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Variations in Slope Components during Large Magnitude Floods, Wisconsin

Bibliographic Data

ID8377174
AuthorsFrancis J Magilligan (0000-0002-0082-5526, Georgia State University, corresponding author)
Year1988
Volume78
Issue3
Pages520-533
Publication date1988-09-01
Peer ReviewedYes
Open AccessNo
TypeARTICLE
VenueAnnals of the Association of American Geographers (JOURNAL)
Journal identifiersISSN: 0004-5608 • E-ISSN: 1467-8306
PublisherInforma UK Limited (PUBLISHER • GB)
DOI10.1111/j.1467-8306.1988.tb00222.x
OpenAlexW1967755662
LanguageEN
Citations received4
References cited15

Errors are associated with the substitution of map and water surface slopes for energy gradients in hydraulic estimation procedures. Many paleodischarge reconstruction techniques assume one-to-one correspondence between water surface slope and slope measured from a topographic map. The assumption that map slope or water surface slope, however, can be directly substituted for energy slope, involves unknown degrees of error. This research shows that energy gradients are generally overpredicted by both water surface slope (mean = 44 percent) and map slope (mean = 71 percent). At several sites in the Upper Mississippi Valley, the explained variances for the relationship between map slope and water surface slope range from 7–78 percent. Environmental factors that influence the strength of the relationship include the flood-producing mechanism (snowmelt versus convectional precipitation), the storm path through the basin, and the relative synchroneity of response between the tributaries and the trunk stream. The relationship does not systematically improve with increasing relative flood height. The strongest association between these two slope measures occurs during rainstorms distributed fairly uniformly throughout the basin, and when floods attain sufficient stage to minimize the resistance effects of floodplain vegetation and surface irregularities. During other floods, map slopes poorly approximate water surface slopes causing differences in discharge estimation that deviate by 27 percent but may reach 50 percent

Flood myth · Floodplain · Geography · Geomorphology · Geotechnical engineering · Hydrology (agriculture) · Magnitude (astronomy) · Range (aeronautics) · Sediment · Slope stability · Snow · Snowmelt · Storm · Stream power · Surface runoff · Tributary · Vegetation and slope stability · Environmental Science · Flood Risk Assessment and Management · Geology · Hydrology and Sediment Transport Processes · Hydrology and Watershed Management Studies

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Unique citing works4
Citations per year0,11
Citation span1989 - 1998 (10)
Citation velocityhistorical
Highly citedNo
Citation typesNeutral: 3
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