Ground Water at Yucca Mountain
How High Can It Rise?
National Research Council author Division on Earth and Life Studies author Board on Radioactive Waste Management author Commission on Geosciences, Environment and Resources author Panel on Coupled Hydrologic/Tectonic/Hydrothermal Systems at Yucca Mountain author
Format:Paperback
Publisher:National Academies Press
Published:1st Feb '92
Currently unavailable, and unfortunately no date known when it will be back
The site of a proposed repository for high-level radioactive waste from the nation's nuclear power plants is not at risk of ground water infiltration, concludes this important book. Yucca Mountain, located about 100 miles northwest of Las Vegas, has been proposed as the site for permanent underground disposal of high-level radioactive waste from the nation's civilian nuclear power plants.
To resolve concerns raised by a Department of Energy (DOE) staff scientist concerning the potential for ground water to rise 1,000 feet to the level proposed for the repository, DOE requested this study to evaluate independently the past history and future potential of large upward excursions of the ground water beneath Yucca Mountain.
Table of Contents- Front Matter
- Executive Summary
- Introduction
- Water Levels in the Vicinity of the Proposed Repository in the ast 100,000 Years
- Might Increased Rainfall Cause Flooding of the Proposed Repository?
- Can an Igneous Intrusion Raise the Water Table to the Proposed Repository Level?
- Could a Nearby Earthquake Cause Flooding of the Proposed Repository?
- Summary of Conclusions and Recommendations
- Appendix A: A Review of the Isotopic Geochemistry of the Yucca Mountain, Nevada, Proposed Nuclear Waste Repository Site
- Appendix B: Yucca Mountain: Ground-Water Flow
- Appendix C: The Effects of Pluvial Climates in the Vicinity of Yucca Mountain: A Summary
- Appendix D: Response of the Ground-Water System at Yucca Mountain to an Earthquake
- Appendix E: Probabilities of Earthquakes Near Yucca Mountain, Nevada <
ISBN: 9780309047487
Dimensions: unknown
Weight: unknown
242 pages