Advancing Earth Surface Representation via Enhanced Use of Earth Observations in Monitoring and Forecasting Applications
The representation of the Earth's surface in global monitoring and forecasting applications is moving towards capturing more of the relevant processes, while maintaining elevated computational efficiency and therefore a moderate complexity. These schemes are developed and continuously improved...
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Language | English |
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MDPI - Multidisciplinary Digital Publishing Institute
2019
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Abstract | The representation of the Earth's surface in global monitoring and forecasting applications is moving towards capturing more of the relevant processes, while maintaining elevated computational efficiency and therefore a moderate complexity. These schemes are developed and continuously improved thanks to well instrumented field-sites that can observe coupled processes occurring at the surface–atmosphere interface (e.g., forest, grassland, cropland areas and diverse climate zones). Approaching global kilometer-scale resolutions, in situ observations alone cannot fulfil the modelling needs, and the use of satellite observation becomes essential to guide modelling innovation and to calibrate and validate new parameterization schemes that can support data assimilation applications. In this book, we review some of the recent contributions, highlighting how satellite data are used to inform Earth surface model development (vegetation state and seasonality, soil moisture conditions, surface temperature and turbulent fluxes, land-use change detection, agricultural indicators and irrigation) when moving towards global km-scale resolutions. |
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AbstractList | The representation of the Earth's surface in global monitoring and forecasting applications is moving towards capturing more of the relevant processes, while maintaining elevated computational efficiency and therefore a moderate complexity. These schemes are developed and continuously improved thanks to well instrumented field-sites that can observe coupled processes occurring at the surface–atmosphere interface (e.g., forest, grassland, cropland areas and diverse climate zones). Approaching global kilometer-scale resolutions, in situ observations alone cannot fulfil the modelling needs, and the use of satellite observation becomes essential to guide modelling innovation and to calibrate and validate new parameterization schemes that can support data assimilation applications. In this book, we review some of the recent contributions, highlighting how satellite data are used to inform Earth surface model development (vegetation state and seasonality, soil moisture conditions, surface temperature and turbulent fluxes, land-use change detection, agricultural indicators and irrigation) when moving towards global km-scale resolutions. |
Author | Ruston, Benjamin Trigo, Isabel F Karbou, Fatima Balsamo, Gianpaolo Escobar, Vanessa M Drusch, Matthias Mecklenburg, Susanne |
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SubjectTerms | absorption coefficient Bayesian bias correction Book Industry Communication BRDF broadband emissivity CDOM Changjiang (Yangtze) estuary direct and inverse methods earth system modelling earth-observations East Africa emissivity GOCI hyperspectral infrared land land-surface model Maqu network MCD43C1 microwave remote sensing MODIS n/a penetration depth Q1-390 QAA inversion radiation rain gauge Reference, information & interdisciplinary subjects representative depth Research & information: general RTTOV satellite data satellite rainfall soil effective temperature soil moisture surface surface parameters surface soil moisture temporal autocorrelation variational retrieval |
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Title | Advancing Earth Surface Representation via Enhanced Use of Earth Observations in Monitoring and Forecasting Applications |
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