Home
People
Research
Education
Publications
Publications
Refereed articles
PhD theses
Master theses
Movies
Highlights
Disentangling the origins of torque enhancement through wall roughness in Taylor–Couette turbulence
arΧiv
Journal of Fluid Mechanics
812
, 279–293 (
2017
)
Authors
Xiaojue Zhu
Roberto Verzicco
Detlef Lohse
BibTeΧ
@article{zhu2017, title = "Disentangling the origins of torque enhancement through wall roughness in Taylor–Couette turbulence", doi = "10.1017/jfm.2016.815", publisher = "Cambridge University Press", address = "Cambridge, UK", author = "Xiaojue Zhu and Roberto Verzicco and Detlef Lohse", volume = "812", pages = "279-293", year = "2017", month = "002", day = "10", abstract = "Direct numerical simulations (DNS) are performed to analyse the global transport properties of turbulent Taylor–Couette flow with inner rough wall up to Taylor number\$Ta=10\textasciicircum\{10\}\$. The dimensionless torque \$Nu\_\{\textbackslashunicode[STIX]\{x1D714\}\}\$ shows an effective scaling of \$Nu\_\{\textbackslashunicode[STIX]\{x1D714\}\}\textbackslashpropto Ta\textasciicircum\{0.42\textbackslashpm 0.01\}\$, which is steeper than the ultimate regime effective scaling \$Nu\_\{\textbackslashunicode[STIX]\{x1D714\}\}\textbackslashpropto Ta\textasciicircum\{0.38\}\$ seen for smooth inner and outer walls. It is found that at the inner rough wall, the dominant contribution to the torque comes from the pressure forces on the radial faces of the rough elements; while viscous shear stresses on the rough surfaces contribute little to \$Nu\_\{\textbackslashunicode[STIX]\{x1D714\}\}\$. Thus, the log layer close to the rough wall depends on the roughness length scale, rather than on the " # "viscous length scale. We then separate the torque contributed from the smooth inner wall and the rough outer wall. It is found that the smooth wall torque scaling follows \$Nu\_\{s\}\textbackslashpropto Ta\_\{s\}\textasciicircum\{0.38\textbackslashpm 0.01\}\$, in excellent agreement with the case where both walls are smooth. In contrast, the rough wall torque scaling follows \$Nu\_\{r\}\textbackslashpropto Ta\_\{r\}\textasciicircum\{0.47\textbackslashpm 0.03\}\$, very close to the pure ultimate regime scaling \$Nu\_\{\textbackslashunicode[STIX]\{x1D714\}\}\textbackslashpropto Ta\textasciicircum\{1/2\}\$. The energy dissipation rate at the wall of an inner rough cylinder decreases significantly as a consequence of the wall shear stress reduction caused by the flow separation at the rough elements. On the other hand, the latter shed vortices in the bulk that are transported towards the outer cylinder and dissipated. Compared to the purely smooth case, the inner wall roughness renders the" # " system more bulk dominated and thus increases the effective scaling exponent.", url = "https://www.cambridge.org/core/article/div-class-title-disentangling-the-origins-of-torque-enhancement-through-wall-roughness-in-taylor-couette-turbulence-div/9C11B1DF63EAB511E2A76C1705CF4009", journal = "Journal of Fluid Mechanics" }
Original
Standardized
Standardized short