Mission Objectives and Current Status of GOSAT (IBUKI) Japan Aerospace Exploration Agency Yasushi Horikawa

Similar documents
MONITORING OF THE GREENHOUSE GASES FROM SPACE BY GOSAT

GOSAT update. June Prepared by JAXA EORC Presented by David Crisp

GOSAT mission schedule

GOSAT MISSION and SPACECRAFT PARTS REQUIRMENTS

FLUXNET and Remote Sensing Workshop: Towards Upscaling Flux Information from Towers to the Globe

Earth Observations Supporting the Implementation of the SDGs in the Asia Pacific Region. CO2 Monitoring from Space: TanSat and GF-5/GMI Mission Status

Measuring Carbon Dioxide from the A-Train: The OCO-2 Mission

Thermal And Near infrared Sensor for carbon Observation (TANSO) On board the Greenhouse gases Observing SATellite (GOSAT) Research Announcement

Thermal And Near infrared Sensor for carbon Observation (TANSO) onboard the Greenhouse gases Observing SATellite (GOSAT) Research Announcement

Yi Liu TanSat Science Team

Agency Status Reports: JMA and JAXA

Early Results from the NASA Orbiting Carbon Observatory-2 (OCO-2)

JAXA agency report. Masumi MATSUNAGA Satellite Applications and Operations Center(SAOC), JAXA

Contribution to global Earth observation from satellites

JAXA s Contributions to the Climate Change Monitoring

Line Parameters and Forward Calculation for Rertrieving Carbon Dioxide and Methane (CO 2 & CH 4 ) from GOSAT Data

Monitoring CO 2 Sources and Sinks from Space with the Orbiting Carbon Observatory (OCO)

The Status of NIES GOSAT-2 Project and NIES Satellite Observation Center

Vicarious calibration of GLI by global datasets. Calibration 5th Group Hiroshi Murakami (JAXA EORC)

The Orbiting Carbon Observatory (OCO)

FUTURE PLAN AND RECENT ACTIVITIES FOR THE JAPANESE FOLLOW-ON GEOSTATIONARY METEOROLOGICAL SATELLITE HIMAWARI-8/9

Satellite-borne greenhouse gas retrievals in the Arctic: ongoing research at the FMI

Difference between forward- and backwardlooking bands of GOSAT-2 CAI-2 cloud discrimination used with Terra MISR data

Eyja volcanic ash retrievals by using MODIS data

Long-Term Time Series of Water Vapour Total Columns from GOME, SCIAMACHY and GOME-2

GCOM-C/SGLI and its Lunar Calibration

Emission Limb sounders (MIPAS)

*C. Pan 1, F. Weng 2, T. Beck 2 and S. Ding 3

Multi-Year Comparison of Carbon Dioxide from Satellite Data with Ground-Based FTS Measurements ( )

Pre-Launch Characterization and In-orbit Calibration of GCOM-C/SGLI

Bugs in JRA-55 snow depth analysis

The Copernicus Sentinel-5 Mission: Daily Global Data for Air Quality, Climate and Stratospheric Ozone Applications

Comparison of Results Between the Miniature FASat-Bravo Ozone Mapping Detector (OMAD) and NASA s Total Ozone Mapping Spectrometer (TOMS)

Satellite Observations of Greenhouse Gases

GCOM-C SGLI calibration and characterization. Hiroshi Murakami JAXA/EORC Satellite instrument pre- and post-launch calibration

CATS GSFC TEAM Matt McGill, John Yorks, Stan Scott, Stephen Palm, Dennis Hlavka, William Hart, Ed Nowottnick, Patrick Selmer, Andrew Kupchock

Joint Polar Satellite System. 3 rd Post-EPS User Consultation Workshop Mike Haas

Related missions and programs for Snowfall and Snow Hydrology of JAXA

Sensitivity Analysis of Fourier Transformation Spectrometer: FTS Against Observation Noise on Retrievals of Carbon Dioxide and Methane

Observing CO 2 from a highly elliptical orbit for studies of the carbon cycle in the Arctic and boreal regions

Status of the Sentinel-5 Precursor Presented by C. Zehner S5p, S4, and S5 Missions Manager - ESA

Lab Activity: Climate Variables

ExoMars 2016 Mission

History of Earth Radiation Budget Measurements With results from a recent assessment

CORRELATION BETWEEN ATMOSPHERIC COMPOSITION AND VERTICAL STRUCTURE AS MEASURED BY THREE GENERATIONS OF HYPERSPECTRAL SOUNDERS IN SPACE

Keiji Imaoka Earth Observation Research Center (EORC) Japan Aerospace Exploration Agency (JAXA) GSICS/GRWG Meeting Darmstadt, Germany March 25, 2014

SBUV(/2) and SSBUV Solar Irradiance Measurements Matthew DeLand, Richard Cebula, Liang-Kang Huang Science Systems and Applications, Inc.

WHEN IS IT EVER GOING TO RAIN? Table of Average Annual Rainfall and Rainfall For Selected Arizona Cities

APPENDIX 2 OVERVIEW OF THE GLOBAL PRECIPITATION MEASUREMENT (GPM) AND THE TROPICAL RAINFALL MEASURING MISSION (TRMM) 2-1

What are Aerosols? Suspension of very small solid particles or liquid droplets Radii typically in the range of 10nm to

GSICS UV Sub-Group Activities

Angelika Dehn Rob Koopman 10 Years GOME on ERS-2 Workshop

The Ozone Mapping and Profiler Suite (OMPS): From SNPP to JPSS-1

A BIRD S EYE VIEW OF THE CARBON CYCLE. Anna M. Michalak

Comparison of Aura TES Satellite Greenhouse Gas Measurements with HIPPO profiles

A AVHRR NDVI dataset for Svalbard. Stian Solbø, Inge Lauknes, Cecilie Sneberg Grøtteland, Stine Skrunes, Hannah Vickers, Kjell Arild Høgda

Comparison of Results Between the Miniature FASat-Bravo Ozone Mapping Detector (OMAD) and NASA s Total Ozone Mapping Spectrometer (TOMS)

The EarthCARE mission: An active view on aerosols, clouds and radiation

IAA. 1.9: Aerosol-UA - Satellite remote sensing of aerosols in the Earth atmosphere

PHEOS - Weather, Climate, Air Quality

CURRENT STATUS OF OPERATIONAL WIND PRODUCT IN JMA/MSC

P7.7 A CLIMATOLOGICAL STUDY OF CLOUD TO GROUND LIGHTNING STRIKES IN THE VICINITY OF KENNEDY SPACE CENTER, FLORIDA

SCIAMACHY REFLECTANCE AND POLARISATION VALIDATION: SCIAMACHY VERSUS POLDER

Polar Mesospheric Clouds and Cosmic Dust: Three years of SOFIE Measurements

Extension of the targets for the GOSAT SWIR XCO 2 and XCH 4 retrievals

Interannual variation of MODIS NDVI in Lake Taihu and its relation to climate in submerged macrophyte region

Application of Aura/OMI PBL SO 2 product for estimating SO 2 emissions and future enhancements from new satellite missions

Validation of GOME-2 MetopA and MetopB ozone profiles M. Hess 1, W. Steinbrecht 1, L. Kins 1, O. Tuinder 2 1 DWD, 2 KNMI.

TCCON Science Objectives

Monitoring Sand and Dust Storms from Space

Drought in Southeast Colorado

GROUNDBASED FTIR, OZONESONDE AND LIDAR MEASUREMENTS FOR THE VALIDATION OF SCIAMACHY (AOID 331)

Long-term ozone observation in Indonesia. Ninong Komala Indonesian National Institute of Aeronautics and Space (LAPAN)

APPENDIX C OVERVIEW OF THE GLOBAL CHANGE OBSERVATION MISSION (GCOM)

Simulated Radiances for OMI

Will a warmer world change Queensland s rainfall?

Ground-based Validation of spaceborne lidar measurements

AirCore flights at Sodankylä Rigel Kivi, Pauli Heikkinen, Juha Hatakka, Tuomas Laurila, Leif Backman, Jouni Pulliainen (1), Huilin Chen (2, 3)

Observing atmospheric methane from space. Enabling satellite-borne observations of methane in the cloudy atmosphere

Current status and plans of JMA operational wind product

ERBE Geographic Scene and Monthly Snow Data

Carbon Flux Data Assimilation

Comparing aerosol extinctions measured by Stratospheric Aerosol and Gas Experiment (SAGE) II and III satellite experiments in 2002 and 2003

3. Carbon Dioxide (CO 2 )

5. In which diagram is the observer experiencing the greatest intensity of insolation? A) B)

Jackson County 2013 Weather Data

MEASURING TRACE GAS PROFILES FROM SPACE

across track scanning microwave radiometer CIS CrIS Fourier transform spectrometer cross-track resolution: 14.0 km vertical resolution: ~ 3.

OVERVIEW OF THE FIRST SATELLITE OF THE GLOBAL CHANGE OBSERVATION MISSION - WATER (GCOM-W1)

Ryan K. Decker * NASA Marshall Space Flight Center, Huntsville, Alabama. Lee Burns Raytheon, Huntsville, Alabama

Status of S-NPP VIIRS Solar and Lunar Calibration

FTS measurements of greenhouse gases over Sodankylä, Finland

Site Report: Lauder, New Zealand

HICO Science Mission Overview

The O 2 A-band Spectrometer on the NASA Orbiting Carbon Observatory-2 (OCO-2)

MODIS and VIIRS Reflective Solar Calibration Update

Changing Hydrology under a Changing Climate for a Coastal Plain Watershed

A Comparative Study and Intercalibration Between OSMI and SeaWiFS

Orbit Design Marcelo Suárez. 6th Science Meeting; Seattle, WA, USA July 2010

Inter-tropical Convergence Zone (ITCZ) analysis using AIRWAVE retrievals of TCWV from (A)ATSR series and potential extension of AIRWAVE to SLSTR

Transcription:

Mission Objectives and Current Status of GOSAT (IBUKI) Japan Aerospace Exploration Agency Yasushi Horikawa 1

Background of the Launch of the GOSAT project 1997 Adoption of the Kyoto Protocol 2002 Ratification of Kyoto Protocol - continuation and acceleration of the development of the systematic observation, - escalation in societal concern with the global environment and global warming 2004 IGOS report released - the necessity of the global observation of CO2 and CH4 column density in all seasons with an accuracy of the 1ppm expectation of the observation from space CSTP : Council for Science and Technology Policy - decrease the estimation error of the GHG flux by half - continuation of the observation of the CO2 from space 1999 study initiation of GCOM-A1 - research of atmospheric chemistry - solar occultation 2003 changed to GOSAT - contribution to the applicative environmental administration - nadir observation 2005 beginning of the development of GOSAT 2

Mission Objectives and Targets GOSAT (Greenhouse gases Observing SATellite) Nickname = IBUKI ( Breath in Japanese) (1) To observe CO 2 and CH 4 column density - with relative accuracy of 1% for CO 2 (4ppmv) and 2% for CH 4 (34ppbv) - at 1000km spatial scale in 3 months average - during the Kyoto Protocol's first commitment period (2008 to 2012). (2) To reduce sub-continental scale CO 2 annual flux estimation errors by half -0.54GtC/yr 0.27GtC/yr Picture of GOSAT flight model taken at the launch site 3

TANSO-FTS (Fourier Transform Spectrometer) GOSAT mission instruments TANSO=Thermal And Near infrared Sensor for carbon Observation 2 axis-pointing mirrors (fully redundant) for ground pointing, calibration and IMC Cross Track (+/- 35deg) Along Track (+/- 20 deg) IFOV : 10.5 km scan speed : 4 sec./interferogram observation wavelength region : NIR, SWIR and TIR Spectral Resolution : 0.2 cm-1 TANSO-CAI (Cloud and Aerosol Imager) Bands : 4 (UV, VIS, NIR and SWIR) Band width : 20 nm (90 nm) IFOV : 500 m (1500 m) FOV : 1000 km (750 km) 4

Organization National Institute for Environmental Studies Algorithms development Data processing (L2 or higher) Data use for science Validation Data distribution Ministry of Environment Japan Aerospace Exploration Agency Sensor development Satellite development Launch Satellite operation Data acquisition Data processing (L1) Calibration Data distribution Sensor development Administration 5

Observation Pattern ~160km ~160km Grid Observation specific points Observation Grid Observation Nominal (grid)observation Specific Points Observation 6

GOSAT Operation and Data Distribution schedule 12 1 2 3 4 5 6 Launch Operation schedule 2009 2010 Jan. 23 Initial function check Initial Cal. and Val. 7 8 9 10 11 12 1 2 Nominal operation 2014 1 2 3 ~ Extra Operatio n ~ Critical phase Data Distribution schedule April 10 July 30 Jan./E, 2014 Spectral data to PI April 23 Column density data to PI August 3 Oct. 30 Spectral data to public Feb.18, 2010 Column density data to public 7

Observation Accuracy The relative accuracy of the observation data : about 1 % 100 to 300 samples - in the area of 1000km*1000km and - in 2 months about 0.06 to 0.1 % relative accuracy 8

Observation Results CO2 column averaged dry air mole fraction not observed April May June July August September October November December January February March Under Processing 9

Observation Results CH4 column averaged dry air mole fraction not observed April May June July August September Under Processing October November December January February March 10

Collaboration with ACOS team CO2 column averaged dry air mole fraction Processed by Dorit Hammerling Anna Michalak (University of Michigan) 11

Observation of volcanic eruptions in Iceland and their spreading ash plume 15 April, 2010 * Not actual colors 16 April, 2010 12

Data Distribution - How to get the GOSAT data - Click http://www.gosat.nies.go.jp/index_e.html 13

Data Output Plan of this year 2 3 4 5 6 7 8 9 10 11 12 GOSAT data output plan CO2,CH4 Column density data (monthly average data) CO2, CH4 Column density seasonal change data (1000km square/3 months average) CO2 net flux (sub-continental scale /annual average) proposal of the application of the CO2 and CH4 concentration data from space 14

Conclusion - Up to now, a year s worth of data has been accumulated. - The initial calibration and validation were completed and a 1 % relative accuracy of one observation data was achieved for CO2 and 2 % for CH4. - GOSAT data have several ppm biases and the method to reduce this bias is under research. -When there are other particles, such as the sand over the desert, the result of the retrieval large. We are now considering a method to eliminate the influence of these particles. -From now on, the monthly data will be compared with the data of the same month of the previous years. -We would like see the satellite data utilized for the management of the Earth environment. 15