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1.
J Fluids Eng ; 136(9): 0912071-912079, 2014 Sep.
Artigo em Inglês | MEDLINE | ID: mdl-25053861

RESUMO

The results of the experimental study of the Reynolds number effect on the process of the Rayleigh-Taylor (R-T) instability transition into the turbulent stage are presented. The experimental liquid layer was accelerated by compressed gas. Solid particles were scattered on the layer free surface to specify the initial perturbations in some experiments. The process was recorded with the use of a high-speed motion picture camera. The following results were obtained in experiments: (1) Long-wave perturbation is developed at the interface at the Reynolds numbers Re < 104. If such perturbation growth is limited by a hard wall, the jet directed in gas is developed. If there is no such limitation, this perturbation is resolved into the short-wave ones with time, and their growth results in gas-liquid mixing. (2) Short-wave perturbations specified at the interface significantly reduce the Reynolds number Re for instability to pass into the turbulent mixing stage.

2.
Radiats Biol Radioecol ; 48(3): 356-63, 2008.
Artigo em Russo | MEDLINE | ID: mdl-18689262

RESUMO

The purpose of this work is the receiving of quantitative data on Pu microdistribution in different structural elements of human bone tissue for local dose assessment and dosimetric models validation. Thoracic vertebra sample was taken for the study from former Mayak worker with rather high Pu burden, including information on occupational and exposure history, medical information and data on Pu content in organs. Lexan film autodiagrams were obtained using method of neutron-induced autoradiography from bone tissue sections. Quantitative analysis of randomly selected vision fields on one of autoradiograms was performed: fission fragment tracks Pu in different bone tissue areas were calculated, surface of bone tissue areas were defined. Quantitative information on Pu microdistribution in human bone tissue was obtained for the first time. On the basis of obtained data quantitative relation of Pu decays in bone volume to decays on bone surface in cortical and trabecular fractions were defined as 2.0 and 0.4, correspondingly. Actual quantitative relation of decays in bone volume to decays on bone surface is significantly different from recommended by ICRP for cortical fraction. Biokinetic model parameters of extrapulmonary ICRP compartment might need to be adjusted after expansion of data set on quantitative Pu microdistribution in other bone types in human that will involve new cases with different exposure pattern of radionuclide.


Assuntos
Indústria Química , Modelos Biológicos , Exposição Ocupacional/análise , Plutônio/metabolismo , Vértebras Torácicas/metabolismo , Adulto , Autorradiografia , Carga Corporal (Radioterapia) , Relação Dose-Resposta à Radiação , Humanos , Masculino , Plutônio/análise , Vértebras Torácicas/anatomia & histologia , Distribuição Tecidual , Recursos Humanos
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