Direct numerical simulations of temporally decelerating turbulent pipe flows are performed to examine the effects of temporal deceleration on the turbulence characteristics. The temporal decelerations are applied with three different values of the decelerating parameter f = |d U (b) /dt| based on the bulk mean velocity (U (b) ) to introduce weak, mild and strong decelerations, and the flow rates for all cases are linearly decreased with time. In order to highlight the variation of the turbulent statistics for an unsteady flow, five independent simulations of steady flows are conducted along with the Reynolds number. An inspection of the mean velocity profiles shows that the log law in the overlap region is established with a slight downward...
An experimental study of wall shear stress in an accelerating flow of water in a pipe ramping betwee...
Fluid transportation through pipes always generates energy dissipation due to frictional drag at the...
Direct numerical simulations (DNSs) of fully developed turbulent pipe flows with a 30. R streamwise ...
Direct numerical simulations of temporally decelerating turbulent pipe flows were performed to exami...
Direct numerical simulations (DNSs) of turbulent pipe flows with temporal deceleration were performe...
Wall shear stresses in decelerating pipe flows are studied using a well-established CFD code develop...
This investigation characterises the time response and the transient turbulence dynamics undergone b...
Direct numerical simulations (DNS) have been performed for turbulent pipe flows using a high-order s...
A CFD model of turbulent flow in a smooth pipe accelerating uniformly from steady state is used to s...
In this paper, transient flow in a pipe at Reynolds numbers (based on bulk velocity and diameter) ra...
Turbulence is a commonly encountered state of fluid dynamics. Unsteady turbulent flows in pipes are ...
The unsteady turbulent channel flow subject to the temporal acceleration is considered in this study...
In this paper, transient flow in a pipe at Reynolds numbers (based on bulk velocity and diameter) ra...
Shear flow turbulence in oscillatory fluid motions is of theoretical interest and practical relevanc...
Direct numerical simulations (DNS) of a transient turbulent channel flow subject to constant tempora...
An experimental study of wall shear stress in an accelerating flow of water in a pipe ramping betwee...
Fluid transportation through pipes always generates energy dissipation due to frictional drag at the...
Direct numerical simulations (DNSs) of fully developed turbulent pipe flows with a 30. R streamwise ...
Direct numerical simulations of temporally decelerating turbulent pipe flows were performed to exami...
Direct numerical simulations (DNSs) of turbulent pipe flows with temporal deceleration were performe...
Wall shear stresses in decelerating pipe flows are studied using a well-established CFD code develop...
This investigation characterises the time response and the transient turbulence dynamics undergone b...
Direct numerical simulations (DNS) have been performed for turbulent pipe flows using a high-order s...
A CFD model of turbulent flow in a smooth pipe accelerating uniformly from steady state is used to s...
In this paper, transient flow in a pipe at Reynolds numbers (based on bulk velocity and diameter) ra...
Turbulence is a commonly encountered state of fluid dynamics. Unsteady turbulent flows in pipes are ...
The unsteady turbulent channel flow subject to the temporal acceleration is considered in this study...
In this paper, transient flow in a pipe at Reynolds numbers (based on bulk velocity and diameter) ra...
Shear flow turbulence in oscillatory fluid motions is of theoretical interest and practical relevanc...
Direct numerical simulations (DNS) of a transient turbulent channel flow subject to constant tempora...
An experimental study of wall shear stress in an accelerating flow of water in a pipe ramping betwee...
Fluid transportation through pipes always generates energy dissipation due to frictional drag at the...
Direct numerical simulations (DNSs) of fully developed turbulent pipe flows with a 30. R streamwise ...