Deep-ocean Assessment and Reporting of Tsunamis

A diagram of the Dart II System
A tsunami buoy
Water column height on 11 March 2011 (Tōhoku earthquake and tsunami) at DART buoy 21413, 690 NM Southeast of Tokyo
Plot of measurements from DART buoy 34142 showing the passage of the tsunami generated by the 2010 Chile earthquake. Buoy 34142 is located in the southeastern Pacific Ocean 630 nautical miles (1170 km) southwest of Lima.

Deep-ocean Assessment and Reporting of Tsunamis (DART) is a component of an enhanced tsunami warning system.

By logging changes in seafloor temperature and pressure, and transmitting the data via a surface buoy to a ground station by satellite, DART enables instant, accurate tsunami forecasts. In Standard Mode, the system logs the data at 15-minute intervals, and in Event Mode, every 15 seconds. A 2-way communication system allows the ground station to switch DART into Event Mode whenever detailed reports are needed.

Stations

Each DART station consists of a surface buoy and a seafloor bottom pressure recording (BPR) package that detects water pressure changes caused by tsunamis. The surface buoy receives transmitted information from the BPR via an acoustic link and then transmits data to a satellite, which retransmits the data to ground stations for immediate dissemination to NOAA's Tsunami Warning Centers, NOAA's National Data Buoy Center, and NOAA's Pacific Marine Environmental Laboratory (PMEL). The Iridium commercial satellite phone network is used for communication with 31 of the buoys.[1]

When on-board software identifies a possible tsunami, the station leaves standard mode and begins transmitting in event mode. In standard mode, the station reports water temperature and pressure (which are converted to sea-surface height, not unlike a depth gauge or a pressure tide gauge) every 15 minutes. At the start of event mode, the buoy reports measurements every 15 seconds for several minutes, followed by 1-minute averages for 4 hours.[2]

The first-generation DART I stations had one-way communication ability, and relied solely on the software's ability to detect a tsunami to trigger event mode and rapid data transmission. In order to avoid false positives, the detection threshold was set relatively high, presenting the possibility that a tsunami with a low amplitude could fail to trigger the station.

The second-generation DART II is equipped for two-way communication, allowing tsunami forecasters to place the station in event mode in anticipation of a tsunami's arrival.

Deep-ocean Assessment and Reporting of Tsunamis is officially abbreviated and trademarked as DART.[3]

Background

National Oceanic and Atmospheric Administration's NOAA have placed Deep-ocean Assessment and Reporting of Tsunami stations in particular areas, areas with a history of generating large tsunamis, to be completely positive that the detection of tsunamis are to be as fast as possible. The year of 2001 was the completion of the first six tsunami detection buoys placed along the northern Pacific Ocean coast. In 2005 the United States president George W. Bush announced a two-year, $3.5 million, plan to install tsunami detecting buoys in the Atlantic and the Caribbean ocean in order to expand the nation's capabilities to detect tsunamis. With the Pacific Ocean creating 85 percent of the world's tsunamis[4] , the majority of new tsunami detecting buoy equipment will be installed around the pacific rim, while only seven buoys will be placed along the Atlantic and Caribbean coast because even though tsunamis are rare in the Atlantic, there have been records of deadly tsunamis being reported in the Atlantic. Roughly $13.8 million of the governments funding was used to procure and install exactly 32 pressure sensors on the ocean bottom to detect tsunamis and collect data such as the height and speed of the approaching tsunami. This proposed system, stated by the John H. Marburger the White House's Office of Science and Technology Policy, should provide the United States' Tsunami Warning Centers with nearly one hundred percent coverage for any approaching tsunamis as well as decline all false alarms to just about zero.[4] During all these improvements and upgrades of the current system, roughly three fourths of the tsunami warnings were discovered to be unnecessary and a waste of money. A few years later in 2008 there are now roughly 40 tsunami detection buoys placed in the Pacific Ocean by NOAA. The upgraded DART buoys were originally developed to maintain but to mostly improve the timing of detection of a tsunami. With an improved detection time for tsunamis, that is more time to save lives, warning guidance and international coordination.

History

The DART buoy technology was developed at PMEL,[5] with the first prototype deployed off the coast of Oregon in 1995. In 2004, the DART® stations were transitioned from research at PMEL to operational service at the National Data Buoy Center (NDBC), and PMEL and NDBC received the Department of Commerce Gold Medal "for the creation and use of a new moored buoy system to provide accurate and timely warning information on tsunamis".[6]

In the wake of the 2004 Indian Ocean earthquake and its subsequent tsunamis, plans were announced to deploy an additional 32 DART II buoys around the world.[7] These would include stations in the Caribbean and Atlantic Ocean for the first time.

The United States' array was completed in 2008 totaling 39 stations in the Pacific Ocean, Atlantic Ocean, and Caribbean Sea. The international community has also taken an interest in DART buoys and as of 2009 Australia, Chile, Indonesia and Thailand have deployed DART buoys to use as part of each country's tsunami warning system.

Overview

Deep-ocean Assessment and Reporting of Tsunami (DART) buoy systems are made up of three parts. There is a bottom pressure recorder (BPR) anchored to the bottom of the sea floor. A moored surface buoy connects to the bottom pressure recorder via an acoustic transmission link. The link sends data from the anchored pressure recorder to the surface buoy. The surface buoy sends the data by radio to satellites such as the Iridium system. From the satellites, the data travels by radio to the ground, then to the system office by conventional telecommunications.[8]

The surface buoy has a two and a half meter diameter fiberglass disk covered with foam and has a gross displacement of 4000 kg.[9] The mooring line connecting the surface buoy and the pressure recorder is a nineteen millimeter nylon line that has a tensile strength of 7100 kg.[9]

The data sent from the anchored bottom pressure recorder to the surface buoy consists of the temperature and pressure of the surrounding sea water. It retrieves and releases data every 15 seconds to get an average reading of the current weather conditions.[10]

A very stable, long lived, very high resolution pressure sensor is a critical enabling technology for DART's bottom pressure recorder.[11] It is a resonant quartz crystal strain gauge with a bourdon tube force collector. When compensated for temperature, this sensor has a pressure resolution of approximately 1mm of water when measuring pressure at a depth of several kilometers.[12]

Once the data reaches the surface buoy, the pressure data is converted to an average height of the waves surrounding the buoy. The temperature of the surrounding sea water is important to the calculations because temperature affects the water's density, thus the pressure, and therefore the sea temperature is required to accurately measure the height of the ocean swells. Because the swell sizes of the ocean vary constantly, the system has two modes of reporting data, standard mode and event mode.[13] Standard mode is the more common mode. Every 15 minutes, it sends the estimated sea surface height and the time of the measurement.[8]

If the software receives data that is not within the recent data averages, the system automatically switches to event mode. Event mode transmits data every 15 seconds and calculates the average sea surface height and the time when data being recorded every minute. If no further data is received that is not out of the averages being calculated at the time, it switches back to standard mode after four hours.[13] When NOAA released the first six DART buoys, their system only had a one way communication system. It was not until 2005 when the first generation of the DART buoy was upgraded to the second generation of the DART buoy. After 2005 the Dart buoys started using Iridium communication satellites that enabled you to not only retrieve information but to also send information to a DART.[14] The two-way communications between Tsunami Warning Centers and the pressure recorder made it possible to manually set DART buoys in event mode in case of any suspicion of a possible in-coming tsunamis. To make sure communications are always in contact and secure, the DART buoys have two communication systems; two independent and a redundant communication system.[14] With these updated and reliable communicating systems, data can now be sent where it needs to be sent around the world.

See also

References

  1. ^ Iridium tracks tsunami buoys for NOAA
  2. ^ "NDBC – Deep-ocean Assessment and Reporting of Tsunamis (DART®) Description". Archived from the original on 2010-03-06. Retrieved 2010-03-01.
  3. ^ DART website with Patent Licensing Application form
  4. ^ a b (January 15, 2005 Saturday). Tsunami Detection To Expand; More Protection for U.S. Coastal Areas. The Washington Post, Retrieved from www.lexisnexis.com/hottopics/lnacademic
  5. ^ DART development Publications & References, 2011-11-15
  6. ^ Note: The Gold Medal is granted for distinguished contributions and is the highest honorary recognition bestowed by the Department of Commerce. Because so many people contributed to this success, the Gold Medal was presented as an organizational award.
  7. ^ "NOAA News Online (Story 2369)". Archived from the original on 2005-01-19. Retrieved 2005-01-15.
  8. ^ a b (2015). Deep Ocean Tsunami Detection Buoys. Australian Government; Bureau of Meteorology. http://www.bom.gov.au/tsunami/about/detection_buoys.shtml
  9. ^ a b Meinig, C., S.E. Stalin, A.I. Nakamura, H.B. Milburn (2005), Real-Time Deep-Ocean Tsunami Measuring, Monitoring, and Reporting System: The NOAA DART II Description and Disclosure.
  10. ^ Deep-ocean Assessment and Reporting of Tsunamis (DART®) Description. (2011, July 27). Retrieved March 24, 2015, from http://www.ndbc.noaa.gov/dart/dart.shtml Archived 2010-03-06 at the Wayback Machine
  11. ^ Milburn, Hugh. "The NOAA DART II Description and Disclosure" (PDF). noaa.gov. NOAA, U.S. Government. Retrieved 4 April 2020.
  12. ^ Eble, M. C.; Gonzalez, F. I. "Deep-Ocean Bottom Pressure Measurements in the Northeast Pacific" (PDF). noaa.gov. NOAA, U.S. Government. Retrieved 4 April 2020.
  13. ^ a b Deep-ocean Assessment and Reporting of Tsunamis (DART®) Description. (2011, July 27). Retrieved April 21, 2015, from http://www.ndbc.noaa.gov/dart/dart.shtml Archived 2010-03-06 at the Wayback Machine
  14. ^ a b Mungov, G., Eblé, M., & Bouchard, R. (2013). DART Tsunameter Retrospective and Real-Time Data: A Reflection on 10 Years of Processing in Support of Tsunami Research and Operations. Pure & Applied Geophysics, 170(9/10), 1369-1384. doi:10.1007/s00024-012-0477-5

Read other articles:

Nusa Tenggara Timur FlobamoraProvinsiDari atas ke bawah; kiri ke kanan: Komodo, Pulau Padar, Kampung Adat Praijing Sumba, Alat Musik Sasando, Gunung Kelimutu, Tari Caci, dan Pantai Walakiri Sumba Timur. BenderaLambangPetaNegara IndonesiaDasar hukum pendirianUU Nomor 64 Tahun 1958(11 Agustus 1958)[1]Tanggal20 Desember 1958 (umur 65)Ibu kotaKota KupangJumlah satuan pemerintahan Daftar Kabupaten: 21Kota: 1Kecamatan: 309Kelurahan: 327Desa: 3026 Pemerintahan • Gubernu...

 

 

Place de la Concorde dilihat dari Pont de la Concorde, di depan, Obelisk, di belakang, Rue Royale dan Gereja Madeleine, di kiri, Hôtel de Crillon. Place de la Concorde adalah alun-alun di Paris, Prancis. Dan terletak di arondisemen delapan, di timur Champs-Élysées. Sejarah Alun-alun ini didesain oleh Ange-Jacques Gabriel pada tahun 1755 sebagai alun-alun berbentuk oktagon yang dikelilingi oleh parit antara Champs-Élysées di barat dan Tuileries Gardens di timur. Dipenuhi dengan patung dan...

 

 

Stuko dari Istana Borujerdi-ha, 1850-an, Kashan, Iran. Stuko (stucco), adalah material yang terbuat dari tumbukan batu, pasir, dan air. Bahan stuko biasanya ditemukan di situs candi. Pranala luar Stucco Toronto. Anne Grimmer, The Preservation and Repair of Historic Stucco, published by the Technical Preservation Services, Heritage Preservation Services Division, National Park Service [1] Diarsipkan 2012-10-21 di Wayback Machine., and duplicated all over the web About.com article on stucco Dia...

Capital and largest city of Hidalgo, Mexico This article is about the Mexican city. For the Mexican county municipality, see Pachuca Municipality. For mountains, see Pachuca Range. For Autopista Pachuca, see Mexican Federal Highway 85D. For the Mexican American Zoot Suit subculture, see Pachuco. For the Mexican pro football club, see C.F. Pachuca. You can help expand this article with text translated from the corresponding article in Spanish. (December 2013) Click [show] for important tr...

 

 

اتحاد يوغوسلافيا لكرة القدممعلومات عامةالبداية 15 أبريل 1919 الاسم الأصل Фудбалски Савез Југославије (بالصربية) Фудбалски Сојуз на Југославија (بالمقدونية) Фудбалски Савез Југославије (بالمونتنغرية) الرياضة كرة القدم البلد يوغوسلافيا المنظمة الرئيسية الاتحاد الأوروبي لك�...

 

 

For the ghost town in Denton County, see Alton, Texas (ghost town). City in TexasAlton, TexasCityLocation of Alton, TexasCoordinates: 26°17′4″N 98°18′21″W / 26.28444°N 98.30583°W / 26.28444; -98.30583Country United States of AmericaState TexasCountyHidalgoIncorporated1978[1]Area[2] • Total7.31 sq mi (18.94 km2) • Land7.31 sq mi (18.93 km2) • Water0.00 sq mi...

Association football club in East Ayrshire, Scotland, UK Football clubDarvelFull nameDarvel Football ClubNickname(s)The ValeFounded1889GroundRecreation Park, DarvelCapacity2,200 (65 seated)OwnerJohn GallChairmanStephen GilmourManagerTony McInallyLeagueWest of Scotland League Premier Division2022–23West of Scotland League Premier Division, 3rd of 16WebsiteClub website Home colours Away colours Darvel Football Club are a Scottish football club based in the town of Darvel, Ayrshire. Nicknamed ...

 

 

† Человек прямоходящий Научная классификация Домен:ЭукариотыЦарство:ЖивотныеПодцарство:ЭуметазоиБез ранга:Двусторонне-симметричныеБез ранга:ВторичноротыеТип:ХордовыеПодтип:ПозвоночныеИнфратип:ЧелюстноротыеНадкласс:ЧетвероногиеКлада:АмниотыКлада:Синапсиды�...

 

 

ロバート・デ・ニーロRobert De Niro 2011年のデ・ニーロ生年月日 (1943-08-17) 1943年8月17日(80歳)出生地 アメリカ合衆国・ニューヨーク州ニューヨーク市身長 177 cm職業 俳優、映画監督、映画プロデューサージャンル 映画、テレビドラマ活動期間 1963年 -配偶者 ダイアン・アボット(1976年 - 1988年)グレイス・ハイタワー(1997年 - )主な作品 『ミーン・ストリート』(1973年)...

Forum encouraging foreign investment in Russian Far East Far Eastern Economic ForumFormation2015HeadquartersVladivostok, RussiaLocationFar Eastern Federal UniversityRegion served Russian Far EastOrganizerRussian Government, Roscongress FoundationWebsiteforumvostok.ru/en/ Eastern Economic Forum (Russian: Восточный экономический форум or ВЭФ) is an international forum held each year in Vladivostok, Russia, for the purpose of encouraging foreign investment in the Ru...

 

 

Coordinate system whose directions vary in space Lamé coefficients redirects here. Not to be confused with Lamé parameters (solid mechanics). Curvilinear (top), affine (right), and Cartesian (left) coordinates in two-dimensional space In geometry, curvilinear coordinates are a coordinate system for Euclidean space in which the coordinate lines may be curved. These coordinates may be derived from a set of Cartesian coordinates by using a transformation that is locally invertible (a one-to-on...

 

 

Surface waves generated by wind on open water Ocean wave redirects here. For other uses, see Ocean Wave (disambiguation). A man standing next to large ocean waves at Porto Covo, Portugal Video of large waves from Hurricane Marie along the coast of Newport Beach, California In fluid dynamics, a wind wave, or wind-generated water wave, is a surface wave that occurs on the free surface of bodies of water as a result of the wind blowing over the water's surface. The contact distance in the direct...

Neudenaucomune Neudenau – Veduta LocalizzazioneStato Germania Land Baden-Württemberg DistrettoStoccarda CircondarioHeilbronn TerritorioCoordinate49°17′N 9°16′E / 49.283333°N 9.266667°E49.283333; 9.266667 (Neudenau)Coordinate: 49°17′N 9°16′E / 49.283333°N 9.266667°E49.283333; 9.266667 (Neudenau) Altitudine189 m s.l.m. Superficie32,93 km² Abitanti5 179[1] (2006-09-30) Densità157,27 ab./km² Altre info...

 

 

Distretto dell'Innex distretto(DE) Bezirk Inn(RM) District d'En Distretto dell'Inn – VedutaScuol LocalizzazioneStato Svizzera Cantone Canton Grigioni AmministrazioneCapoluogo Scuol Lingue ufficialiromancio, tedesco Data di soppressione2015 TerritorioCoordinatedel capoluogo46°48′00.01″N 10°17′00.01″E / 46.800003°N 10.283335°E46.800003; 10.283335 (Distretto dell'Inn)Coordinate: 46°48′00.01″N 10°17′00.01″E / 46.800003°N 10.2833...

 

 

Universitas Sintuwu MarosoNama lainUNSIMARMotoCerdas, Kreatif, dan ProfesionalJenisPerguruan tinggi swastaDidirikan1986PendiriJ. SantoRektorSuwardhi PantihStaf akademik103 (Januari 2014)Staf administrasi42 (karyawan)Jumlah mahasiswa5238 (2015-1)Sarjana2251 (2015-1)AlamatJl. P. Timor, Poso, Sulawesi Tengah, 94619, IndonesiaSitus webunsimar.ac.id Universitas Sintuwu Maroso, atau umumnya dikenal dengan singkatan UNSIMAR, adalah sebuah perguruan tinggi swasta yang berada di Poso, Sulawesi Tengah,...

Species of bird Trumpeter swan Two trumpeter swans recorded at Rapids Lake Unit, Minnesota Valley NWR, Carver County, Minnesota Conservation status Least Concern  (IUCN 3.1)[1] Apparently Secure  (NatureServe)[2] Scientific classification Domain: Eukaryota Kingdom: Animalia Phylum: Chordata Class: Aves Order: Anseriformes Family: Anatidae Genus: Cygnus Species: C. buccinator Binomial name Cygnus buccinatorRichardson, 1831 Range   Breeding  Ye...

 

 

John Tyler Presiden Amerika Serikat 10Masa jabatan4 April 1841 – 4 Maret 1845Wakil PresidenTidak adaPendahuluWilliam Henry HarrisonPenggantiJames K. PolkWakil Presiden Amerika SerikatMasa jabatan4 Maret 1841 – 4 April 1841PresidenWilliam Henry HarrisonPendahuluRichard Mentor JohnsonPenggantiGeorge DallasGubernur Virginia 23Masa jabatan10 Desember 1825 – 4 Maret1827PendahuluJames PleasantsPenggantiWilliam Branch GilesSenator Amerika Serikat dari Vir...

 

 

Shopping mall in Orlando, Florida, United States This article needs additional citations for verification. Please help improve this article by adding citations to reliable sources. Unsourced material may be challenged and removed.Find sources: The Florida Mall – news · newspapers · books · scholar · JSTOR (September 2011) (Learn how and when to remove this message) The Florida MallOne of the mall's entrancesLocationOrange County, Florida, United State...

Serbian saladSerbian saladTypeSaladPlace of originSerbiaMain ingredientsTomatoes, cucumbers, onions, sunflower oil or olive oil, salt, feferon (variety of hot pepper similar to cayenne pepper) Serbian salad (Serbian: Српска салата / Srpska salata) is a vegetable salad, usually served during summer with roast meat and other dishes.[1] It is made from diced fresh tomatoes, cucumber and onions, usually seasoned with sunflower oil or olive oil, salt and commonly with a variety...

 

 

Beit Elבית אל Asentamiento israelí Beit ElLocalización de Beit El en PalestinaCoordenadas 31°56′31″N 35°13′19″E / 31.942, 35.222Entidad Asentamiento israelí • País  Cisjordania • Gobernación Gobernación de Ramala y Al BirehAlcalde Moshe RosembaumEventos históricos   • Fundación 1977Superficie   • Total 1,53 km² Altitud   • Media 860 m s. n. m.Población (2010)   • Total 5973...