The Statistical Dynamics of Turbulence / by Jovan Jovanovic

Por: Jovanovic, JovanTipo de material: TextoTextoDescripción: VIII, 141 p. : 24 cmISBN: 9783642057939Tema(s): Turbulencia -- Modelos matemáticos | Turbulencia -- Métodos estadísticosFormatos físicos adicionales: Printed edition:: Sin título
Contenidos:
1 Some historical notes on the statistical dynamics of turbulence -- 2 Dynamic equations for moments -- 3 Dynamics of the turbulent dissipation rate -- 4 Velocity-pressure gradient correlations -- 5 Turbulent transport -- A Application of the two-point correlation technique for interpreting the e equation -- References
Resumen: The crux of turbulence theory is the well known closure problem. This central and still unresolved issue of turbulence prevents reliable predictions even on the global flow behavior. This monograph introduces promising mathematical tools to shed new light on this problem to be able to generate simple and workable constructions and solutions for turbulent applications. Big parts of the book feature the turbulence dissipation process, the mechanism that controls growth of the energy and its transfer from large towards small-scale motions, demonstrating the great potential of the presented two-point correlation technique
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Existencias
Tipo de ítem Biblioteca de origen Signatura URL Estado Fecha de vencimiento Código de barras Reserva de ítems
Monografías 03. BIBLIOTECA INGENIERÍA PUERTO REAL
519.22/JOV/sta (Navegar estantería(Abre debajo)) Texto completo Prestado 31/01/2025 3743386987
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1 Some historical notes on the statistical dynamics of turbulence -- 2 Dynamic equations for moments -- 3 Dynamics of the turbulent dissipation rate -- 4 Velocity-pressure gradient correlations -- 5 Turbulent transport -- A Application of the two-point correlation technique for interpreting the e equation -- References

The crux of turbulence theory is the well known closure problem. This central and still unresolved issue of turbulence prevents reliable predictions even on the global flow behavior. This monograph introduces promising mathematical tools to shed new light on this problem to be able to generate simple and workable constructions and solutions for turbulent applications. Big parts of the book feature the turbulence dissipation process, the mechanism that controls growth of the energy and its transfer from large towards small-scale motions, demonstrating the great potential of the presented two-point correlation technique

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