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1. El Nino: Centralized Access to Widely Distributed Information About El Nino Southern Oscillation (ENSO) [NOAA_PMEL_ENSO]
The El Nino Theme Page is a focused resource of information related to the El Nino Southern Oscillation (ENSO) phenomenon. It links to widely distributed information related to El Nino, ...


2. PacIOOS Wave Buoy 098: Mokapu Point, Oahu, Hawaii [cdip098]
Wave buoy 098 measures wave height, wave direction, wave period, and water temperature in the vicinity of Mokapu Point on the windward (eastern) coast of Oahu in the state of Hawaii. Data are transmitted ...


3. PacIOOS Wave Buoy 106: Waimea Bay, Oahu, Hawaii [cdip106]
Wave buoy 106 measures wave height, wave direction, wave period, and water temperature in the vicinity of Waimea Bay on the North Shore of Oahu in the state of Hawaii. Data are transmitted every half ...


4. PacIOOS Wave Buoy 121: Ipan, Guam [cdip121]
Wave buoy 121 measures wave height, wave direction, wave period, and water temperature in the vicinity of Ipan beach park near the village of Talofofo on the eastern coast of Guam. Data are transmitted ...


5. PacIOOS Wave Buoy 146: Kaumalapau, Lanai, Hawaii [cdip146]
Wave buoy 146 measures wave height, wave direction, wave period, and water temperature in the vicinity of Kaumalapau Harbor on the leeward (western) coast of Lanai in the state of Hawaii. Data are ...


6. PacIOOS Wave Buoy 163: Kalo, Majuro, Marshall Islands [cdip163]
Wave buoy 163 measures wave height, wave direction, wave period, and water temperature in the vicinity of Delap Point on the east shore of Majuro Atoll in the Republic of the Marshall Islands (RMI). ...


7. PacIOOS Wave Buoy 165: Barbers Point, Oahu, Hawaii [cdip165]
Wave buoy 165 measures wave height, wave direction, wave period, and water temperature in the vicinity of Barbers Point on the leeward (western) coast of Oahu in the state of Hawaii. Data are transmitted ...


8. PacIOOS Wave Buoy 187: Pauwela, Maui, Hawaii [cdip187]
Wave buoy 187 measures wave height, wave direction, wave period, and water temperature in the vicinity of Pauwela and Kahului on the North Shore of Maui in the state of Hawaii. Data are transmitted ...


9. PacIOOS Wave Buoy 188: Hilo, Big Island, Hawaii [cdip188]
Wave buoy 188 measures wave height, wave direction, wave period, and water temperature in the vicinity of Hilo Bay on the windward (eastern) coast of Big Island in the state of Hawaii. Data are transmitted ...


10. PacIOOS Wave Buoy 189: Aunuu, American Samoa [cdip189]
Wave buoy 189 measures wave height, wave direction, wave period, and water temperature in the vicinity of Aunuu, a small island off the eastern coast of Tutuila in American Samoa. Data are transmitted ...


11. PacIOOS Wave Buoy 196: Ritidian Point, Guam [cdip196]
Wave buoy 196 measures wave height, wave direction, wave period, and water temperature in the vicinity of Ritidian Point on the north shore of Guam. Data are transmitted every half hour. Moored in ...


12. PacIOOS Wave Buoy 197: Tanapag, Saipan, CNMI [cdip197]
Wave buoy 197 measures wave height, wave direction, wave period, and water temperature in the vicinity of Tanapag on the west shore of Saipan in the Commonwealth of the Northern Mariana Islands (CNMI). ...


13. PacIOOS Wave Buoy 198: Kaneohe Bay, Oahu, Hawaii [cdip198]
Wave buoy 198 measures wave height, wave direction, wave period, and water temperature in the vicinity of Kaneohe Bay on the windward (eastern) coast of Oahu in the state of Hawaii. Data are transmitted ...


14. PacIOOS Wave Buoy 202: Hanalei, Kauai, Hawaii [cdip202]
Wave buoy 202 measures wave height, wave direction, wave period, and water temperature in the vicinity of Hanalei on the North Shore of Kauai in the state of Hawaii. Data are transmitted every half ...


15. Simulating WAves Nearshore (SWAN) Regional Wave Model: Big Island [swan_bigi]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for the Big Island of Hawaii at approximately 1-km resolution. This high-resolution model is utilized ...


16. Simulating WAves Nearshore (SWAN) Regional Wave Model: Guam [swan_guam]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for the island of Guam at approximately 500-m resolution. This high-resolution model is utilized to ...


17. Simulating WAves Nearshore (SWAN) Regional Wave Model: Guam: Apra Harbor [swan_apra]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for Apra Harbor on the island of Guam at approximately 50-m resolution. This high-resolution model is ...


18. Simulating WAves Nearshore (SWAN) Regional Wave Model: Kauai [swan_kauai]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for the Hawaiian islands of Kauai and Niihau at approximately 500-m resolution. This high-resolution ...


19. Simulating WAves Nearshore (SWAN) Regional Wave Model: Maui [swan_maui]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for the Hawaiian islands of Maui County (Maui, Molokai, Lanai, and Kahoolawe) at approximately 1-km ...


20. Simulating WAves Nearshore (SWAN) Regional Wave Model: Oahu [swan_oahu]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for the Hawaiian island of Oahu at approximately 500-m resolution. This high-resolution model is utilized ...


21. Simulating WAves Nearshore (SWAN) Regional Wave Model: Tutuila, American Samoa [swan_tutuila]
Simulating WAves Nearshore (SWAN) regional wave model 7-day output with a 5-day hourly forecast for the island of Tutuila, American Samoa at approximately 500-m resolution. This high-resolution model ...


22. WaveWatch III (WW3) Global Wave Model [ww3_global]
Through a collaborative effort with NOAA/NCEP and NWS Honolulu, the University of Hawaii has implemented a global-scale WaveWatch III (WW3) 7-day model with a 5-day hourly forecast at approximately ...


23. WaveWatch III (WW3) Hawaii Regional Wave Model [ww3_hawaii]
Through a collaborative effort with NOAA/NCEP and NWS Honolulu, the University of Hawaii has implemented a global-scale WaveWatch III (WW3) model, which in turn provides boundary conditions for this ...


24. WaveWatch III (WW3) Mariana Regional Wave Model [ww3_mariana]
Through a collaborative effort with NOAA/NCEP and NWS Honolulu, the University of Hawaii has implemented a global-scale WaveWatch III (WW3) model, which in turn provides boundary conditions for this ...


25. WaveWatch III (WW3) Northwestern Hawaiian Islands (NWHI) Regional Wave Model [ww3_nwhi]
Through a collaborative effort with NOAA/NCEP and NWS Honolulu, the University of Hawaii has implemented a global-scale WaveWatch III (WW3) model, which in turn provides boundary conditions for this ...


26. WaveWatch III (WW3) Samoa Regional Wave Model [ww3_samoa]
Through a collaborative effort with NOAA/NCEP and NWS Honolulu, the University of Hawaii has implemented a global-scale WaveWatch III (WW3) model, which in turn provides boundary conditions for this ...


27. Liquid Robotics Wave Glider: Aa [aa_agg]
Wave gliders provide very detailed information about the physical condition of the waters in which they travel. They are small, unmanned vehicles that can cruise along the ocean surface for several ...


28. Liquid Robotics Wave Glider: Aa2 [aa2_agg]
Wave gliders provide very detailed information about the physical condition of the waters in which they travel. They are small, unmanned vehicles that can cruise along the ocean surface for several ...


29. Liquid Robotics Wave Glider: NC2 [nc2_agg]
Wave gliders provide very detailed information about the physical condition of the waters in which they travel. They are small, unmanned vehicles that can cruise along the ocean surface for several ...


30. Global and North Atlantic Atlas of Monthly Ocean Waves, by Gulev et al. [NCAR_DS541.3]
Monthly 2-degree by 2-degree and 5-degree by 5-degree wave statistics were computed for 1958-1997 (Global Waves) and 1964-1993 (North Atlantic Waves) respectively from COADS shipboard ...


31. MEDS Observed Wave Data [NCAR_DS256.3]
Data from Canadian buoys through Nov. 1998, data from two NOAA buoys now operated by Canada, and data from three Canadian waverider buoys.


32. OSTM/Jason-2 Level-2 Geophysical Data Records [gov.noaa.class.J2-XGDR]
ABSTRACT: OSTM/JASON-2 is a follow-on mission continuing the TOPEX/Poseidon and Jason-1, and is designed to ensure continuity of high quality measurements for ocean science and to provide operational ...


33. Deep-Ocean Assessment and Reporting of Tsunamis (DART(R)) [gov.noaa.ngdc.G10068]   CHILD DIFs
As part of the U.S. National Tsunami Hazard Mitigation Program (NTHMP), the Deep Ocean Assessment and Reporting of Tsunamis (DART(R)) Project is an ongoing effort to maintain and improve the capability ...


34. TOPEX ALTIMETER GEOPHYSICAL DATA RECORD [PODAAC-TPGDR-BIN0A]
The TOPEX/POSEIDON GDR (Geophysical Data Record) contains global coverage altimeter data. The objective of the TOPEX/POSEIDON mission, launched in August 1992, is to determine ocean topography with ...


35. JASON-1_L2_OST_Sensory_Geophysical_Data_Record_VER-C_BINARY [PODAAC-J1SDR-BIN0C]
The Jason-1 binary Sensory Geophysical Data Record (SGDR) contains all the same parameters as the binary GDR but also contains the waveforms measured at 20 Hz. The waveforms are needed for retracking ...


36. JASON-1_L2_OST_Sensory_Geophysical_Data_Record_VER-C_BINARY Geodetic [PODAAC-J1SDR-BIG0C]
The Jason-1 binary Sensory Geophysical Data Record (SGDR) from the Geodetic mission contains all the same parameters as the binary GDR but also contains the waveforms measured at 20 Hz. The waveforms ...


37. Jason-1 Altimeter Geophysical Data Record (GDR) NetCDF [PODAAC-J1GDR-NETCC]
The Jason-1 Geophysical Data Records (GDR) contain full accuracy altimeter data, with a high precision orbit (accuracy ~2.5 cm), provided approximately 35 days after data collection. The instruments ...


38. Jason-1 Altimeter Geophysical Data Record (GDR) NetCDF Ver C Geodetic [PODAAC-J1GDR-NETGC]
The Jason-1 Geophysical Data Records (GDR) Geodetic Mission contain full accuracy altimeter data, with a high precision orbit, provided approximately 35 days after data collection. The data are sorted ...


39. Jason-1 Altimeter Interim Geophysical Data Record (IGDR) [PODAAC-J1IGD-BIN00]
The Jason-1 Interim Geophysical Data Record (IGDR) contain full accuracy altimeter data, with the exception of an interim orbit (accuracy less than 4 cm), provided within 3 days of data collection. ...


40. Jason-1 Altimeter Interim Geophysical Data Record (IGDR) NetCDF [PODAAC-J1IGD-NETC0]
The Interim Geophysical Data Record (IGDR) dataset contain full accuracy altimeter data, with the exception of an interim orbit (accuracy less than 4 cm), provided within 3 days of data collection. ...


41. Jason-1 Altimeter Operational Sensor Data Record (OSDR) [PODAAC-J1OSD-BIN00]
The Jason-1 Operational Sensor Data Record (OSDR) is a Near Real Time (NRT) wind/wave oriented dataset, dedicated to meteorological users. It is generated using the science operational data from POSEIDON-2, ...


42. Jason-1 Altimeter Sensor Interim Geophysical Data Record (SIGDR) NetCDF [PODAAC-J1SIR-NETC0]
The SIGDR is a Sensor Intermediate Geophysical Data Record from Jason-1. Data are available within a 3-5 day lag from measurement. The instruments on Jason-1 make direct observations of the following ...


43. Jason-1 Geophysical Data Record (GDR) Sea Surface Height Anomaly (SSHA) NetCDF [PODAAC-J1SHA-NETCC]
These Sea Surface Height Anomalies (SSHA) are derived from the Jason-1 Geophysical Data Record (GDR). Jason-1 is an altimetric mission whose instruments make direct observations of the following quantities: ...


44. Jason-1 Geophysical Data Record (GDR) Sea Surface Height Anomaly (SSHA) NetCDF Version C Geodetic [PODAAC-J1SHA-NETGC]
These Sea Surface Height Anomalies (SSHA) are derived from the Jason-1 Geophysical Data Record (GDR) Geodetic Mission. Jason-1 is an altimetric mission whose instruments make direct observations of ...


45. Jason-1 Interim Geophysical Data Record (IGDR) Geodetic Orbit [PODAAC-J1IGD-BINGO]
The Jason-1 Interim Geophysical Data Record (IGDR) from the Geodetic mission contain full accuracy altimeter data, with the exception of an interim orbit (accuracy less than 4 cm), provided within ...


46. Jason-1 Interim Geophysical Data Record (IGDR) NetCDF Geodetic Orbit [PODAAC-J1IGD-NETGO]
The Interim Geophysical Data Record (IGDR) Geodetic mission dataset contain full accuracy altimeter data, with the exception of an interim orbit (accuracy less than 4 cm), provided within 3 days ...


47. Jason-1 Interim Geophysical Data Record (IGDR) Sea Surface Height Anomaly (SSHA) NetCDF [PODAAC-J1IGD-SHAN0]
The Sea Surface Height Anomalies (SSHA) are derived from the Jason-1 IGDR, which has a 3-5 day time lag from measurement and a 10 day repeat. The instruments on Jason-1 make direct observations of ...


48. Jason-1 Interim Geophysical Data Record (IGDR) Sea Surface Height Anomaly (SSHA) NetCDF Geodetic Orbit [PODAAC-J1IGD-SHANG]
The Sea Surface Height Anomalies (SSHA) from the Geodetic mission are derived from the Jason-1 IGDR, which has a 3-5 day time lag from measurement and a 10 day repeat. The instruments on Jason-1 make ...


49. Jason-1 Operational Sensor Data Record (OSDR) Geodetic Orbit [PODAAC-J1OSD-BINGO]
The Jason-1 Operational Sensor Data Record (OSDR) Geodetic Mission is a Near Real Time (NRT) wind/wave oriented dataset, dedicated to meteorological users. Its distribution began May 7, 2012. It ...


50. Jason-1 Sensor Geophysical Data Record (SGDR) NetCDF [PODAAC-J1SDR-NETC0]
The Sensory Geophysical Data Record (SGDR) files contain full accuracy altimeter data, with a high precision orbit (accuracy ~2.5 cm), provided approximately 35 days after data collection. The instruments ...


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