valve.

    7. Pre-conditioning of sea water for injection (sulphate removal, filtering, O2, etc,).

    8. On-line monitoring of scale precipitation and deposit.

    9. Subsea bulk separation of heavy oil.

    10. Subsea electrostatic coalesher.

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    Subsea Technology Challenges Subsea Separation

    11. Water emulsification of heavy oil preparing for transport.

    12. Increase differential pressure on subsea multiphase pumps to ~200 bar.

    13. Larger electrical motors for pumping applications, 6 MW.

    14. Gas tolerant liquid pumps.

    15. Pumps for higher shut-in pressures and deeper waters.

    16. More robust down hole pump systems.

    17. Small compressor for "small-field application.

    18. Large compressor for field installation. Liquid tolerant centrifugal compressor.

    19. Qualify operational strategy in order to operate subsea compressor system without recyclefunctionality.

    20. Qualify magnet bearing systems based on compressor/permanent magnet motor configuration.Alternative bearing systems for gas compressor

    21. Cooling systems.

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    Subsea Technology Challenges HV Power Supply

    1. Deepwater power umbilical.

    2. Deepwater HV (High Voltage) connector systems.

    3. 3 kV Wet Mate connector system.

    4. Adjustable Speed Drive.

    5. Switchgear.

    6. DC (Direct Current) connector/penetrator systems.

    7. AC/DC (Alternating Current/Direct Current) converters.

    8. Dynamic DC riser.

    9. High pressure penetrators.

    10. Local power generation systems.

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    Subsea Technology Challenges - Production Control System

    Leakage detection: Cost effective retrofit leak detector.4

    Leakage detection: Cost-efficient leak detector for satellites.3

    Limitless Control Power and Communication

    Umbilical tie-in heads.

    1

    2

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    Subsea Technology Challenges - Production Control System

    All electric system: Electric tree with low power consumption.8

    All electric system: The electrical down-hole safety valve needs further development andqualification to meet our needs.

    7

    All electric system: Electrical anti-surge valve needs further development and

    qualification

    6

    Subsea HPU (High Pressure Unit).5

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    Subsea Technology Challenges - Production Control System

    Integrated Operations: Condition monitoring of instruments and actuators, SCM's (SubseaControl Module) in particular

    12

    Process control: Control algorithms for compact separation.11

    Reliability: High quality controls system products & component.10

    All electric system: Electric workover control system. Sufficient power toactuators/eSCMs (Subsea Control Module) and electric ROV/AUV (Remote OperatedVehicle).

    9

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    Subsea Technology Challenges - Production Control System

    Improve quality of LV electrical jumpers.20

    Improve quality of LV (Low Voltage) electrical connectors/end terminations.19

    Improved online isolation monitoring of umbilical and subsea electrical powerdistribution for SCM's.

    18

    Online WiG (Water in Gas) for hydrate control.17

    Online OiW (Oil in Water) measurement for production control.16

    Online WiO measurement for fiscal purpose.15

    Online WiO (Water in Oil) measurement for transport quality.14

    Liquid fraction measurement in gas for wet gas compression.13

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    Subsea Technology Challenges - IMR (Inspection, Maintenance & Repair)

    Investigate MHS interface possibilities for deepwater ROT / modules (guidewire lessoperation).

    4

    Rerate/investigate capacity of old ROT (Remote Operated Tools) in Subsea pool to bettermatch capacity in current IMR fleet.

    3

    Develop method/equipment to enable replacement (recovery) of large process modules(>70T).

    2

    Increase MHS (Module Handling System) capacity to be able to handle larger modules (up to70T and up to 10m height).

    1

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    Subsea Technology Challenges - IMR (Inspection, Maintenance & Repair)

    All-electric ROV (Remote Operated Vehicle) - el. torque tool.9

    Sonar amplification.8

    International standard/ recommended practice for equipment intended for underwater lifting.7

    3D visualization capability for manipulator operations.6

    All-electric ROV (Remote Operated Vehicle) - el. Manipulator.5

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    Subsea Technology Challenges Marine Operations

    Large capacity installation equipment for long step-outs (typical reel/carousel capacity).5

    Intervention methods/concepts for ultra deep waters.4

    Installation methods/concepts for ultra deep waters.3

    Contingency and emergency preparedness for marine operations in harsh environment/icecovered waters.

    2

    Vessels suitable for operations in harsh environments/ice covered waters.1

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    Subsea Technology Challenges - Diving

    Re-breather equipment.1

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    Statoil Innovate: Whats your idea?

    Dag xnevadLeading Advisor Subsea Production Systems - Statoil

    [email protected], tel: +47 90 19 85 19

    www.statoil.com

    Thank you