Connect with us

Uncategorized

Sensing whales, storms, ships and earthquakes using arctic fiber optic cable

Sensing whales, storms, ships and earthquakes using arctic fiber optic cable

 


Howe, BM et al. Ocean acoustic monitoring. In front of me. Do science. 6, 426. https://doi.org/10.3389/fmars.2019.00426 (2019).

Google Scholar article

Molenaar, M. M., Hill, D., Webster, P., Fidan, E. & Birch, B. First downhole application of distributed acoustic sensing for hydraulic fracturing monitoring and diagnosis. SPE drill bit. Full. 27, 32-38. https://doi.org/10.2118/140561-PA (2012).

Google Scholar article

Lindsey, NJ et al. Fiber-optic network observations of earthquake wave fields. Geophysics. Precision. Lett. 44, 11792-11799. https://doi.org/10.1002/2017GLO75722 (2017).

Article ADS Scholar from Google

Josette, b. et al. Dynamic stress determination using fiber-optic cables allows imaging of seismic and structural features. nat. common. 9, 1-11. https://doi.org/10.1038/s41467-018-04860-y (2018).

Article CAS Google Scholar

Ajo Franklin, JP et al. Distributed acoustic sensing using dark fibers for near-surface characterization and broadband seismic event detection. Sciences. Rep 9, 1-14. https://doi.org/10.1038/s41598-018-36675-8 (2019).

Article CAS Google Scholar

Williams, EF et al. Distributed sensing of microseisms and teleseisms with dark submarine fibres. nat. common. 10, 1-11. https://doi.org/10.1038/s41467-019-13262-7 (2019).

Article CAS Google Scholar

Lindsey, NJ, Dawe, TC, Ajo-Franklin, JB Illuminate seafloor faults and ocean dynamics using dark fiber distributed acoustic sensing. Science 366, 1103–1107. https://doi.org/10.1126/science.aay5881 (2019).

Article ADS CAS PubMed Google Scholar

Sladen, A. et al. Distributed sensing of earthquakes and solid-earth interactions in the oceans on seafloor communication cables. nat. common. 10, 5777. https://doi.org/10.1038/s41467-019-13793-z (2019).

Article ADS CAS PubMed PubMed Central Google Scholar

Williams, EF et al. Surface gravitational wave interferometry and ocean current observation using DAS on the ocean floor. J Geoffs. Precision. Oceans 127, e2021JC018375. https://doi.org/10.1029/2021JC018375 (2022).

Article ADS Scholar from Google

Zahn, Z. et al. Sensing of optical polarization-based earthquakes and water waves on transoceanic cables. Science 371, 931–936. https://doi.org/10.1126/science.abe6648 (2021).

Article ADS CAS PubMed Google Scholar

Waagaard, OH et al. Real-time distributed low noise acoustic sensor in 171 km of low-loss fiber. OSA Contin. 4, 688-701. https://doi.org/10.1364/OSAC.408761 (2021).

Article CAS Google Scholar

Rivet, D., de Cacqueray, B., Sladen, A., Roques, A. & Calbris, G. Preliminary vessel detection and trajectory evaluation using distributed acoustic sensing on a fiber-optic communications cable. J. Acost. Akon Corporation. 149, 2615-2627. https://doi.org/10.1121/100004129 (2021).

Article ADS PubMed Google Scholar

Taweesintananon, K., Landrø, M., Brenne, JK & Haukanes, A. Distributed acoustic sensing for near-surface imaging using submarine communications cable: a case study in Trondheimsfjord, Norway. Geophysics 86, B303 – B320. https://doi.org/10.1190/geo2020-0834.1 (2021).

Google Scholar article

Matsumoto, H et al. Detection of hydroacoustic signals on a submarine fiber-optic cable. Sciences. 11, 2797. https://doi.org/10.1038/s41598-021-82093-8 (2021).

Article ADS CAS PubMed PubMed Central Google Scholar

Bouffaut, L. et al. Tapping at the Speed ​​of Light: Distributed Acoustic Sensing of Arctic Baleen Whales. In front of me. Do science. 9, 901348. https://doi.org/10.3389/fmars.2022.901348 (2022).

Google Scholar article

Jones, N.; Searching for calmer seas. Nature 568, 158–161. https://doi.org/10.1038/d41586-019-01098-6 (2019).

Article ADS CAS PubMed Google Scholar

Williams, R et al. Chronic ocean noise and cetacean assemblage models. J. Whale Res. manag. 21, 85-94. https://doi.org/10.47536/jcrm.v21i1.202 (2020).

Google Scholar article

Roman, J. et al. Whales as marine ecosystem engineers. In front of me. Ecol. environment. 12, 377-385. https://doi.org/10.1890/130220 (2014).

Google Scholar article

Pershing, AJ, Christensen, LB, Record, NR, Sherwood, JD, Stetson, BP The effect of whaling on the ocean carbon cycle: why bigger is better. Plus One 5, 1–9. https://doi.org/10.1371/journal.pone.0012444 (2010).

Article CAS Google Scholar

IUCN – SSC Cetacean Specialist Group. State of the World’s Cetaceans (2021). https://iucn-csg.org/status-of-the-worlds-cetaceans/.

Bailey, H et al. Behavioral estimation of blue whale movements in the northeastern Pacific Ocean from state and space model analysis of satellite tracks. exposes to danger. Precision species. 10, 93-106. https://doi.org/10.3354/esr00239 (2010).

Google Scholar article

Thomas, PO, Reeves, R. R. & Brownell, R. L. Jr. The state of the world’s baleen whales. March. mum. Sciences. 32, 682-734. https://doi.org/10.1111/mms.12281 (2016).

Google Scholar article

Grigoli, F. et al. Current challenges in monitoring, characterizing and managing induced earthquakes related to underground industrial activities: a European perspective. Rev. Geovis. 55, 310-340. https://doi.org/10.1002/2016RG000542 (2017).

Article ADS Scholar from Google

Bigg, GR & Hanna, E. Effects and impacts of warming oceans on weather. In: Laffoley, D. & Baxter, JM for Conservation of Nature and Natural Resources (IUCN), Gland, Switzerland, 2016).

Hartog, A. H. Introduction to distributed fiber optic sensors, first edition. (CRC Press, 2017). https://doi.org/10.1201/9781315119014.

Book Scholar on Google

Lin, J., Fang, S., Li, X., Wu, R. & Zheng, H. Seismic observations of ocean waves induced by Cyclone Meiji using scattered microbes recorded in coastal areas. remote sensors. https://doi.org/10.3390/rs10091437 (2018).

Google Scholar article

Munk, WH, Miller, GR, Snodgrass, FE, Barber, NF & Deacon, GER Directional recording of swell from distant storms. Vilos. Across. R. Soc. Lund. Secret. Maths. Phys. Sciences. 255, 505-584. https://doi.org/10.1098/rsta.1963.0011 (1963).

Article ADS Scholar from Google

Mellinger, D.K. & Clark, C.W. Blue whale (balaenoptera musculus) sounds from the North Atlantic. J. Acost. Akon Corporation. 114, 1108–1119. https://doi.org/10.1121/1.1593066 (2003).

Article ADS PubMed Google Scholar

Ou, H., Au, W. W., Van Parijs, S., Oleson, E. M. & Rankin, S. Distinguishing frequency-interfering baleen whale discharge calls with interfering frequencies. J. Acost. Akon Corporation. 137, 3024-3032. https://doi.org/10.1121/1.4919304 (2015).

Article ADS PubMed Google Scholar

Saito, T. & Tsushima, H. Synthesis of ocean floor pressure records including seismic and tsunami wave contributions: towards realistic tests of monitoring systems. J Geoffs. Precision. Solid Earth 121, 8175-8195. https://doi.org/10.1002/2016JB013195 (2016).

Article ADS Scholar from Google

Rørstadbotnen, R. A. et al. Analysis of a local earthquake in the Arctic using a 120 km fiber-optic cable. The 83rd EAGE Annual Conference and Exhibition, Vol. 2022 Proceedings of the Conference, 1-5, https://doi.org/10.3997/2214-4609.202210404 (European Association of Geologists and Engineers, 2022).

Bromirski, PD & Duennebier, FK The near-coast microseism spectrum: climatic relationships between spatiotemporal waves. J Geoffs. Precision. Hard Earth 107, ESE 5-1-20. https://doi.org/10.1029/2001JB000265 (2002).

Google Scholar article

Bash, R.; c. National Hurricane Center Tropical Cyclone Report: Tropical Storm Edward (AL052020). Technical Report, National Oceanic and Atmospheric Administration (2021). https://www.nhc.noaa.gov/data/tcr/AL052020_Edouard.pdf.

Gubato, R.; Hydari, A. Hurricane Bomb Hitting Southern Brazil in 2020. J. Atmos. Sciences. Precision. 3, 8-12. https://doi.org/10.30564/jasr.v3i3.2163 (2020).

Google Scholar article

Khaled, A.; , de Lima, ed. S., Cassalho, F., Miesse, T. & Ferreira, C. Hydrodynamic and wave response during severe storms on the southern Brazilian coast: a real-time forecasting system. Water 12, 3397. https://doi.org/10.3390/w12123397 (2020).

Google Scholar article

Ćirić, J. Weather Warning for the Central Highlands, Northwest Iceland (2020). https://www.icelandreview.com/travel/weather-warning-for-central-highland-northwest-iceland/.

Schoeman, R. P., Patterson-Abrolat, C. & Plön, S. A global review of ship collisions with marine animals. In front of me. Do science. 7, 292. https://doi.org/10.3389/fmars.2020.00292 (2020).

Google Scholar article

Ringrose, PS et al. Carbon dioxide storage in saline aquifers: physical and chemical processes, major limitations and potential for expansion. Annu. Reverend Kim. Biomol. M. 12, 471-494. https://doi.org/10.1146/annurev-chambioeng-093020-091447 (2021).

CAS PubMed Google Scholar Article

Nishimura, T.; et al. Volcanic earthquake source location and subsurface characterization using a fiber-optic cable and a distributed acoustic sensing system. Sciences. 11, 6319. https://doi.org/10.1038/s41598-021-85621-8 (2021).

CAS PubMed Article PubMed Central Google Scholar

Ardhuin, F. & Herbers, THC Noise generation in solid land, ocean, and atmosphere, from interacting nonlinear surface gravitational waves at finite depth. J. Mechanical fluids. 716, 316-348. https://doi.org/10.1017/jfm.2012.548 (2013).

Article ADS Math Scholar from Google

Airy, J. P. The Metropolitan Encyclopedia (1817-1845), Vol. 3 of Mixed Sciences, ch. Tides and Waves (London, 1841).

Craik, A. D. The Origins of the Water Wave Theory. Annu. Mechanical fluid rev. 36, 1–28. https://doi.org/10.1146/annurev.fluid.36.050802.122118 (2004).

Article ADS MathSciNet MATH Google Scholar

Matsumoto, H., Ino, S., Ohamachi, T.; Dynamic response to bottom water pressure due to the 2011 Tohoku earthquake. J. Disaster Res. 7, 468-475. https://doi.org/10.20965/jdr.2012.p0468 (2012).

Google Scholar article

Landrø, M. & Hatchell, P. Normal modes in seismic data: a review. Geophysics 77, W27 – W40. https://doi.org/10.1190/geo2011-0094.1 (2012).

Article ADS Scholar from Google

Sources

1/ https://Google.com/

2/ https://www.nature.com/articles/s41598-022-23606-x

The mention sources can contact us to remove/changing this article

What Are The Main Benefits Of Comparing Car Insurance Quotes Online

LOS ANGELES, CA / ACCESSWIRE / June 24, 2020, / Compare-autoinsurance.Org has launched a new blog post that presents the main benefits of comparing multiple car insurance quotes. For more info and free online quotes, please visit https://compare-autoinsurance.Org/the-advantages-of-comparing-prices-with-car-insurance-quotes-online/ The modern society has numerous technological advantages. One important advantage is the speed at which information is sent and received. With the help of the internet, the shopping habits of many persons have drastically changed. The car insurance industry hasn't remained untouched by these changes. On the internet, drivers can compare insurance prices and find out which sellers have the best offers. View photos The advantages of comparing online car insurance quotes are the following: Online quotes can be obtained from anywhere and at any time. Unlike physical insurance agencies, websites don't have a specific schedule and they are available at any time. Drivers that have busy working schedules, can compare quotes from anywhere and at any time, even at midnight. Multiple choices. Almost all insurance providers, no matter if they are well-known brands or just local insurers, have an online presence. Online quotes will allow policyholders the chance to discover multiple insurance companies and check their prices. Drivers are no longer required to get quotes from just a few known insurance companies. Also, local and regional insurers can provide lower insurance rates for the same services. Accurate insurance estimates. Online quotes can only be accurate if the customers provide accurate and real info about their car models and driving history. Lying about past driving incidents can make the price estimates to be lower, but when dealing with an insurance company lying to them is useless. Usually, insurance companies will do research about a potential customer before granting him coverage. Online quotes can be sorted easily. Although drivers are recommended to not choose a policy just based on its price, drivers can easily sort quotes by insurance price. Using brokerage websites will allow drivers to get quotes from multiple insurers, thus making the comparison faster and easier. For additional info, money-saving tips, and free car insurance quotes, visit https://compare-autoinsurance.Org/ Compare-autoinsurance.Org is an online provider of life, home, health, and auto insurance quotes. This website is unique because it does not simply stick to one kind of insurance provider, but brings the clients the best deals from many different online insurance carriers. In this way, clients have access to offers from multiple carriers all in one place: this website. On this site, customers have access to quotes for insurance plans from various agencies, such as local or nationwide agencies, brand names insurance companies, etc. "Online quotes can easily help drivers obtain better car insurance deals. All they have to do is to complete an online form with accurate and real info, then compare prices", said Russell Rabichev, Marketing Director of Internet Marketing Company. CONTACT: Company Name: Internet Marketing CompanyPerson for contact Name: Gurgu CPhone Number: (818) 359-3898Email: [email protected]: https://compare-autoinsurance.Org/ SOURCE: Compare-autoinsurance.Org View source version on accesswire.Com:https://www.Accesswire.Com/595055/What-Are-The-Main-Benefits-Of-Comparing-Car-Insurance-Quotes-Online View photos

ExBUlletin

to request, modification Contact us at Here or [email protected]