HR: 1340h
AN: S53A-1027 [Abstracts]
TI: The Catalog of Event Data of the Operational Deep-ocean Assessment and Reporting of Tsunamis (DART) Stations at the National Data Buoy Center
AU: * Bouchard, R
EM: richard.bouchard@noaa.gov
AF: NOAA/National Data Buoy Center, 1100 Balch Blvd., Stennis Space Center, MS 39529-
6000, United States
AU: Locke, L
EM: lea.locke@noaa.gov
AF: NOAA/National Data Buoy Center, 1100 Balch Blvd., Stennis Space Center, MS 39529-
6000, United States
AU: Hansen, W
EM: bill.hansen@noaa.gov
AF: NOAA/National Data Buoy Center, 1100 Balch Blvd., Stennis Space Center, MS 39529-
6000, United States
AU: Collins, S
EM: steve.collins@noaa.gov
AF: NOAA/National Data Buoy Center, 1100 Balch Blvd., Stennis Space Center, MS 39529-
6000, United States
AU: McArthur, S
EM: shannon.mcarthur@noaa.gov
AF: NOAA/National Data Buoy Center, 1100 Balch Blvd., Stennis Space Center, MS 39529-
6000, United States
AB:
DART systems are a critical component of the tsunami warning system as they provide the only real-time, in situ,
tsunami detection before landfall. DART systems consist of a surface buoy that serves as a position locater and
communications transceiver and a Bottom Pressure Recorder (BPR) on the seafloor. The BPR records
temperature and pressure at 15-second intervals to a memory card for later retrieval for analysis and use by
tsunami researchers, but the BPRs are normally recovered only once every two years. The DART systems also
transmit subsets of the data, converted to an estimation of the sea surface height, in near real-time for use by the
tsunami warning community. These data are available on NDBC's webpages,
http://www.ndbc.noaa.gov/dart.shtml. Although not of the resolution of the data recorded to the BPR memory card,
the near real-time data have proven to be of value in research applications [1].
Of particular interest are the DART data associated with geophysical events. The DART BPR continuously
compares the measured sea height with a predicted sea-height and when the difference exceeds a threshold
value, the BPR goes into Event Mode. Event Mode provides an extended, more frequent near real-time reporting of
the sea surface heights for tsunami detection. The BPR can go into Event Mode because of geophysical triggers,
such as tsunamis or seismic activity, which may or may not be tsunamigenic. The BPR can also go into Event
Mode during recovery of the BPR as it leaves the seafloor, or when manually triggered by the Tsunami Warning
Centers in advance of an expected tsunami. On occasion, the BPR will go into Event Mode without any associated
tsunami or seismic activity or human intervention and these are considered "False'' Events. Approximately one-
third of all Events can be classified as "False".
NDBC is responsible for the operations, maintenance, and data management of the DART stations. Each DART
station has a webpage with a drop-down list of all Events. NDBC maintains the non-geophysical Events in order
to maintain the continuity of the time series records. In 2007, NDBC compiled all DART Events that occurred while
under NDBC's operational control and made an assessment on their validity. The NDBC analysts performed the
assessment using the characteristics of the data time series, triggering criteria, and associated seismic events.
The compilation and assessments are catalogued in a NDBC technical document. The Catalog also includes a
listing of the one-hour, high-resolution data, retrieved remotely from the BPRs that are not available on the web
pages. The Events are classified by their triggering mechanism and listed by station location and, for those
Events associated with geophysical triggers, they are listed by their associated seismic events. The Catalog
provides researchers with a valuable tool in locating, assessing, and applying near real-time DART data to
tsunami research and will be updated following DART Events. A link to the published Catalog can be found on the
NDBC DART website, http://www.ndbc.noaa.gov/dart.shtml. Reference: [1] Gower, J. and F. González (2006),
U.S. Warning System Detected the Sumatra Tsunami, Eos Trans. AGU, 87(10), 105-112.
UR: http://www.ndbc.noaa.gov/dart.shtml
DE: 4564 Tsunamis and storm surges
DE: 7255 Surface waves and free oscillations
SC: Seismology [S]
MN: 2007 Fall Meeting