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pro vyhledávání: '"I. K. Madni"'
Autor:
I. K. Madni
Publikováno v:
Nuclear Technology. 112:169-180
MELCOR is a fully integrated computer code that models all phases of the progression of severe accidents in light water reactor (LWR) nuclear power plants and is being developed for the U.S. Nuclea...
Autor:
M. Khatib-Rahbar, I. K. Madni
Publikováno v:
ASME 2011 Small Modular Reactors Symposium.
This paper focuses on modeling and phenomenological issues relevant to analysis of severe accidents in integral Pressurized Water Reactors (iPWRs). It identifies relevant thermal-hydraulics, melt progression and fission product release and transport
Autor:
I. K. Madni, Richard H. Pletcher
Publikováno v:
Journal of Heat Transfer. 99:99-104
A finite difference calculation method is used to solve the conservation equations of mass, momentum, and energy in differential form for a buoyant turbulent forced plume discharging vertically into both a uniform and a stratified quiescent ambient.
Autor:
Syed Zamberi Ahmad, I. K. Madni
Publikováno v:
Mathematical and Computer Modelling. 12(3):363-370
The analysis of dense jets is of interest with regard to environmental applications, especially in the design and evaluation of submerged, offshore outfalls from desalination plants. In this paper, the governing conservation equations of mass, moment
Autor:
Richard H. Pletcher, I. K. Madni
Publikováno v:
Journal of Fluids Engineering. 97:558-564
Some existing turbulence models for the round jet in coflowing and quiescent ambients are compared to experimental data, and some modifications are suggested and examined. A new model is proposed which results in consistently good predictions for a w
Publikováno v:
Nuclear Science and Engineering. 64:480-491
The transient simulation of a liquid-metal fast breeder reactor (LMFBR) plant requires (a) modeling of all processes that may be encountered and (b) the development of numerical methods to solve them. All models needed for the thermohydraulic simulat
Publikováno v:
Journal of Heat Transfer. 103:312-318
Dynamic simulation of the entire LMFBR plant is needed to determine after-heat dissipation capability of the plant via natural circulation. Models required to accomplish this task are briefly described. The resulting computer code, Super System Code-
Autor:
I. K. Madni, Richard H. Pletcher
Publikováno v:
Journal of Heat Transfer. 99:641-647
A differential approach for analysis of turbulent, axisymmetric, buoyant jets and plumes issuing nonvertically into a quiescent, uniform ambient is presented, in which the governing differential equations for conservation of mass, momentum, and energ
Autor:
I. K. Madni, Richard H. Pletcher
Publikováno v:
Journal of Fluids Engineering. 97:566-567
Autor:
I. K. Madni, R. H. Pletcher
Publikováno v:
Journal of Fluids Engineering. 98:333-333