TY - JOUR
T1 - Recent progress in homogeneous isotropic polymeric turbulence
AU - Zhang, Yi Bao
AU - Wang, Feng
AU - Xi, Heng Dong
N1 - Publisher Copyright:
© The Chinese Society of Theoretical and Applied Mechanics and Springer-Verlag GmbH Germany, part of Springer Nature 2026.
PY - 2026/4
Y1 - 2026/4
N2 - Minute amounts of long-chain flexible polymers dissolved in fluid flows can significantly alter the flow behaviors, including polymer drag reduction in wall-bounded turbulence and elastic turbulence in low Reynolds number flow. Polymer-turbulence interaction, a combination of two fields with many interacting degrees of freedom deviated far from equilibrium, is the key to understanding these intriguing phenomena. In this paper, we review the recent progress of polymer-turbulence interaction in homogeneous isotropic turbulence. For integrity, we first list the governing equations for the flow of a dilute polymer solution. Afterwards, we summarize related theories for the critical length scale below which the energy cascade of Newtonian turbulence is affected by polymers. We then review the theoretical, experimental, and numerical results about the scaling and statistical properties in those affected range of scales. We also include the implications of these results for polymer drag reduction in wall-bounded turbulence. The review has ended up with conclusions from our present understanding and outlooks for future work.
AB - Minute amounts of long-chain flexible polymers dissolved in fluid flows can significantly alter the flow behaviors, including polymer drag reduction in wall-bounded turbulence and elastic turbulence in low Reynolds number flow. Polymer-turbulence interaction, a combination of two fields with many interacting degrees of freedom deviated far from equilibrium, is the key to understanding these intriguing phenomena. In this paper, we review the recent progress of polymer-turbulence interaction in homogeneous isotropic turbulence. For integrity, we first list the governing equations for the flow of a dilute polymer solution. Afterwards, we summarize related theories for the critical length scale below which the energy cascade of Newtonian turbulence is affected by polymers. We then review the theoretical, experimental, and numerical results about the scaling and statistical properties in those affected range of scales. We also include the implications of these results for polymer drag reduction in wall-bounded turbulence. The review has ended up with conclusions from our present understanding and outlooks for future work.
KW - Energy cascade
KW - Homogeneous isotropic turbulence
KW - Polymer drag reduction
KW - Turbulent flow with polymers
UR - https://www.scopus.com/pages/publications/105029833252
U2 - 10.1007/s10409-025-25360-x
DO - 10.1007/s10409-025-25360-x
M3 - 文献综述
AN - SCOPUS:105029833252
SN - 0567-7718
VL - 42
JO - Acta Mechanica Sinica/Lixue Xuebao
JF - Acta Mechanica Sinica/Lixue Xuebao
IS - 4
M1 - 325360
ER -