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Rapid Prototyping Candidates: A Langley Perspective

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Title: Rapid Prototyping Candidates: A Langley Perspective


1
  • Rapid Prototyping Candidates A Langley
    Perspective
  • Richard Eckman

2
NASA Strategic Plan (2006)
  • Sub-goal 3A Study Earth from space to advance
    scientific understanding and meet societal needs
  • NASAs Applied Sciences Program will continue the
    Agencys efforts in benchmarking the assimilation
    of NASA research results into policy and
    management decision-support tools that are vital
    for the Nations environment, economy, safety,
    and security.

3
Next Generation Missions
4
Assumptions
  • RPC Experiments must align with agency,
    administration (e.g., CCSP/CCTP, US GEO), and
    international (GEOSS) programs goals
    objectives.
  • Engage researchers with experience in analyzing
    NASA satellite and model products (many partially
    funded by SMD RA program)
  • For next generation missions, must connect with
    instrument science teams for OSSE-generated
    simulated data sets
  • Utilize systems engineering, visualization, and
    analysis expertise in a regional or national
    collaboratory setting

5
Assumptions (contd.)
  • Where appropriate, use current NASA satellite
    products or climatologies to explore suitability
    of next generation products in specific
    application (e.g., TRMM or GPCP for GPM, Aura for
    NPP, JASON for OSTM)
  • Identify and, if possible, engage Decision
    Support Tool owners/agencies at an early stage

6
Biofuel Crop Production Assessment
Potential Partners
EARTH SYSTEM MODELS
RAPID PROTOTYPING VV DECISION SUPPORT TOOLS
  • Climate Models GISS Model E
  • Earth System Climate Change MAP 05, GEOS,
    GMAO Analysis
  • Seasonal Prediction Models NSIPP Analysis
  • Aerosol Transport Models RAQMS, GMAO fvCAM
  • Atmospheric Analysis Projects ISCCP, GPCP
  • Project Columbia (Supercomputing)
  • Crop Production Potential Models (e.g., Ecosys)
  • RFF Haiku Energy Model
  • Assess applicability of spaceborne measurement
    for crop production potential models
  • Use simulated next generation mission datasets to
    assess differences in model predictions of
    precipitation and downwelling solar radiation
  • Interagency Alignment Climate Change Technology
    Program (CCTP), APPC

Predictions
VALUE BENEFITS
  • Global/Regional scale model products
  • Regional differences in precipitation, solar
    radiation wrt climatology
  • 12 18 month seasonal forecasts
  • 10 20 year forecasts
  • Optimize production of biofuel-relevant crops
  • Assess optimal mix of energy sources

EARTH OBSERVATIONS
  • Cloud systems
  • Soil Moisture
  • Tropical/Global Precipitation
  • Total Aerosol Amount
  • Trace gas profiles
  • Land Surface Topography
  • Atmosphere MODIS, SSE, TRMM, AMSR, CALIPSO,
    CloudSat, GPM, Glory, NPP, LDCM, A-Train
  • Land Terrestrial Networks, ARM, SURFRAD

Draft For Discussion Purposes Richard Eckman
4/14/06
Observations
Uncertainty Analysis and Scientific Rigor
Next Generation Missions
7
NASA Spaceborne Measurements To Assess Efficacy
of Carbon Sequestration
Potential Partners
EARTH SYSTEM MODELS
RAPID PROTOTYPING VV DECISION SUPPORT TOOLS
  • Climate Model GISS Model E. Hadley Centre
  • Earth System Climate Change CASA, GEOS
  • Regional Models
  • Project Columbia (Supercomputing)

Predictions
  • CQUEST model
  • MiniCAM model
  • Use simulated data from OCO, Glory to assess
    improvements in earth system and regional models
  • Interagency Alignment Climate Change Technology
    Program (CCTP), Climate Change Science Program
    (CCSP)

VALUE BENEFITS
  • Global/Regional scale model products
  • 12 18 month seasonal forecasts
  • Long-term forecasts
  • Carbon budget models
  • Carbon sequestration assessment, monitoring,
    validation
  • Carbon credits, compliance
  • Policy decisions

EARTH OBSERVATIONS
  • Natural anthropogenic aerosols, black carbon
  • Global CO2
  • CH4, other GHGs
  • Atmosphere Emission databases, ground-based
    measurements, airborne field missions, SSE, AMSR,
    AURA, OCO, Glory
  • Land Terrestrial Networks, Field missions

Draft For Discussion Purposes Richard Eckman
4/14/06
Observations
Uncertainty Analysis and Scientific Rigor
Next Generation Missions
8
Texas Air Quality Study Rapid Synthesis Experiment
Potential Partners
EARTH SYSTEM MODELS
DECISION SUPPORT TOOLS RAPID PROTOTYPING VV
Predictions
  • Regional Models (e.g., RAQMS)
  • Air Quality Forecast Models
  • CMAQ model
  • Assess value of next generation missions in
    contributing to future coordinated experiments
  • Use spaceborne, surface, and airborne
    measurements and model data products for
    verification validation of air quality modeling
    tools used in the Texas state implementation plan

VALUE BENEFITS
  • Regional scale model products for transport
  • Assess regional scale influences on Houston and
    other TX metro areas air quality

EARTH OBSERVATIONS
  • Ozone
  • NO2
  • CO
  • Aerosols
  • Atmosphere OMI, AIRS, TES, MODIS, AURA, CALIPSO,
    NPP, OCO
  • Field Mission INTEX-B / Milagro

Draft For Discussion Purposes Richard Eckman
4/14/06
Observations
Uncertainty Analysis and Scientific Rigor
Next Generation Missions
9
Understanding Ocean Circulation Using NASA
Spaceborne Measurements
Potential Partners
EARTH SYSTEM MODELS
RAPID PROTOTYPING VV DECISION SUPPORT TOOLS
Predictions
  • Climate Models
  • Ocean Models ECCO
  • GPCP
  • NSIPP

VALUE BENEFITS
  • Use TRMM measurements and Global Precipitation
    Climatology Project to simulate GPM measurements
    and assess their utility.
  • Use simulated data from Aquarius, GPM and
    existing measurements of SST, tropical precip. to
    estimate next generation mission contributions to
    water cycle modeling, climate change modeling
  • Water Cycle Models
  • Ocean Circulation
  • Coastal Fisheries
  • Coastal Runoff
  • International Alignment Intergovernmental
    Oceanographic Commission
  • Global/Regional scale model products
  • Precipitation Models
  • Seasonal-long term model products

EARTH OBSERVATIONS
  • Sea Surface Salinity
  • Ocean Winds
  • Sea Surface Temperature
  • Global Precipitation
  • Sea Surface Height
  • Atmosphere AVHRR, TRMM, QuickSCAT, ICESat,
    Aquarius, GPM, OSTM
  • Surface Buoys

Draft For Discussion Purposes Richard Eckman
4/14/06
Observations
Uncertainty Analysis and Scientific Rigor
Next Generation Missions
10
Operational NWP Data Assimilation
EARTH SYSTEM MODELS
RAPID PROTOTYPING VV
  • Aviation Models RUC, WRF RRC, COAMPS
  • Earth System GFS, ECMWF, NOGAPS GMAO Analysis
  • Aerosol Transport Models RAQMS, GMAO fvCAM, CMAQ
  • Atmospheric Analysis Projects

Predictions
  • Assess applicability of spaceborne measurement
    for operational global, mesoscale, micro-scale
    forecast models and nowcast tools for general,
    aviation severe weather, etc.
  • Use simulated next generation mission datasets to
    assess impact weather forecast and nowcast models
  • Global/Regional scale model products
  • Regional differences in precipitation, solar
    radiation
  • 12 18 month seasonal forecasts
  • 10 20 year forecasts

DECISION SUPPORT TOOLS / VALUE BENEFITS
  • NWS WFSOs, NOAA ADDS, NOAA NSSL Severe Wx
    Warnings
  • Assist all users of general and ad hoc weather
    forecasts

EARTH OBSERVATIONS
  • Atmospheric Chemistry
  • Total Aerosol Amount
  • Trace gas profiles
  • Basic State Variables
  • Cloud properties
  • Atmosphere Weather, Chemistry and Aerosol data
    from GOES, NOAA and MODIS imagers and sounders,
    AURA, CALIPSO/Cloudsat, NPP (CrIS, VIIRS), METOP
    (IASI), GOES-R (ABI) and the list goes on
  • Land

Observations
Next Generation Missions
11
Aircraft Emissions
EARTH SYSTEM MODELS
RAPID PROTOTYPING VV
  • Climate Models GISS Model E
  • Earth System Climate Change GMAO Analysis
  • Emission inventory
  • Aerosol Transport Models RAQMS, GMAO fvCAM
  • Air Quality Model

Predictions
  • Assess applicability of spaceborne measurements
    for quantifying environmental impacts from
    enroute and terminal areas operations
  • Use simulated next generation mission datasets to
    assess
  • impact on air quality and climate
  • Impact on cirrus cloud cover
  • Global/Regional scale model products
  • Regional differences in precipitation, solar
    radiation wrt climatology
  • Local air quality forecast
  • 12 18 month seasonal forecasts
  • 10 20 year forecasts

DECISION SUPPORT TOOLS / VALUE BENEFITS
  • Air Quality Models (e.g., CMAQ)
  • Climate Models
  • Assist JPDO planning for Next Generation Air
    Transportation System (NGATS)

EARTH OBSERVATIONS
  • Atmospheric Composition
  • Total Aerosol Amount
  • Basic State Variables
  • Cloud properties
  • Atmospheric Composition and Climate OMI, TES,
    NPP, GPM, Glory, Data from Geostationary orbit
  • Cloud CALIPSO, CloudSat
  • Land land-use data will drive regional
    emission inventory

Observations
Next Generation Missions
12
Conclusions
  • Utilize RA expertise of researchers (NASA
    centers, academia) to brainstorm, design,
    initiate RPC experiments in collaboration with
    research, engineering, visualization, and
    computation expertise of other partners (e.g.,
    SSC, MRC, PNWRC, IAGT, )
  • Connect with next generation mission science
    teams for OSSE-produced simulated data sets. Need
    facility responsible for maintaining this
    collaboration.
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