Numerical modeling in open channel hydraulics / Romuald Szymkiewicz.

By: Szymkiewicz, RomualdMaterial type: TextTextSeries: Water science and technology library ; v. 83Publisher: Dordrecht ; New York : Springer, 2010Description: xiii, 419 p. : ill. ; 24 cmISBN: 9789048136735 (alk. paper); 9048136733 (alk. paper); 9789048136742 (eISBN)Subject(s): Channels (Hydraulic engineering) -- Mathematical modelsDDC classification: 627.042
Contents:
Open channel flow equations -- Methods for solving algebraic equations and their systems -- Numerical solution of ordinary differential equations -- Steady gradually varied flow in open channels -- Partial differential equations of hyperbolic and parabolic type -- Numerical solution of the advection equation -- Numerical solution of the advection-diffusion equation -- Numerical integration of the system of Saint Venant equations -- Simplified equations of the unsteady flow in open channel.
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Item type Current location Home library Call number Status Date due Barcode Item holds
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12974
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Checked out to Muhammad Daniyal Qammar NIT102808 (32304-2926422-9) 02/20/2020 NIT-12976
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12977
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12978
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12979
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12980
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12981
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12982
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12983
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12984
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12985
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12986
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12987
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Available NIT-12988
Book Book School of Civil and Environmental Engineering (SCEE)
School of Civil and Environmental Engineering (SCEE)
627.042 SZY (Browse shelf) Checked out to Dr. Sajjad Haider (NIT100191) 12/31/2021 NIT-12975
Total holds: 0

Includes bibliographical references and index.

Open channel flow equations -- Methods for solving algebraic equations and their systems -- Numerical solution of ordinary differential equations -- Steady gradually varied flow in open channels -- Partial differential equations of hyperbolic and parabolic type -- Numerical solution of the advection equation -- Numerical solution of the advection-diffusion equation -- Numerical integration of the system of Saint Venant equations -- Simplified equations of the unsteady flow in open channel.

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