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Experimental data of the circular cylinder in a straight duct are conducted to provide a benchmark.
Finally that distal convoluted tubule flows into a straight duct that goes down through the medulla called the collecting duct.
The results suggest that spiral ducts offer better reaction performance as compared to straight duct, especially at higher Reynolds number.
The activation and the delayed gamma-ray distribution after passing through the straight duct were simulated in the experiment.
Some issues involved in establishing a numerical model for sound radiation from a straight duct are addressed in this paper.
Theory is developed to describe the transmission of sound along a straight duct, and along a sidebranch.
Similar(41)
Twist ratio of 11.5 shows relatively higher heat transfer and pressure drop compared to straight square duct.
Results were compared with the flow inside the annulus of an equivalent straight square duct in a circular pipe for identical pumping power.
This paper presents the coarse-grid direct numerical simulation (c-DNS) of forced turbulent heat convection in a straight square duct (SSD) at a bulk Reynolds number of 104.
The network consists of straight ducts, elbows and branched ducts.
Based on constant pumping power criteria, enhancement factor is defined to compare twisted ducts with straight ducts.
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