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Title: SMART Cables for Observing the Global Ocean: Science and Implementation

Journal Article · · Frontiers in Marine Science
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  1. University of Hawaii at Manoa
  2. Michigan State University
  3. LEGOS
  4. University of Victoria
  5. SIN Medida Ltd.
  6. Pacific Tsunami Warning Center
  7. Alcatel Submarine Networks
  8. University of Miami
  9. Pacific Marine Environmental Laboratory, NOAA
  10. Jet Propulsion Laboratory
  11. Ocean Specialists, Inc.
  12. Norwegian Meteorological Institute
  13. DRG Undersea Consulting, Inc.
  14. GHD Consulting
  15. Los Alamos National Lab. (LANL), Los Alamos, NM (United States)
  16. International Telecommunication Union
  17. Free University of Berlin
  18. Thomas Strategies
  19. Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences
  20. ITU/WMO/UNESCO/IOC

The ocean is key to understanding societal threats including climate change, sea level rise, ocean warming, tsunamis, and earthquakes. Because the ocean is difficult and costly to monitor, we lack fundamental data needed to adequately model, understand, and address these threats. One solution is to integrate sensors into future undersea telecommunications cables. This is the mission of the SMART subsea cables initiative (Science Monitoring And Reliable Telecommunications). SMART sensors would “piggyback” on the power and communications infrastructure of a million kilometers of undersea fiber optic cable and thousands of repeaters, creating the potential for seafloor-based global ocean observing at a modest incremental cost. Initial sensors would measure temperature, pressure, and seismic acceleration. The resulting data would address two critical scientific and societal issues: the long-term need for sustained climate-quality data from the under-sampled ocean (e.g., deep ocean temperature, sea level, and circulation), and the near-term need for improvements to global tsunami warning networks. A Joint Task Force (JTF) led by three UN agencies (ITU/WMO/UNESCO-IOC) is working to bring this initiative to fruition. This paper explores the ocean science and early warning improvements available from SMART cable data, and the societal, technological, and financial elements of realizing such a global network. Simulations show that deep ocean temperature and pressure measurements can improve estimates of ocean circulation and heat content, and cable-based pressure and seismic-acceleration sensors can improve tsunami warning times and earthquake parameters. The technology of integrating these sensors into fiber optic cables is discussed, addressing sea and land-based elements plus delivery of real-time open data products to end users. The science and business case for SMART cables is evaluated. SMART cables have been endorsed by major ocean science organizations, and JTF is working with cable suppliers and sponsors, multilateral development banks and end users to incorporate SMART capabilities into future cable projects. By investing now, we can build up a global ocean network of long-lived SMART cable sensors, creating a transformative addition to the Global Ocean Observing System.

Research Organization:
Los Alamos National Laboratory (LANL), Los Alamos, NM (United States)
Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA)
Contributing Organization:
The Joint Task Force for SMART Cables
Grant/Contract Number:
89233218CNA000001
OSTI ID:
1558213
Report Number(s):
LA-UR-18-31124
Journal Information:
Frontiers in Marine Science, Vol. 6; ISSN 2296-7745
Publisher:
Frontiers Research FoundationCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 49 works
Citation information provided by
Web of Science

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Cited By (3)

Advanced tsunami detection and forecasting by radar on unconventional airborne observing platforms journal February 2020
Linear and nonlinear computations of the 1992 Nicaragua earthquake tsunami journal January 1995
Sensors to Increase the Security of Underwater Communication Cables: A Review of Underwater Monitoring Sensors journal January 2020

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