Multiscale Hydrologic Remote Sensing: Perspectives and Applications

Multiscale Hydrologic Remote Sensing
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Multiscale Hydrologic Remote Sensing: Perspectives and Applications

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Multiscale Hydrologic Remote Sensing: Perspectives and Applications

Toggle navigation Additional Book Information. Description Table of Contents Editor s Bio. Summary Multiscale Hydrologic Remote Sensing: Perspectives and Applications integrates advances in hydrologic science and innovative remote sensing technologies. Contributors address questions such as What are the local, watershed, and regional differences in soil moisture and evapotranspiration when using different measurement methods and models? How can we fit the scenarios of global warming potential and the remote sensing products of snow water equivalent into hydrologic modeling to address the changing flood and drought conditions in a watershed?

How can we fuse the images collected by different satellites to improve the accuracy of predictions at the global scale? Editor s Bio Dr.

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Request an e-inspection copy. Besides traditional calibration of hydrologic model mHM against observed discharge, model parametrization is further constrained by a range of other variables available at different spatial scales: GRACE terrestrial water storage content 1 o resolution , eddy flux data m footprint and ESA soil moisture product 0.

Initial results shows that model parameterization constrained by streamflow only can not be outperformed.

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However, while parameterization based on complementary data sets leads to slight deterioration in streamflow performance, this marginal loss is balanced by improved simulation of other model states and fluxes. This becomes beneficial especially during the forecast applications, for which correct model initialization is crucial. Current computational limitations impose also seriously limitations to exhaustively investigate the parameter space of Land Surface models LSM over large domains e.

Addressing these challenges require holistic approaches that integrate the best techniques available for parameter estimation, sensitivity analysis, and the use of remotely sensed data at their native resolutions.

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Journal of Geophysical Research: Atmospheres , — Support Center Support Center. Continuing to use www. Ground-based observations of vegetation dynamics, photosynthesis, and soil respiration were completed at individual plant, leaf, and stomatal scales. Contributors address questions such as: What are the local, watershed, and regional differences in soil moisture and evapotranspiration evapotranspiration Subject Category: Miscellaneous see more details when using different measurement methods and models? Order By: Top Matches. TASI pushbroom hyperspectral thermal sensor system.

An attempt to systematically address these issues is to combine sophisticated sampling techniques with the multiscale parameterisation technique MPR that links high resolution land surface characteristics with effective model parameters. He was one of the founders of International Society of Environmental Information Management and the former editor-in-chief of the Journal of Environmental Informatics. He is currently an editor, associate editor, or editorial board member of more than 30 international journals.

He has extensively published in journals of remote sensing, hydrology, and hazards and has released several technologies to universities, governmental agencies, and private companies.

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Mar 23, - Multiscale Hydrologic Remote Sensing: Perspectives and Applications integrates advances in hydrologic science and innovative remote. Apr 5, - Multiscale Hydrologic Remote Sensing: Perspectives and Applications integrates advances in hydrologic science and innovative remote.

Description Table of Contents Editor s Bio. Summary Multiscale Hydrologic Remote Sensing: Perspectives and Applications integrates advances in hydrologic science and innovative remote sensing technologies. Contributors address questions such as What are the local, watershed, and regional differences in soil moisture and evapotranspiration when using different measurement methods and models?

How can we fit the scenarios of global warming potential and the remote sensing products of snow water equivalent into hydrologic modeling to address the changing flood and drought conditions in a watershed?