Voltar aos resultados
Registro bibliográfico · Consulta e acesso
Artículo

1/3D modeling of the core coolant circuit of a PHWR nuclear power plant

Corzo, Santiago Francisco et al · Elsevier · 2015

Material complementar disponível
Leitura rápida. Confira os dados básicos do recurso e acesse o conteúdo pelo botão principal. Esta ficha mostra apenas as informações necessárias para identificar, citar e abrir a obra.

Acesso ao recurso

Acesse o conteúdo pela opção principal ou escolha outra fonte disponível.

CONICET Digital CONICET Digital OAI-PMH
Entrar por CONICET Digital
Acesso principal

Material complementar disponível

El enlace apunta a material asociado, anexos, tablas, datos o página complementaria. No se marca como libro/texto completo.
Abrir material

Resumo

Descripción general del contenido del recurso.

A multi-dimensional computational fluid dynamics (CFD) one-phase model to simulate the incore coolant circuit of a Pressurized Heavy Water Reactor (PHWR) of a nuclear power plant (NPP) was performed. Three-dimensional (3D) detailed modeling of the upper and lower plenums, the downcomer and the hot and cold leg nozzles was combined with finite volume one-dimensional (1D) code for modeling the behavior of all the 451 coolant channels. Suitable functions for introducing the distributed (friction losses) and concentrated (spacer grids, inlet restrictors and outlet throttles) pressure losses were used to consider the local pressure variation along the coolant channels. The special power distribution at each coolant channel was also taken into account. Results were compared with those previously obtained with a 0/3D model getting more realistic temperature patterns at the upper plenum. Although the present model is restricted to one-phase phenomena, the prediction of the local pressure and temperature along the channels allows for a preliminary identification of the location of incipient boiling by comparing with the local saturation temperature. The present model represents an improvement with respect to the previous 0/3D model. It corresponds to the necessary step before achieving a 1/3D two-phase model with which the pressure drop and subcooled boiling along the coolant channels as well as the overall reactor pressure vessel (RPV) void fraction distribution can be evaluated more accurately. Fil: Corzo, Santiago Francisco. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Santa Fe. Centro de Investigaciones En Metodos Computacionales. Universidad Nacional del Litoral. Centro de Investigaciones En Metodos Computacionales; Argentina. Autoridad Regulatoria Nuclear; Argentina Fil: Ramajo, Damian Enrique. Consejo Nacional de Investigaciones Científicas y Técnicas. Centro Científico Tecnológico Conicet - Santa Fe. Centro de Investigaciones En Metodos Computacionales. Universidad Nacional del Litoral. Centro de Investigaciones En Metodos Computacionales; Argentina

Como citar

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

Corzo, S. F. E. A. (2015). 1/3D modeling of the core coolant circuit of a PHWR nuclear power plant. http://hdl.handle.net/11336/19561

MLA

Corzo, Santiago Francisco et al. "1/3D modeling of the core coolant circuit of a PHWR nuclear power plant." 2015. http://hdl.handle.net/11336/19561.

Chicago

Corzo, Santiago Francisco et al. 2015. "1/3D modeling of the core coolant circuit of a PHWR nuclear power plant.". http://hdl.handle.net/11336/19561.

Harvard

Corzo, S. F. E. A. 2015, 1/3D modeling of the core coolant circuit of a PHWR nuclear power plant, Elsevier, available at: http://hdl.handle.net/11336/19561 [Accessed 6 Aug. 2026].

Compartilhar e imprimir

Salve a ficha, copie o link permanente ou imprima em PDF.

Exportar referência

Exporte o registro nos formatos mais comuns para usar em um gerenciador bibliográfico.

Detalhes do recurso

Informações bibliográficas para confirmar que este é o material correto.

Título
1/3D modeling of the core coolant circuit of a PHWR nuclear power plant
Autor / colaboradores
Corzo, Santiago Francisco et al
Editora
Elsevier
Ano de publicação
2015
ISSN
0306-4549
ISSN
0306-4549
Idioma
Inglés

Assuntos

Explore recursos relacionados a partir destes assuntos.

Copiado