Magnitude and frequency of lahars and lahar-runout flows in the Toutle-Cowlitz River system
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Magnitude and frequency of lahars and lahar-runout flows in the Toutle-Cowlitz River system

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Published by Dept. of the Interior, U.S. Geological Survey, For sale by the Books and Open-File Reports Section in [Reston, Va.?], Denver, CO .
Written in English

Subjects:

  • Lahars -- Washington (State) -- Toutle River Watershed.,
  • Lahars -- Washington (State) -- Cowlitz River Watershed.,
  • Sediments (Geology) -- Washington (State) -- Toutle River Watershed.,
  • Sediments (Geology) -- Washington (State) -- Cowlitz River Watershed.

Book details:

Edition Notes

Other titlesLahars and lahar-runout flows in the Toutle-Cowlitz River system, Mount St. Helens, Washington.
Statementby Kevin M. Scott.
SeriesU.S. Geological Survey professional paper -- 1447.
ContributionsGeological Survey (U.S.)
The Physical Object
Paginationv. :
ID Numbers
Open LibraryOL18049879M
LC Control Number86600198

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Get this from a library! Lahars and lahar-runout flows in the Toutle-Cowlitz river system, Mount St. Helens, Washington--magnitude and frequency. [Kevin M Scott]. _____ b, Origins, behavior, and sedimentology of lahars and lahar-runout flows in the Toutle-Cowlitz River system: U.S. Geological Survey Professional Paper —A, 76 p. _____ , Magnitude and frequency of lahars and lahar-runout flows in the Toutle-Cowlitz River system: U.S. Geological Survey Professional Papar B, 33 p. Magnitude and frequency of lahars and lahar-runout flows in the Toutle-Cowlitz River System Toutle River system should be designed for lahars, as well as floods, of a particular frequency Author: Markus Stoffel. Scott KM () Magnitude and frequency of lahars and lahar runout flows in the Toutle-Cowlitz River system. U.S. Geological Survey Open-file Report 90–, p Google Scholar Staley DM, Wasklewicz TA () The use of airborne laser swath mapping on fans and cones: an example from the Colorado Front Range.

Scott, K.M. () Magnitude and Frequency of Lahars and Lahar-runout Flows in the Toutle-Cowlitz River System (USGS Professional Paper . Magnitude and Frequency of Lahars and Lahar-Runout Flows in the Toutle-Cowlitz River System, US Geological Survey Professional Paper no. B. Washington, DC, US Government Printing Office Scott, W. E. a. Email your librarian or administrator to recommend adding this book to your organisation's collection. Landslides. Edited Frequency and magnitude of debris flows on Cheekye River, British Columbia Behaviour and Sedimentology of Lahars and Lahar-Runout Flows in the Toutle–Cowlitz River System. US Geological Survey, Paper It filled valleys of the White River system north and northeast of Mount Rainier to depths of more than m, flowed northward and westward more than km, covered more than km2 of the.

The confluence of the lahars in the Vascún River (for the following the confluence point) is almost simultaneous in the latter scenario because of the similar distance between the triggering points and the confluence point. Scott, K. M.: Magnitude and frequency of lahars and lahar-runout flows in the Toutle-Cowlitz River system, US. Lahars and lahar-runout flows in the Toutle-Cowlitz River system, Moun Kevin M. Scott Magnitude and frequency of lahars and lahar-runout flows in the Toutle Kevin M. Scott Not in Library. Kevin M. Scott, 3 books Randal L. Dinehart, 1 book Lawrence Jay Wasserman, 1 book Andrew Simon, 1 book United States. INTRODUCTION. World paper consumption was about million tons in / and raised above million tons in the year and is expected to million tons in view of the storage of conventional raw materials for pulping and the increasing demand for paper products worldwide, non-woody plants and agricultural residues attracted renewed interest. The hillslope drainage system consists mainly of gullies and channels up to orders of three (Pareschi et al., Initiation and flow behavior of the Pine Creek and Muddy River lahars, Mt. St. Helens, Washington: Magnitude and frequency of lahars and lahar-runout flows in the Toutle-Cowlitz River System: U. S. Geological Survey.