Close Menu
    Facebook LinkedIn
    Geo365
    Facebook LinkedIn
    BESTILL Login ABONNÉR PÅ NYHETSBREV
    • Hjem
    • Anlegg og infrastruktur
    • Aktuelt
    • Bergindustri
    • Dyphavsmineraler
    • Miljø
    • Olje og gass
    • Geofunn
    • Download Media Guide
    Geo365
    You are at:Home » Radical Improvements
    Olje og gass

    Radical Improvements

    By Guest Authormai 5, 2015
    Del denne artikkelen Facebook Twitter LinkedIn Email
    Efficiency in geophysical data acquisition is expected to improve radically in the future. Statoil's new contactless multi-component seismic sensor is an efficient herald of this development.
    Illustration (courtesy of N. Pavel) of a robotized, contactless, multicomponent acquisition system, i.e. towed seismic source array and AUV-swarm with contactless multicomponent laser sensors.

    Illustration (courtesy of N. Pavel) of a robotized, contactless, multicomponent acquisition system, i.e. towed seismic source array and AUV-swarm with contactless multicomponent laser sensors.

    Facebook Twitter LinkedIn Email

    Efficiency in geophysical data acquisition may improve radically in the future, because of

    1. the use of multiples in imaging and characterization.
    2. utilizing simultaneous sources.
    3. robotized, modular, and scalable geophysical operations.
    4. survey design updates during a survey.
    5. independent geophysical measurements and analysis at the same time.

    Statoil has developed a contactless multi-component seismic sensor, called Temprei-camera. It applies new types of laser interferometers which can measure seabed particle velocity and position along the survey line while “flying” 2-5 m over a site. By monitoring camera vibrations and reflected laser beams from the sea floor multiple components of particle velocity can be measured. At the moment, the system is based in an autonomous underwater vehicle (AUV) and allows for example arctic ice operations or geo-hazard operations. But the camera could for example also be utilized on land for exploration purposes over challenging topography.
    Because of the contactless measurement of seismic waves, the receiver can be used travelling in an AUV, streamer, plane or any other vehicle. This implies reduced survey costs and calls for a radical change in geophysical data acquisition.
    The system has been successfully tested in a laboratory pool and one field test has been performed. It is the plan is to make the technology available to the market via an external vendor and the first application will be targeting geohazard monitoring utilizing AUVs.
    Learn more about Temprei and the application possibilities at the Recent Advances in Exploration Technology conference.
    711x111 geo365 top banner_NCS

    ReferencesBlacquière, G. and Berkhout, G. [2013] Robotization in Seismic Acquisition, SEG Abstract.Duchesne, M.J. and Pugin, A. [2014] Analysis of P-wave and S-wave Data on Nearsurface Potential Hydrocarbon Indicators, EAGE Shallow Anomalies Workshop.Granli, J.R., Arntsen, B., Sollid, A. and Hilde, E. [1999] Imaging through gas-filled sediments using marine shear-wave data. Geophysics, 64, 3, 668–677.
    Berg, E., Svenning, B., and Martin, J. [1994] Sumic – A New Strategic Tool for Exploration and Reservoir Mapping, 56th Meeting, European Assn. of Exploration Geophysicists.

    Acknowledgement
    We are grateful to Statoil for allowing us to publish the Temprei work and for the important contributions from Eli Aamot (Statoil), Per Sandberg (Statoil), Rolf Helland (Statoil), Peter Hanssen (Statoil), Atle Brendsdal (Statoil), Eiliv Skomedal (Statoil), Eiolf Vikhagen (Optonor), Ra Cleave (Rippletech), Thor Bakke (Sintef) and Kyrre Tjøm (Abyssus)

    Written by Paul Meldahl

    Related Posts

    Øyner muligheter i Mistral

    april 22, 2026

    Sokkeloperatører samler krefter

    april 9, 2026

    Mange år (og fat) gjenstår

    mars 18, 2026
    Add A Comment

    Comments are closed.

    NYHETSBREV
    Abonner på vårt nyhetsbrev
    geo365.no: ledende leverandør av nyheter og kunnskap som vedrører geofaget og geofaglige problemstillinger relatert til norsk samfunnsliv og næringsliv.
    KONFERANSER

    Slik så Norge ut i karbon
    May 07, 2026

    Slik så Norge ut i karbon

    Ny vurdering av det ukjente
    May 05, 2026

    Ny vurdering av det ukjente

    Bekreftet meteorittkrater i Nordsjøen
    Apr 29, 2026

    Bekreftet meteorittkrater i Nordsjøen

    Følbart skjelv rystet Østlandet
    Apr 26, 2026

    Følbart skjelv rystet Østlandet

    Vår første geofysiker
    Apr 23, 2026

    Vår første geofysiker

    United Downs – it is too early to uncork the bottle
    May 08, 2026

    United Downs – it is too early to uncork the bottle

    The frontier well that hit the jackpot in Iraq – at a critical moment in time
    May 07, 2026

    The frontier well that hit the jackpot in Iraq – at a critical moment in time

    Western Pyrenees foothills – the hotspot for natural hydrogen
    May 07, 2026

    Western Pyrenees foothills – the hotspot for natural hydrogen

    Applying Canadian oil industry technology abroad
    May 06, 2026

    Applying Canadian oil industry technology abroad

    Salt of the Earth: Imaging the Gulf’s hidden structures
    May 05, 2026

    Salt of the Earth: Imaging the Gulf’s hidden structures

    OLJEPRIS
    BCOUSD quotes by TradingView
    GULLPRIS
    GOLD quotes by TradingView
    KOBBERPRIS
    Track all markets on TradingView
    GeoPublishing AS

    GeoPublishing AS
    Trollkleiva 23
    N-1389 Heggedal

    Publisher & General Manager

    Ingvild Ryggen Carstens
    ingvild@geopublishing.no
    cell: +47 974 69 090

    Editor in Chief

    Ronny Setså
    ronny@geopublishing.no
    +47 901 08 659

    Media Guide

    Download Media Guide

    ABONNEMENT
    NYHETSBREV
    Abonner på vårt nyhetsbrev
    © 2026 GeoPublishing AS - All rights reserved.

    Type above and press Enter to search. Press Esc to cancel.