Colorado Rockfall Simulation Program


Colorado Rockfall Simulation Program (CRSP) The Colorado Geological Survey (CGS) is now handling distribution of the Colorado Rockfall Simulation Program (CRSP). They can be reached at: Colorado Geological Survey 1313 Sherman St. Room 715 Denver, CO 80222 303-866-2611 303-866-2461 (Fax) www.geosurvey.state.co.us. The CGS sells the program as. The Colorado Rockfall Simulation Program (CRSP) was developed to model rockfall behavior and provide a statistical analysis of probable rockfall events at any given site. Colorado rockfall simulation program: Version 3.0 user's manual Timothy J Pfeiffer on Amazon.com.FREE. shipping on qualifying offers.
- Colorado Rockfall Simulation Program (CRSP) analysis was performed to correlate the range of velocities and energies expected from a typical Ohio rockfall with the energy of 40 to 60 kJ that is targeted for the impact tests conducted in this task.
- Colorado Rockfall Simulation Program (CRSP) Please contact Ty Ortiz with the Geohazards Program concerning CRSP. The CGS RockTalk Newsletteralso has additional information concerning rockfall throughout Colorado.
The Colorado Rockfall Simulation Program (CRSP) was devel oped to provide a statistical analysis of probable rockfall behavior at any given site and to be used as a tool to study the behavior of rockfalls, to determine the need for rockfall mitigation, and to aid in the design of rockfall mitigation.
The Colorado Rockfall Simulation Program (CRSP) was developed to provide a statistical analysis of probable rockfall behavior at any given site and to be used as a tool to study the behavior of rockfalls, to determine the need for rockfall mitigation, and to aid in the design of rockfall mitigation. The basic theory behind CRSP is summarized, and the results of recent program modifications and calibration are discussed. CRSP uses numerical input values assigned to slope and rock properties to model rockfall behavior. The model applies equations of gravitational acceleration and conservation of energy to describe the motion of the rock. Empirically derived functions relating velocity, friction, and material properties are used to model the dynamic interaction of the rock and slope. The statistical variation among rockfalls is modeled by randomly varying the angle at which a rock impacts the slope within limits set by rock size and slope irregularities. The program provides estimates of probable velocity and bounce height at various locations on a slope. Experimental verification and calibration of CRSP was conducted by analyzing videotapes of rocks traveling down a slope. A comparison of rock velocity and bounce height obtained from the tapes with CRSP prediction indicates reasonable agreement. Also, an evalution of the sensitivity of input parameters indicates that slope angle and surface roughness are the most important parameters on steep slopes. Design graphs are developed based on CRSP simulations by using surface roughness and slope angle to estimate rock velocity and bounce height on uniform slopes. Backtrack music software free download.
- Record URL:
- http://onlinepubs.trb.org/Onlinepubs/trr/1990/1288/1288-014.pdf
- Record URL:
- https://scholar.google.com/scholar_lookup?title=ROCKFALL+HAZARD+ANALYSIS+USING+THE+COLORADO+ROCKFALL+SIMULATION+PROGRAM&author=T.+Pfeiffer&author=J.+Higgins&publication_year=1990
- Availability:
- Find a library where document is available. Order URL: http://worldcat.org/isbn/0309050642
- Supplemental Notes:
- This paper appears in Transportation Research Record No. 1288, Geotechnical Engineering 1990. Distribution, posting, or copying of this PDF is strictly prohibited without written permission of the Transportation Research Board of the National Academy of Sciences. Unless otherwise indicated, all materials in this PDF are copyrighted by the National Academy of Sciences. Copyright © National Academy of Sciences. All rights reserved
- Authors:
- Pfeiffer, Timothy J
- Higgins, Jerry D
- Publication Date: 1990
Media Info
- Features: Figures; Photos; References; Tables;
- Pagination: p. 117-126
- Monograph Title: Geotechnical engineering 1990 - soils, geology and foundations
- Serial:
- Issue Number: 1288
- Publisher: Transportation Research Board
- ISSN: 0361-1981
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Subject/Index Terms
- TRT Terms: Acceleration (Mechanics); Angularity; Calibration; Design; Dynamics; Elasticity (Mechanics); Energy conservation; Equations; Forecasting; Friction; Gravitation; Hazards; Impact; Properties of materials; Rock mechanics; Rockfalls; Roughness; Simulation; Slopes; Statistical analysis; Traffic mitigation; Velocity; Videotapes
- Uncontrolled Terms: Bounce; Impact angle; Mitigation; Verification
- Old TRIS Terms: Angles, geometry; Gravitational acceleration
- Subject Areas: Data and Information Technology; Design; Energy; Environment; Geotechnology; Highways; Materials; I43: Rock Mechanics;
Filing Info
Computer Simulation Program
- Accession Number: 00607757
- Record Type: Publication
- ISBN: 0309050642
- Files: TRIS, TRB, ATRI
- Created Date: Apr 30 1991 12:00AM