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Health Phys ; 111(5): 432-41, 2016 11.
Artigo em Inglês | MEDLINE | ID: mdl-27682902

RESUMO

A planned laboratory space and exhaust system modification to the Pacific Northwest National Laboratory Material Science and Technology Building indicated that a new evaluation of the mixing at the air sampling system location would be required for compliance to ANSI/HPS N13.1-2011. The modified exhaust system would add a third fan, thereby increasing the overall exhaust rate out the stack, thus voiding the previous mixing study. Prior to modifying the radioactive air emissions exhaust system, a three-dimensional computational fluid dynamics computer model was used to evaluate the mixing at the sampling system location. Modeling of the original three-fan system indicated that not all mixing criteria could be met. A second modeling effort was conducted with the addition of an air blender downstream of the confluence of the three fans, which then showed satisfactory mixing results. The final installation included an air blender, and the exhaust system underwent full-scale tests to verify velocity, cyclonic flow, gas, and particulate uniformity. The modeling results and those of the full-scale tests show agreement between each of the evaluated criteria. The use of a computational fluid dynamics code was an effective aid in the design process and allowed the sampling system to remain in its original location while still meeting the requirements for sampling at a well mixed location.


Assuntos
Ar Condicionado/instrumentação , Poluentes Radioativos do Ar/análise , Poluentes Radioativos do Ar/isolamento & purificação , Modelos Teóricos , Proteção Radiológica/normas , Reologia/instrumentação , Ar Condicionado/normas , Simulação por Computador , Desenho de Equipamento , Análise de Falha de Equipamento , Fidelidade a Diretrizes/normas , Guias como Assunto , Proteção Radiológica/instrumentação , Reologia/normas
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