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The experiments and simulations were done for three different riser tubes with variable length and diameter.
A theoretical model has been developed for the drop behaviour in siphon riser tubes in paper drying cylinders.
Two flow models are used: single phase liquid in the downcomer and riser, and liquid vapor mixture in the riser tubes.
The flow inside the absorber tubes is laminar; the major pressure loss inside riser tubes was measured using a high accuracy differential pressure transmitter, which then permits the indirect estimation of the mean velocity inside the tubes.
Stress-controlled fatigue tests were run at different R ratios (= σmin/σmax) up to at most 3 million cycles on a 2.5%Cr 1%Mo steel (ASTM A182 F22) used in riser tubes connectors for offshore oil drilling.
Design parameters of both the system and the collector were optimized that include collector area, fluid type, collector mass flow rate, storage tank volume and height, heat exchanger effectiveness, size and length of connecting pipes, absorber plate material and thickness, number and size of the riser tubes, tube spacing, and the collector's aspect ratio.
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Calculated drop trajectories indicate that the drops travel only a small part of the riser tube length before they are deflected to the frontside of the riser tube.
A microwave plasma source was integrated in the riser tube of a circulating fluidized bed (CFB) reactor.
The particle transport system, which consists of a suction chamber, a mixing chamber, a nozzle and a riser tube, is designed to be controlled completely by hydraulic force.
The deposition process was conducted in a circulating fluidized bed (CFB) reactor with a microwave plasma source integrated in the riser tube.
Airlift pumps are very simple devices consisting of a vertical riser tube which is partially immersed in the liquid to be pumped and into which air is injected at the base to produce an upward flow.
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CEO of Professional Science Editing for Scientists @ prosciediting.com