Seismic hazard characterization of 69 nuclear plant sites east of the Rocky Mountains: Questionnaires
Technical Report
·
OSTI ID:6237170
The EUS Seismic Hazard Characterization Project (SHC) is the outgrowth of an earlier study performed as part of the US Nuclear Regulatory Commission's (NRC) Systematic Evaluation Program (SEP). The objectives of the SHC were: (1) to develop a seismic hazard characterization methodology for the region east of the Rocky Mountains (EUS), and (2) the application of the methodology to 69 site locations, some of them with several local soil conditions. The method developed uses expert opinions to obtain the input to the analyses. An important aspect of the elicitation of the expert opinion process was the holding of two feedback meetings with all the experts in order to finalize the methodology and the input data bases. The hazard estimates are reported in terms of peak ground acceleration (PGA) and 5% damping velocity response spectra (PSV). A total of eight volumes make up this report which contains a thorough description of the methodology, the expert opinion's elicitation process, the input data base as well as a discussion, comparison and summary volume (Volume 6). Consistent with previous analyses, this study finds that there are large uncertainties associated with the estimates of seismic hazard in the EUS, and it identifies the ground motion modeling as the prime contributor to those uncertainties. This document, Volume 7, provides the questionnaires used from the beginning of the study.
- Research Organization:
- Nuclear Regulatory Commission, Washington, DC (USA). Div. of Engineering and System Technology; Lawrence Livermore National Lab., CA (USA)
- DOE Contract Number:
- W-7405-ENG-48
- OSTI ID:
- 6237170
- Report Number(s):
- NUREG/CR-5250-Vol.7; UCID-21517-Vol.7; ON: TI89007705
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
22 GENERAL STUDIES OF NUCLEAR REACTORS
220501* -- Nuclear Reactor Technology-- Environmental Aspects-- Siting
220900 -- Nuclear Reactor Technology-- Reactor Safety
58 GEOSCIENCES
580201 -- Geophysics-- Seismology & Tectonics-- (1980-1989)
EARTHQUAKES
GROUND MOTION
HAZARDS
MATHEMATICAL MODELS
MECHANICS
MOTION
NUCLEAR FACILITIES
NUCLEAR POWER PLANTS
POWER PLANTS
REACTOR SAFETY
SAFETY
SEISMIC EFFECTS
SEISMIC EVENTS
SEISMICITY
SITE CHARACTERIZATION
SOIL MECHANICS
SOILS
SURVEYS
THERMAL POWER PLANTS
220501* -- Nuclear Reactor Technology-- Environmental Aspects-- Siting
220900 -- Nuclear Reactor Technology-- Reactor Safety
58 GEOSCIENCES
580201 -- Geophysics-- Seismology & Tectonics-- (1980-1989)
EARTHQUAKES
GROUND MOTION
HAZARDS
MATHEMATICAL MODELS
MECHANICS
MOTION
NUCLEAR FACILITIES
NUCLEAR POWER PLANTS
POWER PLANTS
REACTOR SAFETY
SAFETY
SEISMIC EFFECTS
SEISMIC EVENTS
SEISMICITY
SITE CHARACTERIZATION
SOIL MECHANICS
SOILS
SURVEYS
THERMAL POWER PLANTS