Satellite Remote Sensing In Hydrological Data Assimilation

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Satellite Remote Sensing in Hydrological Data Assimilation

Author : Mehdi Khaki
Publisher : Unknown
Page : 292 pages
File Size : 41,8 Mb
Release : 2020
Category : Hydrologic models
ISBN : 3030373762

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Satellite Remote Sensing in Hydrological Data Assimilation by Mehdi Khaki Pdf

This book presents the fundamentals of data assimilation and reviews the application of satellite remote sensing in hydrological data assimilation. Although hydrological models are valuable tools to monitor and understand global and regional water cycles, they are subject to various sources of errors. Satellite remote sensing data provides a great opportunity to improve the performance of models through data assimilation.

Assimilation of Remote Sensing Data into Earth System Models

Author : Jean-Christophe Calvet,Patricia De Rosnay,Stephen G. Penny
Publisher : MDPI
Page : 236 pages
File Size : 47,5 Mb
Release : 2019-11-20
Category : Science
ISBN : 9783039216406

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Assimilation of Remote Sensing Data into Earth System Models by Jean-Christophe Calvet,Patricia De Rosnay,Stephen G. Penny Pdf

In the Earth sciences, a transition is currently occurring in multiple fields towards an integrated Earth system approach, with applications including numerical weather prediction, hydrological forecasting, climate impact studies, ocean dynamics estimation and monitoring, and carbon cycle monitoring. These approaches rely on coupled modeling techniques using Earth system models that account for an increased level of complexity of the processes and interactions between atmosphere, ocean, sea ice, and terrestrial surfaces. A crucial component of Earth system approaches is the development of coupled data assimilation of satellite observations to ensure consistent initialization at the interface between the different subsystems. Going towards strongly coupled data assimilation involving all Earth system components is a subject of active research. A lot of progress is being made in the ocean–atmosphere domain, but also over land. As atmospheric models now tend to address subkilometric scales, assimilating high spatial resolution satellite data in the land surface models used in atmospheric models is critical. This evolution is also challenging for hydrological modeling. This book gathers papers reporting research on various aspects of coupled data assimilation in Earth system models. It includes contributions presenting recent progress in ocean–atmosphere, land–atmosphere, and soil–vegetation data assimilation.

Satellite Remote Sensing in Hydrological Data Assimilation

Author : Mehdi Khaki
Publisher : Springer Nature
Page : 292 pages
File Size : 45,5 Mb
Release : 2020-01-02
Category : Science
ISBN : 9783030373757

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Satellite Remote Sensing in Hydrological Data Assimilation by Mehdi Khaki Pdf

This book presents the fundamentals of data assimilation and reviews the application of satellite remote sensing in hydrological data assimilation. Although hydrological models are valuable tools to monitor and understand global and regional water cycles, they are subject to various sources of errors. Satellite remote sensing data provides a great opportunity to improve the performance of models through data assimilation.

Remote Sensing of the Terrestrial Water Cycle

Author : Venkataraman Lakshmi
Publisher : John Wiley & Sons
Page : 572 pages
File Size : 40,6 Mb
Release : 2014-12-08
Category : Science
ISBN : 9781118872031

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Remote Sensing of the Terrestrial Water Cycle by Venkataraman Lakshmi Pdf

Remote Sensing of the Terrestrial Water Cycle is an outcome of the AGU Chapman Conference held in February 2012. This is a comprehensive volume that examines the use of available remote sensing satellite data as well as data from future missions that can be used to expand our knowledge in quantifying the spatial and temporal variations in the terrestrial water cycle. Volume highlights include: - An in-depth discussion of the global water cycle - Approaches to various problems in climate, weather, hydrology, and agriculture - Applications of satellite remote sensing in measuring precipitation, surface water, snow, soil moisture, groundwater, modeling, and data assimilation - A description of the use of satellite data for accurately estimating and monitoring the components of the hydrological cycle - Discussion of the measurement of multiple geophysical variables and properties over different landscapes on a temporal and a regional scale Remote Sensing of the Terrestrial Water Cycle is a valuable resource for students and research professionals in the hydrology, ecology, atmospheric sciences, geography, and geological sciences communities.

Remote Sensing and Water Resources

Author : A. Cazenave,N. Champollion,J. Benveniste,J. Chen
Publisher : Springer
Page : 337 pages
File Size : 49,8 Mb
Release : 2016-05-04
Category : Science
ISBN : 9783319324494

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Remote Sensing and Water Resources by A. Cazenave,N. Champollion,J. Benveniste,J. Chen Pdf

This book is a collection of overview articles showing how space-based observations, combined with hydrological modeling, have considerably improved our knowledge of the continental water cycle and its sensitivity to climate change. Two main issues are highlighted: (1) the use in combination of space observations for monitoring water storage changes in river basins worldwide, and (2) the use of space data in hydrological modeling either through data assimilation or as external constraints. The water resources aspect is also addressed, as well as the impacts of direct anthropogenic forcing on land hydrology (e.g. ground water depletion, dam building on rivers, crop irrigation, changes in land use and agricultural practices, etc.). Remote sensing observations offer important new information on this important topic as well, which is highly useful for achieving water management objectives.Over the past 15 years, remote sensing techniques have increasingly demonstrated their capability to monitor components of the water balance of large river basins on time scales ranging from months to decades: satellite altimetry routinely monitors water level changes in large rivers, lakes and floodplains. When combined with satellite imagery, this technique can also measure surface water volume variations. Passive and active microwave sensors offer important information on soil moisture (e.g. the SMOS mission) as well as wetlands and snowpack. The GRACE space gravity mission offers, for the first time, the possibility of directly measuring spatio-temporal variations in the total vertically integrated terrestrial water storage. When combined with other space observations (e.g. from satellite altimetry and SMOS) or model estimates of surface waters and soil moisture, space gravity data can effectively measure groundwater storage variations. New satellite missions, planned for the coming years, will complement the constellation of satellites monitoring waters on land. This is particularly the case for the SWOT mission, which is expected to revolutionize land surface hydrology. Previously published in Surveys in Geophysics, Volume 37, No. 2, 2016

Hydrologic Remote Sensing

Author : Yang Hong,Yu Zhang,Sadiq Ibrahim Khan
Publisher : CRC Press
Page : 455 pages
File Size : 41,6 Mb
Release : 2016-10-26
Category : Nature
ISBN : 9781315353326

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Hydrologic Remote Sensing by Yang Hong,Yu Zhang,Sadiq Ibrahim Khan Pdf

Environmental remote sensing plays a critical role in observing key hydrological components such as precipitation, soil moisture, evapotranspiration and total water storage on a global scale. As water security is one of the most critical issues in the world, satellite remote sensing techniques are of particular importance for emerging regions which have inadequate in-situ gauge observations. This book reviews multiple remote sensing observations, the application of remote sensing in hydrological modeling, data assimilation and hydrological capacity building in emerging regions.

Assimilation of Remote Sensing Data into Earth System Models

Author : Jean-Christophe Calvet,Patricia De Rosnay,Stephen G. Penny
Publisher : Unknown
Page : 236 pages
File Size : 46,9 Mb
Release : 2019
Category : Science (General)
ISBN : 3039216414

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Assimilation of Remote Sensing Data into Earth System Models by Jean-Christophe Calvet,Patricia De Rosnay,Stephen G. Penny Pdf

In the Earth sciences, a transition is currently occurring in multiple fields towards an integrated Earth system approach, with applications including numerical weather prediction, hydrological forecasting, climate impact studies, ocean dynamics estimation and monitoring, and carbon cycle monitoring. These approaches rely on coupled modeling techniques using Earth system models that account for an increased level of complexity of the processes and interactions between atmosphere, ocean, sea ice, and terrestrial surfaces. A crucial component of Earth system approaches is the development of coupled data assimilation of satellite observations to ensure consistent initialization at the interface between the different subsystems. Going towards strongly coupled data assimilation involving all Earth system components is a subject of active research. A lot of progress is being made in the ocean-atmosphere domain, but also over land. As atmospheric models now tend to address subkilometric scales, assimilating high spatial resolution satellite data in the land surface models used in atmospheric models is critical. This evolution is also challenging for hydrological modeling. This book gathers papers reporting research on various aspects of coupled data assimilation in Earth system models. It includes contributions presenting recent progress in ocean-atmosphere, land-atmosphere, and soil-vegetation data assimilation.

Remote Sensing in Hydrology and Water Management

Author : Gert A. Schultz,Edwin T. Engman
Publisher : Springer Science & Business Media
Page : 483 pages
File Size : 46,8 Mb
Release : 2012-12-06
Category : Science
ISBN : 9783642595837

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Remote Sensing in Hydrology and Water Management by Gert A. Schultz,Edwin T. Engman Pdf

The book provides comprehensive information on possible applications of remote sensing data for hydrological monitoring and modelling as well as for water management decisions. Mathematical theory is provided only as far as it is necessary for understanding the underlying principles. The book is especially timely because of new programs and sensors that are or will be realised. ESA, NASA, NASDA as well as the Indian and the Brazilian Space Agency have recently launched satellites or developed plans for new sensor systems that will be especially pertinent to hydrology and water management. New techniques are presented whose structure differ from conventional hydrological models due to the nature of remotely sensed data.

Land Surface Observation, Modeling and Data Assimilation

Author : Shunlin Liang
Publisher : World Scientific
Page : 491 pages
File Size : 49,7 Mb
Release : 2013
Category : Science
ISBN : 9789814472616

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Land Surface Observation, Modeling and Data Assimilation by Shunlin Liang Pdf

This book is unique in its ambitious and comprehensive coverage of earth system land surface characterization, from observation and modeling to data assimilation, including recent developments in theory and techniques, and novel application cases. The contributing authors are active research scientists, and many of them are internationally known leading experts in their areas, ensuring that the text is authoritative.This book comprises four parts that are logically connected from data, modeling, data assimilation integrating data and models to applications. Land data assimilation is the key focus of the book, which encompasses both theoretical and applied aspects with various novel methodologies and applications to the water cycle, carbon cycle, crop monitoring, and yield estimation.Readers can benefit from a state-of-the-art presentation of the latest tools and their usage for understanding earth system processes. Discussions in the book present and stimulate new challenges and questions facing today''s earth science and modeling communities.

Remote Sensing in Hydrology and Water Resources Management

Author : Weili Duan,Shreedhar Maskey,Pedro Luiz Borges Chaffe
Publisher : Unknown
Page : 294 pages
File Size : 48,9 Mb
Release : 2021-12-23
Category : Electronic
ISBN : 303652701X

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Remote Sensing in Hydrology and Water Resources Management by Weili Duan,Shreedhar Maskey,Pedro Luiz Borges Chaffe Pdf

Water resources are the most valuable resources of sustainable socio-economic development, which is significantly affected by climate change and human activities. Water resources assessment is an urgent need for implementation of the perfect water resources management, but it is difficult to accurately evaluate the quantity and quality of water resources, especially in arid regions and high-altitude regions with sparse gauged data. This book hosts 24 papers devoted to remote sensing in hydrology and water resources management, which summarizes the recent advancement in remote sensing technology for hydrology analysis such as satellite remote sensing for water resources management, water quality monitoring and evaluation using remote sensing data, remote sensing for detecting the global impact of climate extremes, the use of remote sensing data for improved calibration of hydrological models, and so on. In general, the book will contribute to promote the application of remote sensing technology in water resources.

Land Surface Remote Sensing in Continental Hydrology

Author : Nicolas Baghdadi,Mehrez Zribi
Publisher : Elsevier
Page : 502 pages
File Size : 44,5 Mb
Release : 2016-09-19
Category : Technology & Engineering
ISBN : 9780081011812

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Land Surface Remote Sensing in Continental Hydrology by Nicolas Baghdadi,Mehrez Zribi Pdf

The continental hydrological cycle is one of the least understood components of the climate system. The understanding of the different processes involved is important in the fields of hydrology and meteorology. In this volume the main applications for continental hydrology are presented, including the characterization of the states of continental surfaces (water state, snow cover, etc.) using active and passive remote sensing, monitoring the Antarctic ice sheet and land water surface heights using radar altimetry, the characterization of redistributions of water masses using the GRACE mission, the potential of GNSS-R technology in hydrology, and remote sensing data assimilation in hydrological models. This book, part of a set of six volumes, has been produced by scientists who are internationally renowned in their fields. It is addressed to students (engineers, Masters, PhD) , engineers and scientists, specialists in remote sensing applied to hydrology. Through this pedagogical work, the authors contribute to breaking down the barriers that hinder the use of Earth observation data. Provides clear and concise descriptions of modern remote sensing methods Explores the most current remote sensing techniques with physical aspects of the measurement (theory) and their applications Provides chapters on physical principles, measurement, and data processing for each technique described Describes optical remote sensing technology, including a description of acquisition systems and measurement corrections to be made

Current Operational Applications of Remote Sensing in Hydrology

Author : Albert Rango,A. I. Shalaby
Publisher : Secretariat to World Meteorological Organization
Page : 96 pages
File Size : 42,9 Mb
Release : 1999
Category : Hydrology
ISBN : UCSD:31822023467053

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Current Operational Applications of Remote Sensing in Hydrology by Albert Rango,A. I. Shalaby Pdf

Satellite Remote Sensing for Operational Hydrology

Author : Eric Charles Barrett
Publisher : Routledge
Page : 264 pages
File Size : 51,8 Mb
Release : 1990
Category : Artificial satellites in remote sensing
ISBN : MINN:31951D00627574P

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Satellite Remote Sensing for Operational Hydrology by Eric Charles Barrett Pdf

Traditional means of data gathering are inadequate for present purposes in hydrology and water management. Thus, hydrologists are urgently seeking new ways for supplementing their conventional data supplies. Satellite remote sensing is being explored increasingly as one possible answer to such data acquisition problems, both because of its perceived facility for providing greatly improved space and time coverage of key hydrological observation systems; and because the technologies of data acquisiton, transmission and processing have become more advanced and more capable. Although the use of remote sensing - especially from satellites - is currently less well developed in these contexts than in support of many other Earth resource and environmental sciences, much successful hydrological research has already been based upon satellite data and in limited but important ways satellite data have already begun to be used in water monitoring and management operations.

Remote Sensing in Hydrology

Author : Edwin T. Engman,Robert J. Gurney
Publisher : Springer
Page : 252 pages
File Size : 52,7 Mb
Release : 1991
Category : Science
ISBN : UOM:49015001163097

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Remote Sensing in Hydrology by Edwin T. Engman,Robert J. Gurney Pdf

Information dealing with hydrologic cycle, precipitation, snow hydrology, evapotranspiration, runoff, soil moisture, groundwater, water quality, and water resources management and monitoring

Application of Pattern Recognition and Adaptive DSP Methods for Spatio-temporal Analysis of Satellite Based Hydrological Datasets

Author : Anish Chand Turlapaty
Publisher : Universal-Publishers
Page : 146 pages
File Size : 45,8 Mb
Release : 2010-06-17
Category : Electronic
ISBN : 9781599423364

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Application of Pattern Recognition and Adaptive DSP Methods for Spatio-temporal Analysis of Satellite Based Hydrological Datasets by Anish Chand Turlapaty Pdf

Data assimilation of satellite-based observations of hydrological variables with full numerical physics models can be used to downscale these observations from coarse to high resolution to improve microwave sensor-based soil moisture observations. Moreover, assimilation can also be used to predict related hydrological variables, e.g., precipitation products can be assimilated in a land information system to estimate soil moisture. High quality spatio-temporal observations of these processes are vital for a successful assimilation which in turn needs a detailed analysis and improvement. In this research, pattern recognition and adaptive signal processing methods are developed for the spatio-temporal analysis and enhancement of soil moisture and precipitation datasets. These methods are applied to accomplish the following tasks: (i) a consistency analysis of level-3 soil moisture data from the Advanced Microwave Scanning Radiometer - EOS (AMSR-E) against in-situ soil moisture measurements from the USDA Soil Climate Analysis Network (SCAN). This method performs a consistency assessment of the entire time series in relation to others and provides a spatial distribution of consistency levels. The methodology is based on a combination of wavelet-based feature extraction and oneclass support vector machines (SVM) classifier. Spatial distribution of consistency levels are presented as consistency maps for a region, including the states of Mississippi, Arkansas, and Louisiana. These results are well correlated with the spatial distributions of average soil moisture, and the cumulative counts of dense vegetation; (ii) a modified singular spectral analysis based interpolation scheme is developed and validated on a few geophysical data products including GODAE's high resolution sea surface temperature (GHRSST). This method is later employed to fill the systematic gaps in level-3 AMSR-E soil moisture dataset; (iii) a combination of artificial neural networks and vector space transformation function is used to fuse several high resolution precipitation products (HRPP). The final merged product is statistically superior to any of the individual datasets over a seasonal period. The results have been tested against ground based measurements of rainfall over our study area and average accuracies obtained are 85% in the summer and 55% in the winter 2007.