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The Noginsk District (Russia) case as an illustration of novel simulation technologies developed for creating hydrogeological models

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Since 1993 the Environment Modelling Centre (EMC) of the Riga Technical University has been active in the field of developing methodologies and special software for creating hydrogeological models (HM). In this paper, these tools applied together with commercial ones are described. on the example of complicated HM created for the Noginsk District, Moscow Region, Russia. The model was obtained due to efforts of joined teams of EMC, the All-Russian Research Institute for Hydrogeology and Engineering Geology and the Geological Survey of Denmark and Greenland.
Rocznik
Strony
69--89
Opis fizyczny
Bibliogr. 19 poz.
Twórcy
autor
  • Environment Modelling Centre, Riga Technical University, 1 Meza Street, Riga, LV-1048, Latvia
autor
  • Environment Modelling Centre, Riga Technical University, 1 Meza Street, Riga, LV-1048, Latvia
autor
  • Environment Modelling Centre, Riga Technical University, 1 Meza Street, Riga, LV-1048, Latvia
autor
  • Environment Modelling Centre, Riga Technical University, 1 Meza Street, Riga, LV-1048, Latvia
  • All-Russian Research Institute for Hydrogeology and Engineering Geology TLelony Village, Noginsk District, Moscow Region, Russia
autor
  • Geological Survey of Denmark and Greenland Department of Hydrogeology Thoravej 8, DK-2400 Copenhagen NV, Denmark
Bibliografia
  • [1] Atruskievics, J., Janbickis, R., Krutofal, T, Lace, I., Levina, N., Slangens, J., Spalvins, A., and Viksne, Z. (1994) Computer Based Regional Hydrogeological Model "Large Riga", Boundary Field Problems and Computers, Proc. of Latvian - Danish Seminar on ‘‘Groundwater and Geothermal Energy”, Riga - Copenhagen, 2,35, 203-224.
  • [2] Environmental Simulations, Inc. (1997) Groundwater Vistas, Guide to using.
  • [3] Golden Software, Inc. (1997) Surfer 6.0for Windows, User's manual.
  • [4] Gosk, E., Spalvins, A., and Vartanyan, G. (eds.) (1999) Hydrogeological and Contamination Transport Models for Noginsk District, Moscow Region, Report on Sub-contractor Agreement within the Project: Groundwater Contamination and Remediation in Noginsk District, Moscow Region, Riga - Moscow.
  • [5] Janbicka, A., Spalvins, A., and Slangens, J. (1993) Implementation of the Nested Factorization Conjugate Gradient Method on a Spatial Grid, Boundary Field Problems and Computers, Numerical Simulation for Hydrogeology, Riga, 34, 35-41.
  • [6] Lace, I., and Spalvins, A. (2000) Incorporating Geological Sections in Hydrogeological Models, Scientific Proc. of Riga Technical University in series "Computer Science", Boundary Field Problems and Computer Simulation, Riga, 4, 42, 41-46.
  • [7] Lace, I., Spalvins, A., and Slangens, J. (1995) Algorithms for Accounting Groundwater Discharge in the Regional Hydrogeological Model and Interpolation of Simulation Results at Observation Wells, Boundary Field Problems and Computers, Proc. of International Seminar on "Environment Modelling", Riga - Copenhagen, 1, 36, 201-216.
  • [8] Loukiantchikova, L., Gosk, E., Spalvins, A., Janbickis, R., and Lace, I. (2000) Development of the Hydrogeological Model for Investigating the Impact of Contaminant Sources in the Noginsk District, Russia, Proc. of International Conference on " Groundwater Research - Groundwater'2000", Copenhagen, Denmark, 6-8 June 2000, Rotterdam, Balkema, 109-110.
  • [9] McDonald, M., and Harbaugh, A. (1988) A Modular Three-Dimensional Finite- Difference Ground-Water Flow Model, U. S. Geological Survey, Open File Report Washington, 83-875.
  • [10] Slangens, J., and Spalvins, A. (2000) Reliable Program for Preparing Line Data of Hydrogeological Models, Scientific Proc. of Riga Technical University in series "Computer Science", Boundary Field Problems and Computer Simulation, Riga, 4, 42,41-46.
  • [11] Spalvins, A. (2000) Landscape Elevation Map as Reliable Boundary Conditions for Hydrogeological Models, Scientific Proc. of Riga Technical University in series "Computer Science", Boundary Field Problems and Computer Simulation, Riga, 4, 42,47-50.
  • [12] Spalvins, A., and Janbickis R. (2000) Misfortunes of Zone Scheme Applied for Storing Hydrogeological Data, Scientific Proc. of Riga Technical University in series "Computer Science", Boundary Field Problems and Computer Simulation, Riga, 4,42, 28-31.
  • [13] Spalvins, A., Janbickis R., Slangens, J., Gosk, E., Lace, I., Viksne, Z., Atruskievics, J., Levina, N., and Tolstovs, I. (1996) Hydrogeological Model “Large Riga”, Atlas of Maps, Boundary Field Problems and Computers, Riga - Copenhagen, 37.
  • [14] Spalvins, A., and Slangens, J. (1994) Numerical Interpolation of Geological Environment Data, Boundary Field Problems and Computers, Proc. of Latvian - Danish Seminar on “Groundwater and Geothermal Energy", Riga - Copenhagen, 2,35, 181-196.
  • [15] Spalvins, A., Slangens, J., Janbickis, R., Lace, I., and Gosk, E. (2000) Methods for Improving Verity of Groundwater Modelling, Proc. of 16th IMACS World Congress 2000, Lausanne, Switzerland, 21-25 August 2000, 6 pages on CDROM.
  • [16] Spalvins, A., Janbickis, R., and Slangens, J. (2000) Boundary Shells of Hydrogeological Models as Interpolation Devices, Scient. Proc. of Riga Technical University in series "Computer Science", Boundary Field Problems and Computer Simulation, Riga, 4, 42, 32-34.
  • [17] Spalvins, A., Lace, I., Slangens, J., and Janbickis, R. (2000) Improving Verity of Hydrogeological Models due to Heuristic Human Skills Applied within Man- Computer System, Proc. of the of International Conference on "Simulation, Gaming, Training and Business Process Reengineering in Operations", 8-9 September 2000, Riga, 266-270.
  • [18] Spalvins, A., Slangens, J., Janbickis, R., and Lace, I. (1999) Reducing of Model Formulation Errors as an Effective Remedy for Improving Simulation Results, Proc. of International Conference on "Calibration and Reliability in Groundwater Modelling, ModelCARE'99", Switzerland, 20-23 September 1999, Zurich, 161-166.
  • [19] Van Genuchten, M. Th. (1980) A Closed-form Equation for Predicting the Hydraulic Conductivity of Unsaturated Soils, Soil Seien. Soc. Amer. Journal, 44, 892-898.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-LOD7-0028-0037
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