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1. ERS-1 and ERS-2 SAR Data over Canada [CANEMRCCRSERS1]
The European Space Agency ERS-1 satellite was launched on July 17, 1991 with a projected lifespan of two to three years. CCRS began reception of its successor, ERS-2, on July 9, 1995 and is still ...


2. JASON-1_L2_OST_GDR_Ver-C_Binary:1 [JASON-1_L2_OST_GDR_VER-C_BINARY_1]
Jason-1 Geophysical Data Record contains significant wave height and all atmospheric and geophysical parameters and corrections and flags needed to calculate Sea Surface Height and Anomalies. There ...


3. JASON-1_L2_OST_SSHA_Ver-C:1 [JASON-1_L2_OST_SSHA_VER-C_1]
PO.DAAC produced Sea Surface Height anomalies from Jason-1 GDR-C. Data are edited to remove land and erroneous values. SSHA is calculated according to the Jason-1 User's Handbook.


4. PODAAC-AKASA-XOGD1 [ALTIKA_SARAL_L2_OST_XOGDR_1]
These data are the near real time (within 7-9 hours of measurement) sea surface height anomalies (SSHA) and orbits from the AltiKa altimeter onboard SARAL. SARAL is a French/Indian collaborative ...


5. PODAAC-ALESC-J2001 [ALES_L2_OST_JASON2_V1_1]
Adaptive Leading Edge Subwaveform (ALES) provides coastal and open ocean altimetric measurements by applying a specialized retracker to Jason-2 data.


6. PODAAC-GEOS3-AGDRA [GEOS-3_ALT_GDR_1]
This data set consists of Geos-3 altimeter measurements produced by NOAA/NODC/Laboratory for Satellite Altimetry. The data include sea surface heights and supporting information such as sea state, ...


7. PODAAC-J1GDR-BINGC [JASON-1_L2_OST_GDR_VER-C_BINARY_GEODETIC_1]
The Jason-1 Geophysical Data Records (GDR) from the Geodetic mission contain full accuracy altimeter data, with a high precision orbit, provided approximately 35 days after data collection. The instruments ...


8. PODAAC-J1GDR-NETGC [JASON-1_GDR_NETCDF_C_GEODETIC_1]
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 ...


9. PODAAC-J1GPN-NC00E [JASON-1_L2_OST_GPN_E_1]
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 ...


10. PODAAC-J1GPN-NCG0E [JASON-1_L2_OST_GPN_E_GEODETIC_1]
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 ...


11. PODAAC-J1GPR-NC00E [JASON-1_L2_OST_GPR_E_1]
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: ...


12. PODAAC-J1GPR-NCG0E [JASON-1_L2_OST_GPR_E_GEODETIC_1]
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 ...


13. PODAAC-J1GPS-NC00E [JASON-1_L2_OST_GPS_E_1]
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 ...


14. PODAAC-J1GPS-NCG0E [JASON-1_L2_OST_GPS_E_GEODETIC_1]
The Sensory Geophysical Data Record (SGDR) files from the Geodetic Mission contain full accuracy altimeter data, with a high precision orbit, provided approximately 35 days after data collection. ...


15. PODAAC-J1IGD-BINGO [JASON-1_IGDR_GEODETIC_1]
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 ...


16. PODAAC-J1IGD-NETGO [JASON-1_IGDR_NETCDF_GEODETIC_1]
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 ...


17. PODAAC-J1IGD-SHANG [JASON-1_IGDR_SSHA_NETCDF_GEODETIC_1]
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 ...


18. PODAAC-J1NRT-GSHA0 [JASON-1_L2_OST_NRTSSHA_1]
Near real time Sea surface height anomaly calculated with a GPS based orbit derived from cross overs with OSTM/Jason-2. This provides a more accurate orbit than the default DORIS orbit provided in ...


19. PODAAC-J1NRT-GSHAG [JASON-1_L2_OST_NRTSSHA_GEODETIC_1]
These data are from the Jason-1 Geodetic Mission. The Jason-1 Near Real Time (NRT) Sea Surface Height Anomaly (SSHA) dataset contain SSHA that are available within 7 hours time lag of measurement. ...


20. PODAAC-J1OSD-BINGO [JASON-1_OSDR_GEODETIC_1]
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 ...


21. PODAAC-J1SDR-BIG0C [JASON-1_L2_OST_SGDR_VER-C_BINARY_GEODETIC_1]
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 ...


22. PODAAC-J1SDR-BIN0C [JASON-1_L2_OST_SGDR_VER-C_BINARY_1]
Jason-1 Sensory Geophysical Data Record version C binary format contains the same parameters as the GDR and the waveforms


23. PODAAC-J1SDR-NEGC0 [JASON-1_SGDR_NETCDF_C_GEODETIC_1]
Jason-1 Sensor Geophysical Data Record (SGDR) NetCDF Geodetic


24. PODAAC-J1SHA-NETGC [JASON-1_GDR_SSHA_NETCDF_C_GEODETIC_1]
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 ...


25. PODAAC-J1SIR-NETCG [JASON-1_SIGDR_NETCDF_GEODETIC_1]
These data are from the Jason-1 Geodetic mission. The SIGDR is a Sensor Intermediate Geophysical Data Record from Jason-1 Geodetic mission. Data are available within a 3-5 day lag from measurement. ...


26. PODAAC-J2ODR-GPS00 [OSTM_L2_OST_OGDR_GPS_1]
Similar to the OSTM/Jason-2 OGDR, but also includes a GPS based orbit and SSHA calculated from that orbit, as supposed to the DORIS based orbit that is already available in the OGDR. It has a 5 hour ...


27. 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 ...


28. PODAAC-J1GDR-NETCC [JASON-1_GDR_NETCDF_3]
GDR files contain full accuracy altimeter data, with a high precision orbit (accuracy ~2.5 cm), provided approximately 35 days after data collection. The instruments on Jason-1 make direct observations ...


29. PODAAC-J1IGD-BIN00 [JASON-1_IGDR_3]
IGDR files contain full accuracy altimeter data, with the exception of an interim orbit (accuracy < 4 cm), provided within 3 days of data collection. The instruments on Jason-1 make direct observations ...


30. PODAAC-J1IGD-NETC0 [JASON-1_IGDR_NETCDF_3]
IGDR files contain full accuracy altimeter data, with the exception of an interim orbit (accuracy < 4 cm), provided within 3 days of data collection. The instruments on Jason-1 make direct observations ...


31. PODAAC-J1IGD-SHAN0 [JASON-1_IGDR_SSHA_NETCDF_3]
The SSHA are derived from the Jason-1 IGDR. The instruments on Jason-1 make direct observations of the following quantities: altimeter range, significant wave height, ocean radar backscatter cross-section ...


32. PODAAC-J1OSD-BIN00 [JASON-1_OSDR_3]
OSDR files are provided every 2 hours and within 3 hours of data collection. They contain wave height, wind speed and water vapor measurements computed using real-time on-board DORIS/DIODE orbits ...


33. PODAAC-J1SDR-NETC0 [JASON-1_SGDR_NETCDF_3]
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 on Jason-1 make direct observations ...


34. PODAAC-J1SHA-BIN00 [JASON-1_SSHA_3]
The Jason-1 Sea Surface Height Anomaly product is generated from the Jason-1 Geophysical Data Record (J1 GDR). There are 127 orbits per cycle and each orbit has a period of 112 minutes. The ground ...


35. PODAAC-J1SHA-NETCC [JASON-1_GDR_SSHA_NETCDF_3]
The SSHA are derived from the Jason-1 GDR. The instruments on Jason-1 make direct observations of the following quantities: altimeter range, significant wave height, ocean radar backscatter cross-section ...


36. PODAAC-J1SIR-NETC0 [JASON-1_SIGDR_NETCDF_3]
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 on Jason-1 make direct observations ...


37. PODAAC-TPGDR-BIN0A [TOPEX_GDR_1]
Investigators may find the Merged Geophysical Data Records (Product #28), which contains data processed from both altimeters, more useful.


38. U.S. Naval Oceanographic Office (NAVOCEANO)'s European Remote Sensing (ERS-2) satellite daily Sea Surface Height (SSH) retrievals [NAVOCEANO_ERS-2_SSH]
U.S. Naval Oceanographic Office (NAVOCEANO)'s European Remote Sensing Satellite-2 (ERS-2) Sea Surface Height (SSH) daily retrievals.


39. U.S. Naval Oceanographic Office (NAVOCEANO)'s GeoSat Follow-On (GFO) satellite daily Sea Surface Height (SSH) retrievals [NAVOCEANO_GFO_SSH]
U.S. Naval Oceanographic Office (NAVOCEANO)'s GeoSat Follow-On (GFO) Sea Surface Height (SSH) daily retrievals.


40. U.S. Naval Oceanographic Office (NAVOCEANO)'s Jason-1 satellite daily Sea Surface Height (SSH) retrievals [NAVOCEANO_JASON-1_SSH]
U.S. Naval Oceanographic Office (NAVOCEANO)'s Jason-1 Sea Surface Height (SSH) daily retrievals.


41. U.S. Naval Oceanographic Office (NAVOCEANO)'s TOPEX satellite daily Sea Surface Height (SSH) retrievals [NAVOCEANO_TOPEX_SSH]
U.S. Naval Oceanographic Office (NAVOCEANO)'s TOPEX Sea Surface Height (SSH) daily retrievals.


42. U.S. Navy Fleet Numerical Meteorology and Oceanography Center (FNMOC)'s Wave Watch 3 (WW3) [FNMOC_WaveWatchIII]
WAVEWATCH III (Tolman 1997, 1999a) is a third generation wave model developed at NOAA/NCEP in the spirit of the WAM model (WAMDIG 1988, Komen et al. 1994). It is a further development ...


43. European Centre for Medium-Range Weather Forecasts (ECMWF) Operational Wave Data Sets [ECMWF_OPERATIONAL_WAVE]   PARENT METADATA
These data sets contain data at the resolution of the data assimilation and forecast system in operational use at ECMWF. Since the resolution and internal representation of the archive may vary according ...


44. European Centre fro Medium-Range Weather Forecasts (ECMWF) Ensemble Prediction System (EPS) Data Sets [ECMWF_OPER_EPS]   PARENT METADATA
These data sets contain data at the resolution of the ensemble prediction forecast system in operational use at ECMWF. Since the resolution and internal representation of the archive may ...


45. Deep-Ocean Assessment and Reporting of Tsunamis (DART(R)) [gov.noaa.ngdc.G10068]   CHILD METADATA
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 IN WORK effort to maintain and improve the capability ...


46. Martha's Vineyard Coastal Observatory Oceanographic Data [mvco_ocean]
The Woods Hole Oceanographic Institution has built the Martha's Vineyard Coastal Observatory (MVCO) near South Beach in Edgartown, Massachusetts. The project was initiated by scientists ...


47. Weather Observations from NOAA's SEAS Program [SEAS_WEATHER]
Meteorological observations made onboard merchant vessels of the NOAA voluntary observing ships (VOS) program, when transmitted to shore in real-time, are a substantial component of global weather ...


48. JASON 2 experiment: Geophysical products [CNES_http__cnes.fr_ark_68059_467a7851f76cf868d9568f8d85bd664a_IDN]
The JASON-2 project is a response to the international demand for programmes to study and observe oceans and the climate, through a worldwide ocean observation system. It is a continuation to the ...


49. CODAR Real time wave data [ocean9_rutgers]
Coastal Ocean Dynamics Applications Radar(CODAR) Real-Time Sea State Measurements are available online. Data includes: Significant Wave Height Peak Wave Period CODAR is used to measure ...


50. Coastal Ocean Wave and Current (F181) Data from the Atlantic Remote Sensing Land/Ocean Experiment (ARSLOE) (1980) - NODC_F181 [NODC_F181]
This data set contains time series coastal ocean wave and current data collected during the Atlantic Remote Sensing Land/Ocean Experiment (ARSLOE). ARSLOE was sponsored jointly by the Coastal ...


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