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  • The systematic theoretical investigation of the optical viscometer utilizing the bend loss of fiber is carried out. The physical and mathematical model of the vibrating fiber submerged in a viscous fluid has been put forward. The impact of the viscosity and density on the resonance frequency shift has been elucidated. Based on the solution of the model simple ways of the viscosity extraction from maximum vibrational amplitude, bandwidth and the resonance frequency shift have been proposed. The theoretically achievable resolution of the viscosity sensing from a half-amplitude bandwidth with the instrumental error 2 Hz is 0.04 mPas for high viscous 72% glycerol-water solution.
  • The systematic theoretical investigation of the optical viscometer utilizing the bend loss of fiber is carried out. The physical and mathematical model of the vibrating fiber submerged in a viscous fluid has been put forward. The impact of the viscosity and density on the resonance frequency shift has been elucidated. Based on the solution of the model simple ways of the viscosity extraction from maximum vibrational amplitude, bandwidth and the resonance frequency shift have been proposed. The theoretically achievable resolution of the viscosity sensing from a half-amplitude bandwidth with the instrumental error 2 Hz is 0.04 mPas for high viscous 72% glycerol-water solution. (en)
Title
  • Analysis of the optical Viscometer utilizing bend lost of fiber
  • Analysis of the optical Viscometer utilizing bend lost of fiber (en)
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  • Analysis of the optical Viscometer utilizing bend lost of fiber
  • Analysis of the optical Viscometer utilizing bend lost of fiber (en)
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  • RIV/61388998:_____/10:00349273!RIV11-AV0-61388998
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  • P(IAA200760801), Z(AV0Z20760514)
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  • 246504
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  • RIV/61388998:_____/10:00349273
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  • viscosity; bend loss of the fibe; resonance (en)
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  • [426F43597D09]
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  • Perth
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  • Perth
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  • The 13th International meeting on Chemical Sensors IMC-13
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  • Fedorchenko, Alexander I.
  • Stachiv, Ivo
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number of pages
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  • Technical Digest
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  • 978-1-74052-208-3
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