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Highly sophisticated computational models are demanded to conduct re-search, optimize engineering design and make management decisions of highly complex water systems to meet the needs of today's society. The reliability of the computational models to be adopted for the research of the water resources systems is of great importance. Both professionals in the field and their professional societies have devoted a great deal of efforts in the development of better methodologies for verifying and validating computational model's correctness, convergence, accuracy, validity and reliability. The latest most rigorous methodology for verification and validation of the three-dimensional free-surface flow models has just been developed and its effectiveness has just been demonstrated by the American Society of Civil Engineers Task Committee. This paper is to present a few selected examples to show how to develop a reliable model for conducting water resources sys-tem research.
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Tom
Strony
487--499
Opis fizyczny
Bibliogr. 31 poz.
Twórcy
autor
- Frederick A.P. Barnard National Center for Computational Hydroscience and Engineering The University of Mississippi, University, MS, USA
autor
- Frederick A.P. Barnard National Center for Computational Hydroscience and Engineering The University of Mississippi, University, MS, USA
autor
- Frederick A.P. Barnard National Center for Computational Hydroscience and Engineering The University of Mississippi, University, MS, USA
Bibliografia
- AIAA, 1994: "Editorial policy statement on numerical accuracy and experimental uncertainty", AIAAJ. 32(1), p. 3.
- ASME Editorial Board, 1994: "Journal of Heat Transfer editorial policy statement on numerical accuracy", J. Heat Transfer 116, pp. 797-798.
- Bobbitt, P.J., 1988: "The pros and cons of code validation", AIAA Paper 88-2535; NASA TM 100657.
- Booij, R., 2003: "Modeling the flow in curved tidal channels and rivers", Proc. Intern. Conf. on Estuaries and Coasts, Hangzhou, China, pp. 786-794.
- Celik, 1., C.J. Chen, P.J. Roache and G. Scheurer, 1993: "Quantification of uncertainty in computational fluid dynamics", ASME FED 158, ASME Fluids Engineering Division Summer Meeting, Washington, D.C., June 20-24, 1993.
- De Vriend, D.J., 1979: "Flow measurements in a Curved Rectangular Channel", Laboratory of Fluid Mechanics, Department of Civil Engineering, Delft University of Technology, Internal Report No. 9-79.
- Dee, D.P., 1991a: "Prescribed solution forcing method for model verification". In: Hydr. Engineering, Proc. 1991 National Conf. of Hydr. Engrg., ASCE, Nashville, July August 2, 1991, pp. 734-739.
- Dee, D.P., 1991b: "Prescribed solution forcing for TRISULA: Waves in a uniform channel Part I: design and implementation". Delft Hydraulics Report X85, Delft, The Nether' lands.
- Ferziger, J.H., and M. Peric, 1996: "Further discussion on numerical errors in СГО", Int. J. Numer. Meth. Fluids 23, pp. 1263-1214.
- Freitas, C.J., 1993: "Editorial policy statement of the control of numerical accuracy", ASME J. Fluids Eng. 115 (3), pp. 339-340.
- Gresho, P.M., and C. Taylor, 1994: "Editorial", Int. J. Numer. Meth. Fluids 19 (12), p. iii.
- Jia, Y., K. Blanckaert and S.S.Y. Wang, 2001: "Simulation of secondary flow in curved channels". Published on the FMTM2001 International Conference, Tokyo, Japan.
- Jia, Y., and S.S.Y. Wang, 1992: "Computational model verification test case using flume data", J. Hydraul. Eng.-ASCE, pp. 436-441.
- Jia Y., and S.S.Y. Wang, 2000: "Numerical simulations of the channel flow with submerged weirs in Victoria Bendway, Mississippi River", Technical Report No. NCCHE-TR-2000-3, NCCHE, The University of Mississippi, USA.
- Johnson, R.W., and E.D. Hughes, 1995: "Quantification of uncertainty in computational fluid dynamics", ASME FED 213, ASME/JSME Fluids Engineering and Laser Anemometry Conference, Hilton Head, South Carolina, August 13-18, 1995.
- Leschziner, M.A., and W. Rodi, 1979: "Calculation of strongly curved open channel flow", ASCE J. Hydraul. Div. 105, HY 10, pp. 1297-1313.
- Melnik, R.E., M.J. Siclari, F. Marconi, T. Barber and A. Verhoff, 1995: "An overview of a Recent industry effort at CFD code certification", AIAA Paper 95-2229, AIAA 26tli Fluid Dynamics Conference, San Diego, California, June 19-22, 1995.
- Oberhampf W.L., F.G. Blottner and D.P. Aeschliman, 1995: "Methodology for computational fluid dynamics code verification/validation", AIAA Paper 95-2226, AIAA Fluid Dynamics Conference, San Diego, California, June 19-22, 1995.
- Oreskes, N.. K. Shrader-Frechette, and K. Belitz, 1994: "Verification, validation and confirmation of numerical models in the earth sciences". Science 263, pp. 641-646.
- Roache, P.J., 1989: "Need for control of numerical accuracy", J. Spacecraft 27 (2), pp. 98-102.
- Roache, P.J., 1997: "Quantification of uncertainty in computational fluid dynamics", Ann. Rev. Fluid Mech. 29, pp. 123-160.
- Roache, P.J., 1998: "Verification and Validation in Computational Science and Engineering", Hermosa Publishers, Socorro, NM, USA.
- Roache, P.J., 1999: "Numerical model verification techniques for hydraulic engineers". Notes of the short course given at ASCE International Conference on Water Resources Engineering, Seattle, WA, 1999.
- Scott, S.H., Y. Jia and S.S.Y. Wang, 2001a: "3D numerical simulation of flow in Mississippi River and validation using field data", XXIX IAHR Congress Proceedings. Theme D: Hydraulics of Rivers, Water and Machinery I, pp. 183-188, Beijing, China.
- Scott, S.H., Y. Jia, S.S Y. Wang and Y. Xu, 2001b: "Analysis of near field hydrodynamics of submerged weirs". Coastal and Hydraulic Engineering Technical Note, CHETN -VII-1, U.S. Army Engineer Research and Development Center, Vicksburg, MS.
- Toro, B.F.M., and S.S.Y. Wang, 1993: "Validation of a 3-D channel flow model by the prescribed solution forcing technique". In: S.S.Y. Wang (ed.). Advances in Hydro-Science and Engineering 1, part B, pp. 2109-2114.
- Wang, S.S.Y., 1991: "3-D free surface flow model verification - Task Committee data collection for verification of 3D free surface flow hydrodynamic models", Proc. 1991 National Conf. Hydr. Engrg., ASCE, Nashville, July 29 - August 2, 1991, pp. 769-773.
- Wang, S.S.Y., 1992: "On verification of computational hydro-system models", Proc. Int. Conf. on Interaction of Computational Methods and Measurements in Hydraulics and Hydrology 1992, pp. 163-169.
- Wang, S.S.Y., 1993: "Data and Information Base for 3D Free Surface Flow Model Verification", Interim Report (for Task Committee member circulation only), ASCE Task Committee on Data Collection for 3D Free Surface Flow Model Verification, NCCHE, The University of Mississippi.
- Wang, S.S.Y., 1994: "3D free surface flow model verification—a panel discussion on test cases". In: Hydraulic Engineering, Proc. of 1994 Conference held in Buffalo, New York, August 1-5, 1994, pp. 910-912.
- Wang, S.S.Y., P.J. Roache, P.E. Smith, R.A. Schmalz Jr. and Y. Jia, 2005: "3D free surface flow model verification and validation". First Draft of an ASCE-EWRI Monograph.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0009-0046
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