ARCHITECTURE AND ALGORITHMIC MODEL OF THE ULTRASONIC VISCOSITY AND DENSITY METER

Authors

  • Yusupbekov Nodirbek Rustambekovich Tashkent State Technical University
  • Ergasheva Kamola Nasriddinovna Tashkent State Technical University

Keywords:

viscosity, density, ultrasonic measurement, vibrational sensors, neural networks, measurement systems.

Abstract

The article provides an analytical review of modern approaches and technologies for measuring the viscosity and density of liquid media. Classical and innovative techniques are analyzed, including capillary, vibrational, ultrasonic, optical, and hybrid methods. Special attention is paid to high-frequency acoustic systems and intelligent data-processing algorithms based on wavelet analysis and neural networks. The study highlights the principles of next-generation instruments that ensure high-accuracy measurements in in situ mode. Integration of networks sensor with digital platforms and Industry 4.0 technologies significantly enhances the effectiveness of liquid property monitoring. Comparative characteristics of sensitivity, measurement range, and metrological performance of existing instruments are presented.

References

Yusupbekov NR, Gulyamov SM Smart ultrasonic viscoplotnometers with adaptive control. Measurement, 2022, 196: 111830.

Advantages of analytical solutions of sentience cloud platform CTCM Yusupbekov N.R., Sujith S., Anand N., Abdurasulov F.R.

Krasilnikov V.A. Acoustic methods for viscosity measurement. Acoustical Physics, 2021, 67(5): 510–519. DOI: 10.1134/S1063771021050121.

Uttam K. K, Sayantan SU /An analytical theory for the forced convection condensation of shear-thinning fluids onto isothermal horizontal surfaces.− Applied Mathematics and Computation/Volume 421, 15 May 2022,https://doi.org/10.1016/j.amc.2021.126909

Coussot P. Rheometry of Pastes, Suspensions and Granular Materials. – Wiley, 2005.

Yusupbekov N.R., Abdurakhmanov H.T., Gulyamov Sh.M. Intelligent methods for measuring physical parameters of liquid systems. – Tashkent: Fan, 2018.

Gulyamov Sh.M. Digitalization of measurement processes in chemical-engineering systems. – Tashkent: TSTU, 2020. – 164 p.

Mason W. P. Physical Acoustics. – Academic Press, 2018.

Barnes H. A. Rheology of Non-Newtonian Fluids. – Oxford: Pergamon Press, 2019.

Ferry J.D. Viscoelastic Properties of Polymers. – New York: Wiley, 2010.

Macosko C. W. Rheology: Principles, Measurements and Applications. – Wiley-VCH, 2014.

Kraynik AM Oscillatory methods for measuring viscosity. – J. Rheology, 2010.

Mezger T.G. The Rheology Handbook. – Vincentz Network, 2014.

Krasilnikov V.A. Acoustic methods for studying liquids. – M., 2005.

Malkin A.Ya. Rheology: concepts, methods, applications. – M.: Chemistry, 2010.

Downloads

Published

2026-04-28

How to Cite

Yusupbekov Nodirbek Rustambekovich, & Ergasheva Kamola Nasriddinovna. (2026). ARCHITECTURE AND ALGORITHMIC MODEL OF THE ULTRASONIC VISCOSITY AND DENSITY METER. Ethiopian International Journal of Multidisciplinary Research, 13(4), 2373–2380. Retrieved from https://www.eijmr.org/index.php/eijmr/article/view/6458