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The swept flow configuration generates a recirculation bubble with net mean axial flow.
We investigate heat transfer characteristics of a turbulent swept flow in a channel with a wire placed over one of its walls using direct numerical simulation.
This configuration is topologically similar to backward-facing steps or slots with swept flow, except that the dominant flow is along the obstacle axis in the present study and the crossflow is smaller than the axial flow, i.e., the sweep angle is large.
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The tuned model predictions were then compared to experimental data for the full range of feed and sweep flow rates (1 15 L min−1).
There exists a threshold voltage for the low swept wing flow control.
During baseline, the blood flow was 1500 mL/min and sweep flow was 10 L/min.
The effect of feed flow rate and sweep flow rate on oxygen permeation has been evaluated.
Subsequently, the effects of feed and sweep flow rates on temperature and reaction characteristics are presented.
It is observed that the flame length increases with increase in the sweep flow rates.
Most oxygenators support sweep flow rates of 10 mL/minute to 100 L/minute [25].
The temperature contours are presented in Fig. 20 for increasing sweep flow rates.
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