2018
DOI: 10.1109/tmbmc.2019.2926722
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High Speed Chemical Vapor Communication Using Photoionization Detectors in Turbulent Flow

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Cited by 9 publications
(7 citation statements)
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“…The authors in [25] argued that this positive effect resulted from the emergence of stable structures, i.e., vortex rings, in the presence of the turbulent flow introduced by the obstacle. Similar phenomena have been observed in air-based SMC experiments in which the transmission medium exhibits turbulent flow [28], [29], cf. Section III.…”
Section: B Pipeline and Underwater Communicationssupporting
confidence: 82%
See 3 more Smart Citations
“…The authors in [25] argued that this positive effect resulted from the emergence of stable structures, i.e., vortex rings, in the presence of the turbulent flow introduced by the obstacle. Similar phenomena have been observed in air-based SMC experiments in which the transmission medium exhibits turbulent flow [28], [29], cf. Section III.…”
Section: B Pipeline and Underwater Communicationssupporting
confidence: 82%
“…2) Confined Environments: To study confined air-based SMC systems, experiments are conducted within pipes and boxes, which constitute the boundaries. The Txs and Rxs are either attached via confined boxes to a connecting pipe [35], [41], [43] or placed within the pipe [28], [40], [42]. Within the pipe, possibly background flow with adjustable flow speed exists, similar to real world ventilation pipes, which is either controlled by a fan [28], [40], [42] or by a mass flow controller [41].…”
Section: Mobile Fluid Droplet-based Transmissionmentioning
confidence: 99%
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“…In [13], a platform in which a mass spectrometer (as a RX) and an odor generator (as a TX) communicate is developed. [14] proposes a platform with a chemical vapor transmitter and photoionization detectors. Moreover, laser induced florescence technique is implemented as an experimental platform for macroscale MC [15].…”
Section: Introductionmentioning
confidence: 99%