Fluid mechanics of regurgitant jets and calculation of the effective regurgitant orifice in free or complex configurations.
J Biomech
; 33(6): 677-84, 2000 Jun.
Article
en En
| MEDLINE
| ID: mdl-10807988
The velocity fields of turbulent jets can be described using a single formula which includes two empirical constants: k(core) determining the length of the central core and k(turb) the jet widening. Flow models simulating jet adhesion, confinement and noncircular orifices were studied using laser Doppler anemometer and the modifications of the constants were derived from series of velocity profiles. In circular free jets, k(core) was found equal to 4.1 with a variability of 1.4%. In complex configurations, its variability was equal to 15.2%. For k(turb), the value for free circular jets was of 45.2 with a variability of 6.0% and this variability in complex configurations was significantly higher (30. 1%, p=0.025). The correlation between the actual orifice size and the jet extension was poor (r=0.52). However, the almost constant value of k(core) allowed to define a new algorithm calculating the regurgitant orifice diameter with the use of outlines of the jet image (r=0.89). In conclusion, the fluid mechanics of regurgitant jets is modified in complex configurations but, due to the relative independency of the central core, velocity fields could be used to evaluate the dimensions of the effective regurgitant orifice.
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Colección:
01-internacional
Base de datos:
MEDLINE
Asunto principal:
Válvula Aórtica
/
Insuficiencia de la Válvula Aórtica
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Válvula Tricúspide
/
Insuficiencia de la Válvula Tricúspide
/
Hemorreología
/
Válvula Mitral
/
Insuficiencia de la Válvula Mitral
/
Modelos Cardiovasculares
Límite:
Humans
Idioma:
En
Revista:
J Biomech
Año:
2000
Tipo del documento:
Article
País de afiliación:
Francia
Pais de publicación:
Estados Unidos