dc.contributor
Universitat Politècnica de Catalunya. Departament de Màquines i Motors Tèrmics
dc.contributor
Universitat Politècnica de Catalunya. CTTC - Centre Tecnològic de la Transferència de Calor
dc.contributor.author
Rodríguez Pérez, Ivette María
dc.contributor.author
Borrell Pol, Ricard
dc.contributor.author
Lehmkuhl Barba, Oriol
dc.contributor.author
Pérez Segarra, Carlos David
dc.contributor.author
Oliva Llena, Asensio
dc.date.issued
2011-05-19
dc.identifier
Rodriguez, I. [et al.]. Direct numerical simulation of the flow over a sphere at Re = 3700. "Journal of fluid mechanics", 19 Maig 2011, vol. 679, núm. 2011, p. 263-287.
dc.identifier
https://hdl.handle.net/2117/23986
dc.identifier
10.1017/jfm.2011.136
dc.description.abstract
The direct numerical simulation of the flow over a sphere is performed. The computations are carried out in the sub-critical regime at Re = 3700 (based on the free-stream velocity and the sphere diameter). A parallel unstructured symmetry-preserving formulation is used for simulating the flow. At this Reynolds number, flow separates laminarly near the equator of the sphere and transition to turbulence occurs in the separated shear layer. The vortices formed are shed at a large-scale frequency, St = 0.215, and at random azimuthal locations in the shear layer, giving a helical-like appearance to the wake. The main features of the flow including the power spectra of a set of selected monitoring probes at different positions in the wake of the sphere are described and discussed in detail. In addition, a large number of turbulence statistics are computed and compared with previous experimental and numerical data at comparable Reynolds numbers. Particular attention is devoted to assessing the prediction of the mean flow parameters, such as wall-pressure distribution, skin friction, drag coefficient, among others, in order to provide reliable data for testing and developing statistical turbulence models. In addition to the presented results, the capability of the methodology used on unstructured grids for accurately solving flows in complex geometries is also pointed out.
dc.description.abstract
Postprint (published version)
dc.format
application/pdf
dc.rights
Restricted access - publisher's policy
dc.subject
Àrees temàtiques de la UPC::Enginyeria mecànica::Mecànica de fluids
dc.subject
Fluid mechanics
dc.subject
Mecànica de fluids
dc.title
Direct numerical simulation of the flow over a sphere at Re = 3700