MATHEMATICAL MODEL OF TWO-WAVE OPTOELECTRONIC DEVICE FOR REMOTE MONITORING OF EXPLOSIVE HYDROCARBONS CONCENTRATION
Abstract
The demand for hydrocarbons in industrial production enterprises and people's daily life is increasing day by day. In the same way, the oil refining and gas industries are developing very rapidly in all developed countries of the world. But today, small-scale, high-sensitivity, high-selectivity, and high-speed remote monitoring of explosive concentrations of hydrocarbons in the atmosphere are being developed.
Keywords
Mathematical model, high-selectivity, high-speed remote monitoring
References
Juraboyev, N. I., & Yuldashev, K. T. (2022). Analysis of energy saving techniques of home appliances. American Journal of Applied Science and Technology, 2(05), 61-66.
Tojimatov, S. S., & Yuldashev, K. T. (2022). Designing of the automated control system of liquid level in the tank sizes specified. International Journal of Advance Scientific Research, 2(05), 51-58.
Khamdamov, D. H., & Yuldashev, K. T. (2022). Using modern automation in the greenhouse. International Journal of Advance Scientific Research, 2(05), 28-37.
Abdumalikova, Z. I. (2021). Metrological provision in the production and its branches. Asian Journal of Multidimensional Research, 10(10), 1492-1496.
Abdumalikova, Z. I. (2021). Manifestation of Sources of Uncertainty in Measurements. Central Asian Journal of Theoretical and Applied Science, 2(12), 301-305.
Madmarova, U. A., & Abdumalikova, Z. I. (2022). The design of printed board drawings. American Journal of Applied Science and Technology, 2(07), 15-22.
Article Statistics
Downloads
Copyright License
Copyright (c) 2023 U.M. Mirzaeva, X.T. Yoldashev
This work is licensed under a Creative Commons Attribution 4.0 International License.