A development of an evaluation flow chart for seismic stability of rock slopes based on relations between safety factor and sliding failure
Creators
- 1. Central Research Inst. of Electric Power Industry, Civil Engineering Research Lab., Abiko, Chiba (Japan)
Description
Recently, it is necessary to assess quantitatively seismic safety of critical facilities against the earthquake- induced rock slope failure from the viewpoint of seismic PSA. Under these circumstances, it is needed to evaluate the seismic stability of surrounding slopes against extremely strong ground motions. In order to evaluate the seismic stability of surrounding slopes, the most conventional method is to compare safety factors on an expected sliding surface, which is calculated from the stability analysis based on the limit equilibrium concept, to a critical value which judges stability or instability. The method is very effective to examine whether or not the sliding surface is safe. However, it does not mean that the sliding surface falls whenever the safety factor becomes smaller than the critical value during an earthquake. Therefore the authors develop a new evaluation flow chart for the seismic stability of rock slopes based on relations between safety factor and sliding failure. Furthermore, the developed flow chart was validated by comparing two kinds of safety factors calculated from a centrifuge test result concerned with a rock slope. (author)
Additional details
Publishing Information
- Journal Title
- Denryoku Chuo Kenkyusho Hokoku
- Journal Issue
- no.N09030
- Journal Page Range
- p. 1-4, 1-18
- ISSN
- 1340-4652
INIS
- Country of Publication
- Japan
- Country of Input or Organization
- Japan
- INIS RN
- 42017798
- Subject category
- S42: ENGINEERING;
- Descriptors DEI
- CENTRIFUGES; COMPUTERIZED SIMULATION; EARTHQUAKES; EVALUATION; FAILURES; FINITE ELEMENT METHOD; GROUND MOTION; PROBABILISTIC ESTIMATION; RISK ASSESSMENT; ROCKS; SEISMIC EFFECTS; SLIDING FRICTION; SLOPE STABILITY; TESTING
- Descriptors DEC
- CALCULATION METHODS; CONCENTRATORS; FRICTION; MATHEMATICAL SOLUTIONS; MOTION; NUMERICAL SOLUTION; SEISMIC EVENTS; SIMULATION; STABILITY
Optional Information
- Notes
- 11 refs., 27 figs., 5 tabs.