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- W2078553645 abstract "This paper describes a two-wire thermal velocity sensor operating with an electrically heated upstream wire and a downstream wire acting as a resistance thermometer. The sensor can be operated in such a way that the phase shift between the periodic (sinusoidal) voltage that drives the first wire and the detected second signal is controlled by a combination of convection, diffusion and the finite thermal response time of the wires. This yields an effective operating range of 0.05?m?s-1?U?25?m?s-1 and corresponds to a bandwidth of 1-500. This wide velocity range is confirmed theoretically and experimentally for a number of sensors. The paper provides detailed analytical and numerical investigations which are well verified by experiments. The resultant design work also aimed at a sensor that can be manufactured industrially and can therefore be produced at low cost. Our immediate application is the measurement of flow velocities (or volume flow rates) in slowly changing unidirectional flows. This sensor design is briefly described and the description involves the mechanical part of the sensor as well as the electronics. Calibration of the first automatically manufactured sensors is shown. It is demonstrated that their performance is as good as those of the sensors that the authors have designed and built during their initial development work." @default.
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- W2078553645 date "2001-02-06" @default.
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- W2078553645 title "Theoretical and experimental investigations of a wide-range thermal velocity sensor" @default.
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- W2078553645 doi "https://doi.org/10.1088/0957-0233/12/3/301" @default.
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