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Published by the American Geophysical Union as part of the Water Science and Application Series, Volume 7. The Deschutes is a "peculiar" dammed river in Oregon. Its dramatic juxtaposition of geology, topography, and climate presents a virtual textbook of landforms and geomorphic processes revealing Quaternary, Holocene, and very recent events of immense magnitude. Along the active volcanism and tectonism, the present riverine landscape reflects this episodic geomorphic history, as remnants of fluviatle features, huge bars and boulders, mantle the landscape. A Peculiar River: Geology, Geomorphology, and Hydrology of the Deschutes River, Oregon tells a fascinating story about a "striking, sometimes intimidating, landscape that serves to question generalities and is a laboratory in which to study special landforms and the processes that produce them."
Published by the American Geophysical Union as part of the Water Science and Application Series, Volume 6.During the past four decades, computer-based mathematical models of watershed hydrology have been widely used for a variety of applications including hydrologic forecasting, hydrologic design, and water resources management. These models are based on general mathematical descriptions of the watershed processes that transform natural forcing (e.g., rainfall over the landscape) into response (e.g., runoff in the rivers). The user of a watershed hydrology model must specify the model parameters before the model is able to properly simulate the watershed behavior.
Published by the American Geophysical Union as part of the Water Science and Application Series, Volume 8. Riparian Vegetation and Fluvial Geomorphology presents important new perspectives for the experimentalist, the field practitioner, the theorist, and the modeler, offering a synthesis of scientific advances along with discussions of unresolved problems and research opportunities. The volume is structured in five sections.
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