An Atmospheric Dispersion Model for the Environmental Impact Assessment of Thermal Power Plants in Japan—A Method for Evaluating Topographical Effects

Author:

Ichikawa Yoichi1,Sada Koichi1

Affiliation:

1. a Central Research Institute of Electric Power Industry , Tokyo , Japan

Publisher

Informa UK Limited

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal

Reference18 articles.

1. Snyder, W.H.Guideline for Fluid Modeling of Atmospheric Diffusion;EPA-600/8-81-009; U.S. Environmental Protection Agency: Research Triangle Park, NC, 1981.

2. Strimaitis, D.G.; Lavery, T.F.; Venkatram, A.; DiCristofaro, D.C.; Greene, B.R.; Egan, B.EPA Complex Terrain Model Development Fourth Milestone Report-1984;EPA/600/3-84/110; U.S. Environmental Protection Agency: Research Triangle Park, NC, 1985.

3. Bowne, N.E.; Londergan, R.J.; Murray, D.R.; Borenstein, H.S.Overview, Results and Conclusions for the EPRI Plume Model Validation and Development Project: Plains Site;EPRI EA-3074; Electric Power Research Institute: Palo Alto, CA, 1983.

4. Atmospheric Studies in Complex Terrain Technical Progress ReportFY-1979 through FY-1983;Dickerson, M.H., Gudiksen, P.H., Eds.; UCID-19851 ASCOT 84-1; Lawrence Livermore National Laboratory: Livermore, CA, 1983.

5. OECD Nuclear Energy Agency. InProceedings ofthe Specialists’ Meeting on Advanced Modeling and Computer Codes for Calculating Local Scale and Meso-Scale Atmospheric Dispersion of Radionuclides and Their Applications, Organisation for Economic Cooperation and Development: Paris, 1991; Paper No. 26.

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