Physical Effects of Vehicular Disturbances on Arid Landscapes

Abstract

Rain simulation experiments conducted in the western Mojave Desert, California, indicate that the use of off-road vehicles on arid lands increases the amount and frequency of water runoff and sheet-wash erosion. Detailed experiments with controlled motorcycle traffic over a loamy sand typical of this region, reveal that these responses are due to a decrease in soil porosity, infiltration capacity, effectiveness of surface stabilizers and hydraulic resistance to overland flow. These effects, which can result even under low vehicle use, tend to be long lived, particularly in arid areas where the slow rates of soil formation render soil loss practically irreversible on a human time scale. Our results suggest that increases in pluvial erosion following ORV use on most slopes are inevitable, but that the magnitudes of those increases are least in areas of low-intensity and duration rains, high natural infiltration rate, low slope and abundant surface sand and gravel. Thus, adverse effects can be minimized by restricting vehicular use to those areas that are naturally least vulnerable or to those that have already been impacted. Moreover, impact can be decreased by avoiding vehicular use where the soil is most susceptible to compaction and structural disruption, as when the soil moisture content is relatively high. (Author)

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Document Details

Document Type
Technical Report
Publication Date
Feb 28, 1981
Accession Number
ADA096706

Entities

People

  • Bern S. Hinckley
  • Bernard Hallet
  • Richard M. Iverson
  • Robert H. Webb

Organizations

  • Stanford University

Tags

Communities of Interest

  • Energy and Power Technologies

DTIC Thesaurus Topics

  • Abstracts
  • Arid Land
  • California
  • Contractors
  • Contracts
  • Earth Sciences
  • Environment
  • Erosion
  • Mechanical Properties
  • Moisture Content
  • Natural Resources
  • Resistance
  • Scientists
  • Soil Science
  • Statistical Analysis
  • Water
  • Water Erosion

Readers

  • Geotechnical Engineering.
  • Mathematics or Statistics
  • Pavement Materials Engineering.