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US Nuclear Regulatory

Embrey, D. E., Kirwan, B., Rea, K., Humphreys, P., Rosa, E. A. (1984). SLIM-MAUD. An approach to Assessing Human Error Probabilities Using Structured Expert judgment Vols. I and II. Washington, DC NUREG/CR—3518 US Nuclear Regulatory Commission. [Pg.369]

Swain, A. D. (1987). Accident Sequence Evaluation Program Human Reliability Analysis Procedure. NUREG/CR-4772. Washington, DC US Nuclear Regulatory Commission. [Pg.375]

Environment Assessment of the Thermal Neutron Activation Explosive Detection System for Concourse Use at U.S.Airports, US Nuclear Regulatory Commission, NUREG-1396,... [Pg.85]

US Nuclear Regulatory Commission (NRC). Online. Available HTTP (accessed 9 April 2003). [Pg.153]

US Nuclear Regulatory Commission 2000. Standard Review Plan for the Review of a Reclamation... [Pg.34]

Plan for Mill Tailings Sites Under Title II of the Uranium Mill Tailings Radiation Control Act. US Nuclear Regulatory Commission, Washington DC, USA, NUREG-1620. [Pg.35]

Rogovin, M. Frampton, G. J. 1980. A Sequence of Physical Events. Three Mile Island, Vol. II, Part 2, pp 309-340, Report to the Commissioners and the Public, Special Inquiry Group, US Nuclear Regulatory Commission, Washington, DC. [Pg.151]

Ahn, T. M. 1996. Long-Term Kinetic Effects and Colloid Formations in Dissolution of LWR Spent Fuels. US Nuclear Regulatory Commission, NUREG-1564. [Pg.541]

Figures in parentheses are derived from US Nuclear Regulatory Commission (1977). Figures in parentheses are derived from US Nuclear Regulatory Commission (1977).
Criscenti L. J., Cygan R. T., Eliassi M., and Jove-Colon C. F. (2002) Effects of Adsorption Constant Uncertainty on Contaminant Plume Migration. US Nuclear Regulatory Commission. [Pg.4793]

Davis J. A., Kohler M., and Payne T. E. (2001) Uranium (VI) aqueous speciation and equilibrium chemistry. In Surface Complexation Modeling of Uranium (VI) Adsorption on Natural Mineral Assemblages NUREG/CR-6708. US Nuclear Regulatory Commission, Washington, DC,... [Pg.4793]

Gu B. and Schultz R. K. (1991) Anion Retention in Soil Possible Application to Reduce Migration of Buried Technetium and Iodine A Review. US Nuclear Regulatory Commission, 32pp. [Pg.4795]

Kent D., Tripathi V., Ball N., Leckie J., and Siegel M. (1988) Surface-complexation modeling of radionuclide adsorption in subsurface environments. US Nuclear Regulatory Commission. [Pg.4796]

Seme R. J., Arthur R. C., and Krapka K. M. (1990) Review of Geochemical Processes and Codes for Assessment of Radionuclide Migration Potential at Commercial FEW Sites. 129pp., US Nuclear Regulatory Commission. [Pg.4800]

Tien P.-L., Siegel M. D., Updegraff C. D., Wahi K. K., and Guzowski R. V. (1985) Repository Site Data Report for Unsaturated Tuff, Yucca Mountain, Nevada. US Nuclear Regulatory Commission. [Pg.4801]

US Nuclear Regulatory Commission (2001) 10 CFR Parts 2, 19, 20, 21, etc. disposal of high-level radioactive wastes in a proposed geological repository at Yucca Mountain, Nevada final rule. Federal Register 66(213), 55732-55816. [Pg.4802]

Hayes, K.E et al.. Application of surface complexation models for radionuclide adsorption Sensitivity analysis of model input parameters, NUREG/CR-5547, US Nuclear Regulatory Commission, Washington DC, 1990, cited after Prikryl, J.D. et al.. Uranium sorption on a alumina Effects of pH and surface area/solution volume ratio, Radiochim. Acta, 66/67, 291, 1994. [Pg.960]

NRC (1988) Improved Embrittlement Correlations for Reactor Pressure Vessel Steels , Office of Nuclear Regulatory Research, US. Nuclear Regulatory Commission, Washington, DC. [Pg.418]

Before Yucca Mountain can become the nuclear waste repository for the nation, a license must be issued by the US Nuclear Regulatory Commission. Evaluation of the site for safe storage of high-level nuclear wastes for at least 10 000 years requires abroad spectrum of scientific disciplines. Mathematical models are developed to calculate the amount and type of radioactive materials that could be released into the environment due to different processes and events. [Pg.1]

Figure 1.1. Yucca Mountain, in southern Nevada, is the only proposed geological repository site for high-level nuclear waste in the USA. Photograph courtesy of Neil Coleman of US Nuclear Regulatory Commission. Figure 1.1. Yucca Mountain, in southern Nevada, is the only proposed geological repository site for high-level nuclear waste in the USA. Photograph courtesy of Neil Coleman of US Nuclear Regulatory Commission.
M. Keylani and F. A. Kulacki, An Experimental Study of Turbulent Thermal Convection With Time-Dependent Volumetric Energy Sources, US- Nuclear Regulatory Rep. NUREG-RF710968, NRC-3, 1979. [Pg.295]

A part of the US Nuclear Regulatory Commission s (NRC) severe accident research program was dedicated to hydrogen issues in LWR containment designs under core meltdown conditions. The analysis included the in-vessel and ex-vessel hydrogen generation as well as its mixing and distribution in the containment. [Pg.51]

In a September 2000 meeting on key technical issues regarding container life, the US Nuclear Regulatory Commission (NRC) and representative of the DOE discussed the ongoing research into the effects of corrosion processes on the lifetime of the containers (57). [Pg.199]

Naus, D. J. The effect of elevated tempoature on concrete materials and structures - a literature review. Technical Report NUREG/CR-6900, US Nuclear Regulatory Commission, Washington, DC, 2006. [Pg.286]

CHIRAMAL, Matthew Senior Advisor for Digital Technology Office of Nuclear Reactor Regulation US Nuclear Regulatory Commission M.S. 0-llD 19 20555 Washington DC... [Pg.176]


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Nuclear Regulatory

U.S. Nuclear Regulatory Commission

US Nuclear Regulatory Commission

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