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Hence the model developed considers both single and two-phase flow regimes.
The influence of manifold design, channel design, the location of inlet and outlet connections to the heat exchanger along with the use of secondary header has been discussed for both single and two-phase flow.
This study aims to validate the performance of a three-stage helico-axial multiphase pump with new designed impellers and high rotational speed in both single and two-phase experiments.
Then, it is shown that the standard pressure velocity coupling scheme for collocated algorithms is not sufficient for multiphase flows, and therefore a new pressure velocity coupling is devised and tested for both single and two-phase flows.
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The heat transfer performance of the HEX was determined for both single- and two-phase flow.
It is found that using ethanol/PAO nanoemulsion fluids can improve convective heat transfer compared to that of pure PAO under both single- and two-phase flow regimes.
Several models have been developed in the literature to describe the behaviour of the thermal conductivity of a porous bed in both single- and two-phase flow.
In this paper, we model the main qualitative features of the experimentally measured propagators for both single- and two-phase flow using connected 3D pore network models of porous media.
The propagator is modelled directly by incorporating transport due to both convection and diffusion for large numbers of marker particles (the nuclei) for both single- and two-phase flow.
Because the literature lacks data on the implementation and operation of full-scale AD plants for enhanced energy recovery from vinasse, this study presents different designs for AD plants applied to vinasse in large-scale distilleries, considering both single- and two-phase schemes and different alkalizing strategies.
The network model captures most of the qualitative features for both single- and two-phase propagators thus giving us the capability to clearly interpret the respective flowing and non-flowing fractions of the oil (non-wetting) and water (wetting) phases in two-phase experiments.
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