Since 1978
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RUSSIAN FEDERAL
NUCLEAR CENTER -
ALL-RUSSIAN RESEARCH INSTITUTE
OF EXPERIMENTAL PHYSICS
 
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NUMERICAL SIMULATION FOR RADIANT HEAT EXCHANGE IN CLOSED MULTILAYER SYSTEMS

A. A. Basin, G. I. Skidan, B. P. Tikhomirov, E. N. Tikhomirova
VANT. Ser. Mat. Mod. Fiz. Proc 1998. Вып.3. С. 34-40.

      The paper deals with calculation method for heat transfer problems based on diffusion and vacuum approximations. Stable exchange boundary conditions are introduced for solution conjugation of the nonlinear heat conduction equation (or radiation diffusion equation) with integral equation for heat exchange of radiation on the opacity boundary. The boundary conditions of diffusion type are discussed, a simple method for diffusion flux restriction is proposed.
      An example of a radiant heat exchange problem with analytical solution is constructed; the accuracy of the model problem calculation is estimated with this problem. Computed data for a model problem of temperature distribution on box and container walls at fire are presented.



RADIANT ENERGY TRANSFER CALCULATION IN THE THERMONUCLEAR TARGETS IN DIFFUSION-VACUUM APPROXIMATION

A. A. Basin, V. V. Vatulin, Yu. A. Dement’ev, V. F. Mironova, G. I. Skidan, B. P. Tikhomirov, E. N. Tikhomirova
VANT. Ser. Mat. Mod. Fiz. Proc 1998. Вып.3. С. 41-45.

      One of the possible options is discussed for the medium motion within the diffusion-vacuum model for radiant energy transfer calculation in the optically nonhomogeneous 2D and 3D systems.
      2D computed data are given for X-ray field in the laser cylindrical targets of small diameter. The radiation field symmetry on the capsule surface of the heavy-ion cylindrical target is considered.










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