Guidelines For The Geologic Evaluation Of Debris Flow Hazards On Alluvial Fans In Utah

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Guidelines for the Geologic Evaluation of Debris-flow Hazards on Alluvial Fans in Utah

Guidelines for the Geologic Evaluation of Debris-flow Hazards on Alluvial Fans in Utah
Author :
Publisher : Utah Geological Survey
Total Pages : 21
Release :
ISBN-10 : 9781557917294
ISBN-13 : 1557917299
Rating : 4/5 (299 Downloads)

Book Synopsis Guidelines for the Geologic Evaluation of Debris-flow Hazards on Alluvial Fans in Utah by : Richard E. Giraud

Download or read book Guidelines for the Geologic Evaluation of Debris-flow Hazards on Alluvial Fans in Utah written by Richard E. Giraud and published by Utah Geological Survey. This book was released on 2005-06 with total page 21 pages. Available in PDF, EPUB and Kindle. Book excerpt: The Utah Geological Survey (UGS) developed these guidelines to help geologists evaluate debris-flow hazards on alluvial fans to ensure safe development. Debris-flow hazard evaluations are particularly important because alluvial fans are the primary sites of debris-flow deposition and are also favored sites for development. The purpose of a debris-flow-hazard evaluation is to characterize the hazard and provide design parameters for risk reduction. The UGS recommends critical facilities and structures for human occupancy not be placed in active debris flow travel and deposition areas unless the risk is reduced to an acceptable level. These guidelines use the characteristics of alluvial fan deposits as well as drainage-basin and feeder-channel sediment-supply conditions to evaluate debris-flow hazards. The hazard evaluation relies on the geomorphology, sedimentology, and stratigraphy of existing alluvial fan deposits. Analysis of alluvial-fan deposits provides the geologic basis for estimating frequency and potential volume of debris flows and describing debris-flow behavior. Drainage-basin and feeder-channel characteristics determine potential debris-flow susceptibility and the volume of stored channel sediment available for sediment bulking in future flows.


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