References

The sources the documentation and the docstrings cite, with a DOI wherever one exists. Regulatory documents and laboratory reports are cited by their report numbers.

  • Bander, T. J. (1982). PAVAN: An Atmospheric-Dispersion Program for Evaluating Design-Basis Accidental Releases of Radioactive Materials from Nuclear Power Stations. Technical Report NUREG/CR-2858, PNL-4413 (Pacific Northwest Laboratory, for the U.S. Nuclear Regulatory Commission, Richland, Washington). ↩1 ↩2 ↩3 ↩4
  • Bixler, N.; Compton, K.; Dennis, M.; Eubanks, L.; Haaker, R.; Jones, J.; Kimura, M.; McFadden, K.; Nosek, A.; Outkin, A. and Walton, F. (2022). Technical Bases for Consequence Analyses Using MACCS (MELCOR Accident Consequence Code System). Technical Report NUREG/CR-7270, SAND2022-12166 R (Sandia National Laboratories, for the U.S. Nuclear Regulatory Commission, Washington, D.C.). ↩1 ↩2 ↩3
  • Briggs, G. A. (1969). Plume Rise. AEC Critical Review Series TID-25075 (U.S. Atomic Energy Commission, Division of Technical Information, Oak Ridge, Tennessee). ↩1 ↩2
  • Briggs, G. A. (1973). Diffusion Estimation for Small Emissions. ATDL Contribution File 79 (Air Resources Atmospheric Turbulence and Diffusion Laboratory, National Oceanic and Atmospheric Administration, Oak Ridge, Tennessee). Issued as TID-28289. ↩1 ↩2 ↩3 ↩4 ↩5 ↩6
  • Clarke, R. H. (1979). The First Report of a Working Group on Atmospheric Dispersion: A Model for Short and Medium Range Dispersion of Radionuclides Released to the Atmosphere. Technical Report NRPB-R91 (National Radiological Protection Board, Chilton). ↩1 ↩2 ↩3
  • Eimutis, E. C. and Konicek, M. G. (1972). Derivations of Continuous Functions for the Lateral and Vertical Atmospheric Dispersion Coefficients. Atmospheric Environment 6, 859–863. ↩1 ↩2 ↩3 ↩4 ↩5 ↩6
  • Hanna, S. R.; Briggs, G. A. and Hosker, R. P. (1982). Handbook on Atmospheric Diffusion. Technical Report DOE/TIC-11223 (U.S. Department of Energy, Technical Information Center, Oak Ridge, Tennessee). ↩1 ↩2 ↩3 ↩4 ↩5 ↩6 ↩7 ↩8 ↩9
  • Holland, J. Z. (1953). A Meteorological Survey of the Oak Ridge Area. Technical Report ORO-99 (U.S. Atomic Energy Commission, Washington, D.C.). ↩1 ↩2
  • Hosker, R. P. (1974). Estimates of Dry Deposition and Plume Depletion over Forests and Grassland. In: Physical Behaviour of Radioactive Contaminants in the Atmosphere: Proceedings of a Symposium, Vienna, November 1973 (International Atomic Energy Agency, Vienna); pp. 291–309. Paper IAEA-SM-181/19. ↩1 ↩2
  • Huber, A. H. (1984). Evaluation of a Method for Estimating Pollution Concentrations Downwind of Influencing Buildings. Atmospheric Environment 18, 2313–2338. ↩1 ↩2
  • Jones, J. A. (1980). ESCLOUD: A Computer Program to Calculate the Air Concentration, Deposition Rate and External Dose Rate from a Continuous Discharge of Radioactive Material to Atmosphere. Technical Report NRPB-R101 (National Radiological Protection Board, Chilton). ↩1 ↩2
  • Jones, J. A. (1983). The Fifth Report of a Working Group on Atmospheric Dispersion: Models to Allow for the Effects of Coastal Sites, Plume Rise and Buildings on Dispersion of Radionuclides and Guidance on the Value of Deposition Velocity and Washout Coefficients. Technical Report NRPB-R157 (National Radiological Protection Board, Chilton). ↩1 ↩2 ↩3
  • Maxwell, R. M. and Anspaugh, L. R. (2011). An Improved Model for Prediction of Resuspension. Health Physics 101, 722–730. ↩1 ↩2 ↩3
  • McElroy, J. L. and Pooler, F. (1968). St. Louis Dispersion Study, Volume II: Analysis. Publication AP-53 (U.S. Department of Health, Education, and Welfare, National Air Pollution Control Administration, Arlington, Virginia). ↩1 ↩2 ↩3
  • Miller, C. W. and Yildiran, M. (1984). Estimating Radionuclide Air Concentrations near Buildings: A Screening Approach. Transactions of the American Nuclear Society 46, 55–57. ↩1 ↩2
  • Murphy, C. E. (1993). Tritium Transport and Cycling in the Environment. Health Physics 65, 683–697. ↩1 ↩2 ↩3
  • Ogram, G. L. (1985). Precipitation Scavenging of Tritiated Water Vapour (HTO). Technical Report 85-233-K (Ontario Hydro Research Division, Toronto). ↩1 ↩2 ↩3 ↩4
  • Sagendorf, J. F.; Goll, J. T. and Sandusky, W. F. (1982). XOQDOQ: Computer Program for the Meteorological Evaluation of Routine Effluent Releases at Nuclear Power Stations. Technical Report NUREG/CR-2919, PNL-4380 (Pacific Northwest Laboratory, for the U.S. Nuclear Regulatory Commission, Richland, Washington). ↩1 ↩2 ↩3 ↩4 ↩5 ↩6 ↩7 ↩8
  • Simmonds, J. R.; Lawson, G. and Mayall, A. (1995). Methodology for Assessing the Radiological Consequences of Routine Releases of Radionuclides to the Environment. Radiation Protection 72, EUR 15760 EN (European Commission, Luxembourg). ↩1 ↩2 ↩3
  • Slinn, W. G. (1977). Some Approximations for the Wet and Dry Removal of Particles and Gases from the Atmosphere. Water, Air, and Soil Pollution 7. ↩1
  • Smith, F. B. (1973). A Scheme for Estimating the Vertical Dispersion of a Plume from a Source near Ground Level. In: Proceedings of the Third Meeting of the Expert Panel on Air Pollution Modelling, Paris, October 1972 (NATO Committee on the Challenges of Modern Society, Brussels). NATO-CCMS Report 14. ↩1
  • Smith, J. G. and Simmonds, J. R. (2009). The Methodology for Assessing the Radiological Consequences of Routine Releases of Radionuclides to the Environment Used in PC-CREAM 08. Technical Report HPA-RPD-058 (Health Protection Agency, Radiation Protection Division, Chilton). Editors. ↩1 ↩2 ↩3 ↩4 ↩5 ↩6 ↩7
  • Turner, D. B. (1970). Workbook of Atmospheric Dispersion Estimates. Publication 999-AP-26 (U.S. Department of Health, Education, and Welfare, Public Health Service, Cincinnati, Ohio). Revised edition. ↩1 ↩2 ↩3
  • Wilson, D. J. and Britter, R. E. (1982). Estimates of Building Surface Concentrations from Nearby Point Sources. Atmospheric Environment 16, 2631–2646. ↩1 ↩2
  • Atmospheric Dispersion Modelling Liaison Committee (2001). Annual Report 1998/99, Including Review of Deposition Velocity and Washout Coefficient and Review of Flow and Dispersion in the Vicinity of Groups of Buildings. Technical Report NRPB-R322 (National Radiological Protection Board, Chilton). ↩1
  • Bundesregierung (2012). Allgemeine Verwaltungsvorschrift zu § 47 Strahlenschutzverordnung: Ermittlung der Strahlenexposition durch die Ableitung radioaktiver Stoffe aus Anlagen oder Einrichtungen (Bundesministerium für Umwelt, Naturschutz und Reaktorsicherheit, Berlin). 28 August 2012, Bundesanzeiger AT 05.09.2012 B1. ↩1 ↩2 ↩3
  • Comisia Națională pentru Controlul Activităților Nucleare (2004). Norme privind calculul dispersiei efluenților radioactivi evacuați în mediu de instalațiile nucleare (NSR-23). Technical Report Ordinul președintelui CNCAN nr. 360/2004 (CNCAN, București). Monitorul Oficial al României, Partea I, nr. 1159 bis, 8 December 2004. ↩1 ↩2 ↩3
  • International Atomic Energy Agency (1982). Generic Models and Parameters for Assessing the Environmental Transfer of Radionuclides from Routine Releases: Exposures of Critical Groups. Safety Series 57 (International Atomic Energy Agency, Vienna). ↩1 ↩2 ↩3
  • International Atomic Energy Agency (1986). Atmospheric Dispersion Models for Application in Relation to Radionuclide Releases: A Review. Technical Report IAEA-TECDOC-379 (International Atomic Energy Agency, Vienna). ↩1 ↩2
  • International Atomic Energy Agency (2001). Generic Models for Use in Assessing the Impact of Discharges of Radioactive Substances to the Environment. Safety Reports Series 19 (International Atomic Energy Agency, Vienna). ↩1 ↩2 ↩3 ↩4 ↩5 ↩6 ↩7 ↩8 ↩9 ↩10
  • U.S. Environmental Protection Agency (1995). User's Guide for the Industrial Source Complex (ISC3) Dispersion Models, Volume II: Description of Model Algorithms. Technical Report EPA-454/B-95-003b (Office of Air Quality Planning and Standards, Research Triangle Park, North Carolina). ↩1 ↩2 ↩3 ↩4 ↩5
  • U.S. Nuclear Regulatory Commission (1977). Methods for Estimating Atmospheric Transport and Dispersion of Gaseous Effluents in Routine Releases from Light-Water-Cooled Reactors. Regulatory Guide 1.111, Revision 1 (U.S. Nuclear Regulatory Commission, Washington, D.C.). ↩1 ↩2 ↩3