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Erosion over time on severely disturbed granitic soils : a model

Author: Walter F Megahan; United States. Department of Agriculture.; Intermountain Forest and Range Experiment Station (Ogden, Utah),; United States. Forest Service,
Publisher: Ogden, Utah : Intermountain Forest & Range Experiment Station, Forest Service, U.S. Dept. of Agriculture, [1974]
Series: USDA Forest Service research paper INT, 156.
Edition/Format:   Print book : National government publication : EnglishView all editions and formats
Summary:
"A negative exponential equation containing three parameters was derived to describe time trends in surface erosion on severely disturbed soils. Data from four different studies of surface erosion on roads constructed from the granitic materials found in the Idaho Batholith were used to develop equation parameters. The evidence suggests that surface "armoring" was the dominant factor causing the time trends in  Read more...
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Additional Physical Format: Online version:
Megahan, Walter F.
Erosion over time on severely disturbed granitic soils.
(OCoLC)681149819
Material Type: Government publication, National government publication, Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Walter F Megahan; United States. Department of Agriculture.; Intermountain Forest and Range Experiment Station (Ogden, Utah),; United States. Forest Service,
OCLC Number: 1540449
Notes: "September 1974."
Format not distributed to depository libraries.
Description: 14 pages : illustrations, map ; 27 cm.
Series Title: USDA Forest Service research paper INT, 156.
Responsibility: W.F. Megahan.

Abstract:

"A negative exponential equation containing three parameters was derived to describe time trends in surface erosion on severely disturbed soils. Data from four different studies of surface erosion on roads constructed from the granitic materials found in the Idaho Batholith were used to develop equation parameters. The evidence suggests that surface "armoring" was the dominant factor causing the time trends in surface erosion. The significance of time trends in surface erosion is discussed."

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Primary Entity

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