Oscillating fluid flow (zero mean) with heat transfer, between two parallel plates with a sudden change in cross section, was examined computationally. The flow was assumed to be laminar and incompressible with inflow velocity uniform over the channel cross section but varying sinusoidally with time. Over 30 different cases were examined; these cases cover wide ranges of Re sub max (187.5 to 30000), Va (1 to 350), expansion ratio (1:2, 1:4, 1:8, and 1:12) and A sub r (0.68 to 4). Three different geometric cases were considered (asymmetric expansion and/or contraction, symmetric expansion/contraction, and symmetric blunt body). The heat transfer cases were based on constant wall temperature at higher (heating) or lower (cooling) value than t...
In this study, heat transfer under oscillating flow conditions has been investigated conducting a wi...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Heat transfer and boundary layer behavior in subsonic oscillating and steady airflow
We have computationally examined oscillating flow (zero mean) between two parallel plates with a sud...
In this paper, we have computationally examined oscillating flow (zero mean between) two parallel pl...
An accurate finite-difference scheme has been utilized to investigate oscillatory, laminar and incom...
Understanding of heat transfer processes between a solid boundary and an oscillatory gas flow is imp...
Heat exchange processes in steady flows have been studied extensively over the last two hundred year...
Thesis (M.S.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 1995.Includes...
Heat transfer rates in pulse combustor tail pipes and in other reversing, oscillating, turbulent flo...
Fluid flows of varying temperature occur in heat exchangers, nuclear reactors, nonsteady-flow device...
Fully developed turbulent and laminar flows through symmetric planar and axisymmetric expansions wit...
The work done during the progress report period from May-October 1992 is summarized. The effect of w...
Pressure oscillations imposed upon a compressible fluid flowing in a duct produce a substandtial inc...
A previous analysis of turbulent heat transfer and flow with variable fluid properties in smooth pas...
In this study, heat transfer under oscillating flow conditions has been investigated conducting a wi...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Heat transfer and boundary layer behavior in subsonic oscillating and steady airflow
We have computationally examined oscillating flow (zero mean) between two parallel plates with a sud...
In this paper, we have computationally examined oscillating flow (zero mean between) two parallel pl...
An accurate finite-difference scheme has been utilized to investigate oscillatory, laminar and incom...
Understanding of heat transfer processes between a solid boundary and an oscillatory gas flow is imp...
Heat exchange processes in steady flows have been studied extensively over the last two hundred year...
Thesis (M.S.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 1995.Includes...
Heat transfer rates in pulse combustor tail pipes and in other reversing, oscillating, turbulent flo...
Fluid flows of varying temperature occur in heat exchangers, nuclear reactors, nonsteady-flow device...
Fully developed turbulent and laminar flows through symmetric planar and axisymmetric expansions wit...
The work done during the progress report period from May-October 1992 is summarized. The effect of w...
Pressure oscillations imposed upon a compressible fluid flowing in a duct produce a substandtial inc...
A previous analysis of turbulent heat transfer and flow with variable fluid properties in smooth pas...
In this study, heat transfer under oscillating flow conditions has been investigated conducting a wi...
Heat exchangers are important components of thermoacoustic devices. In oscillatory flow conditions, ...
Heat transfer and boundary layer behavior in subsonic oscillating and steady airflow