Experimental Hydraulics: Methods, Instrumentation, Data Processing and Management (ePub)
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A practical guide for the design of laboratory and field experiments, selection of appropriate instrumentation and experimental methodologies, as well as for conducting and analyzing experimental studies. Providing an end-to-end guidance to support experimentalists in the design and collection of the targeted data with prescribed accuracy. Currently, many studies are carried out in laboratories under less than ideal conditions that significantly influence the experimental outcomes (e.g., secondary currents, flume aspect ratio and development length, etc) and with instruments that are not always well tunned to the measurement environment (i.e., adequate temporal and spatial resolution for the flow under investigation). These limitations need to be understood and counteracted with appropriate measures. Practical information on many topics of experimentation presently can only be found in scientific papers or specialized monographs on laboratory practice.
Dr. Jochen Aberle is Professor at the Technische Universität Braunschweig, Germany, and Adjunct Professor at the Norwegian University of Science and Technology. His research expertise includes river morphology, sediment transport, rough bed flows, flow-vegetation-sediment interaction, fluid-structure interaction, and experimental methods in the field and laboratory. Dr. Aberle has published more than 100 articles in peer-reviewed journals and conference proceedings. He is an Associate Editor of the Journal of Hydraulic Research, and was chair of the IAHR Experimental Methods and Instrumentation Committee.
Colin D. Rennie is a Professor of Civil Engineering, at the University of Ottawa, Canada. He has expertise in areas of river morphology and engineering, environmental hydraulics, sediment transport, turbulence, and aquatic habitat. His research focuses on channel morphodynamics and mixing processes, utilizing high-resolution field measurements with acoustic instruments, laboratory physical models, and three-dimensional numerical modelling. He has published 150+ refereed articles, including papers in premiere journals such as Nature. He is an Associate Editor of the Journal of Hydraulic Engineering, and a past-Chair of the IAHR Experimental Methods and Instrumentation Committee.
David M. Admiraal is an Associate Professor in the Civil Engineering Department at the University of Nebraska-Lincoln. His research expertise includes laboratory and field investigations of sediment transport, river hydraulics, and hydraulic structures. Most of his work incorporates experimental modeling. Dr. Admiraal has over 50 journal and conference publications in a wide variety of hydraulic engineering topics. He is actively involved in ASCE's Technical Committee on Hydraulic Measurements and Experimentation and has served as the chair of the committee. He has also acted as co-chair for two conferences on Hydraulic
Marian V. Muste is Research Engineer with the Iowa Institute of Hydroscience and Engineering, and Adjunct Professor in the Department of Civil and Environmental Engineering at the University of Iowa. Dr. Muste's areas of research include experimental river mechanics (laboratory and field investigations), instrumentation development and implementation (image-, acoustic-, and laser-based), uncertainty analysis, and hydroinformatics. He is author or co-author of more than 185 peer-reviewed journal and conference papers and 75 technical reports. Dr. Muste is expert for UNESCO's International Hydrologic Program and World Meteorological Organization Commission for Hydrology projects. He was chair for the Experimental Methods and Instrumentation, and is a former Vice-president of the International Association of Hydro-Environmental Engineering and Research.
- 2017, 448 Seiten, Englisch
- Herausgegeben: Jochen Aberle, Colin Rennie, David Admiraal, Marian Muste
- Verlag: Taylor & Francis
- ISBN-10: 1351658026
- ISBN-13: 9781351658027
- Erscheinungsdatum: 20.07.2017
Abhängig von Bildschirmgröße und eingestellter Schriftgröße kann die Seitenzahl auf Ihrem Lesegerät variieren.
- Dateiformat: ePub
- Größe: 23 MB
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