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Pregled bibliografske jedinice broj: 66521

Claw1d 1.0


Sopta, Luka; Vuković, Senka; Škifić, Jerko
Claw1d 1.0, 2000. (računalni programski paket).


CROSBI ID: 66521 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Claw1d 1.0

Autori
Sopta, Luka ; Vuković, Senka ; Škifić, Jerko

Izvornik
Rijeka

Vrsta, podvrsta
Ostale vrste radova, računalni programski paket

Godina
2000

Ključne riječi
conservation laws; pressurized flow; open channel flow; shallow water; optimization; genetic algorithm; windows application; boundary conditions; initial conditions; numerical mesh; compartments; channel network; pipe network; finite difference methods

Sažetak
Claw1d 1.0 is a computer program that performs 2 tasks: numerical solution of initial – boundary value problems for one-dimensional conservation laws and solution for related optimal control problems. Three types of conservation laws are included in the present version: 1d pressurized flow equations, open channel flow equations and 1d shallow water equations. For each type of the flow model numerous boundary conditions are included. Numerical solution is based on the application of state of the art numerical methods for hyperbolic conservation law with significant source term: ENOLLF, ENO-Roe, Q-schemes, Hubbard’s, Roe’s with source term splitting. Optimal control problems that can be also solved with this program are model calibration problems, problems of finding optimal strategies for manipulations with turbines, pumps, valves, dams, weirs, etc, and optimal shape design problems. The applied optimization method is the genetic algorithm (GA). In the program many different variations of the basic GA operator are implemented. The complete program’s code is object oriented and it is written in C++. User interface is developed using the Microsoft Developer Studio Visual C++ 6.0 and it enables the user to easily build a new project, add all the components of the model, define all the necessary data, perform all computations and examine graphically and numerically all the obtained results. Graphical representations are 2d and 3d and are implemented through OpenGL. The programs is and can be applied to problems of gas-liquid mixture flows in pipelines in power plants, ships, oil industry, etc. as well as problems of flow in natural watercourses, artificial channels or propagation of flood waves.

Izvorni jezik
Engleski

Znanstvena područja
Strojarstvo



POVEZANOST RADA


Projekti:
069002

Ustanove:
Tehnički fakultet, Rijeka

Profili:

Avatar Url Luka Sopta (autor)

Avatar Url Jerko Škifić (autor)

Avatar Url Senka Maćešić (autor)


Citiraj ovu publikaciju:

Sopta, Luka; Vuković, Senka; Škifić, Jerko
Claw1d 1.0, 2000. (računalni programski paket).
Sopta, L., Vuković, S. & Škifić, J. (2000) Claw1d 1.0. Rijeka. Računalni programski paket.
@unknown{unknown, author = {Sopta, Luka and Vukovi\'{c}, Senka and \v{S}kifi\'{c}, Jerko}, year = {2000}, keywords = {conservation laws, pressurized flow, open channel flow, shallow water, optimization, genetic algorithm, windows application, boundary conditions, initial conditions, numerical mesh, compartments, channel network, pipe network, finite difference methods}, title = {Claw1d 1.0}, keyword = {conservation laws, pressurized flow, open channel flow, shallow water, optimization, genetic algorithm, windows application, boundary conditions, initial conditions, numerical mesh, compartments, channel network, pipe network, finite difference methods} }
@unknown{unknown, author = {Sopta, Luka and Vukovi\'{c}, Senka and \v{S}kifi\'{c}, Jerko}, year = {2000}, keywords = {conservation laws, pressurized flow, open channel flow, shallow water, optimization, genetic algorithm, windows application, boundary conditions, initial conditions, numerical mesh, compartments, channel network, pipe network, finite difference methods}, title = {Claw1d 1.0}, keyword = {conservation laws, pressurized flow, open channel flow, shallow water, optimization, genetic algorithm, windows application, boundary conditions, initial conditions, numerical mesh, compartments, channel network, pipe network, finite difference methods} }




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