MECHANIZATION OF LABOR-INTENSIVE PROCESSES OF FLOW TECHNOLOGY OF RICE PROCESSING

Received 01.11.2022
Revised 23.01.2023
Published 28.02.2023

Abstract

The aim of this article is to identify the labor-intensive technological operations of rice processing and the development of recommendations for mechanization of the processes of in-line technology of rice processing. On the basis of existing methods of rice purification in the conditions of farms of Kyrgyzstan scientific results of flow technology of processing and mechanization of labor-intensive processes are considered. By results of analysis of technological operations and design-technological parameters of machines and equipment are recommended designs of installations for transportation of rice mass

Keywords

Rice rice processing flow technology rice drying rice cleaning rice threshing rice processing machinery and equipment transport equipment
Suggested citation
Zhusupov, U., & Almanbet uulu, B. (2023). MECHANIZATION OF LABOR-INTENSIVE PROCESSES OF FLOW TECHNOLOGY OF RICE PROCESSING . Bulletin of the Kyrgyz National Agrarian University, 21(1), 146-154.

References

[1] Alizadeh, M.R. (2011). Effect of paddy husked ratio on rice breakage and whiteness during milling process. Australian Journal of Crop Science, 5(5), 562-565.

[2] Dyachenko, N.P. (2013). Search and scientific justification of rational design solutions in the technology of comprehensive processing of raw rice. Bulletin of Astrakhan State Technical University, (1)55, 16-22.

[3] Dospekhov, B.A. (1985). Methodology of field experiments (with basics of statistical processing of research results) (5th ed.). Moscow: Agropromizdat.

[4] Japsarbekov, G.P. (2015). A new method for husking rice grain in a husking machine. Mechanics and Technologies, 4(50), 114-118.

[5] Jusupov, U.T. (2013). Technological factors affecting the quality characteristics of rice. Bulletin of Jalal-Abad State University, 1(27), 488-490.

[6] Jusupov, U.T. (2015). Flow technology for processing Uzgen rice. Bulletin of Kyrgyz National Agrarian University named after K.I. Skryabin, 4(36), 123-127.

[7] Jusupov, U.T. (2021). Comparative analysis of the rice drying process. Bulletin of Kyrgyz National Agrarian University named after K.I. Skryabin, 2(56), 57-61.

[8] Pleskunov, M.A. (2022). Theory of queuing systems: Textbook. Ekaterinburg: Ural University Publishing.

[9] Samoilov, V.A., Nevzorov, V.N., Yarum, A.I., et al. (2015). Development of technological equipment for rice husking. In Problems of modern agrarian science: Proceedings of the International correspondence scientific conference (pp. 193-196). Krasnoyarsk.

[10] Shogenov, M.Yu. (2019). Modeling the process of rice grain husking in a confined conical space. In International scientific conference of students, graduate students, and young scientists: Perspective-2019 (Vol. 2, pp. 287-291). Nalchik: Kabardino-Balkarian State University named after H.M. Berbekov.

[11] Shogenov, M.Yu., Didanov, M.Ts., & Shcherenko, A.P. (2019). Study of the design parameters and operating modes of a husking machine during rice husking. Natural and Technical Sciences, 12(138), 382-385.

[12] Shogenov, M.Yu., Soltaliev, M.S., Adamaev, M.S., Aloev, R.B., Didanov, M.Ts., & Shcherenko, A.P. (2020). Influence of design parameters and operating modes of a husking machine on the energy intensity of the process and the quality of rice husking. Natural and Technical Sciences, 4(142), 138-142.

[13] Smailov, E.A., & Smailova, Kh.E. (2017). Rice production in Kyrgyzstan, technology, and quality characteristics of the famous Uzgen rice. Engineer: Scientific and Periodical Publication of the Engineering Academy of the Kyrgyz Republic, 5, 18-28.

[14] Smailov, E.A., Samieva, Zh.T., & Smailova, Kh.E. (2011). Rice – a unique crop. Bishkek.

[15] Suyundukov, U.A. (2005). Productivity of post-harvest rice depending on sowing dates and methods in the conditions of the Fergana Valley of the Kyrgyz Republic. (PhD dissertation in Agricultural Sciences, Bishkek, Kyrgyz Republic).