SPECIFICITY OF TACHMETER ANEMOMETER IMPELLER OPERATION UNDER THE ACTION OF MAXIMAL VELOCITY FLOW

UDС  551.508.53.001.5:533.6

Authors:

 T.V. Bunko, D.Sc. (Tech.), Senior Researcher,

M.N. Dudnik, M.S.(Tech.),

V.N. Veretennik, M.S. (Tech.),

A.I. Vishnitskiy, M.S. (Tech.)

(IGTM NAS of Ukraine)

A.Sh. Zhalilov, M.S. (Tech.)

(SE «Selidovugol»)

Abstract.

Specificity of operation of the up-to-date tachometric device impellers made of different materials and applied in the world mining practices is analyzed in the article. It is noted that mechanical durability of the impeller is a basic indication of their effective operation at different speed of the air flow with maintained accuracy of measurements and maximally possible values. A method is proposed for calculating tensions which cause bending moments in the impeller due to the speed pressure of the air flowing onto the impeller. This method makes possible to choose optimal material for the impeller making with taking into account all measurable factors which can impact the impeller quality. The article also presents basic principles of the method for measuring sections of the mine tunnels of arbitrary shape. The findings can be used for improving the existing model APR-2 and for designing a pre-production model of a device for controlling air consumption and tunnel depression.

Keywords:

tachometric converter, air flow, anemometer, materials for making of kryl'chatky, speed pressure, range of measurings, reliability

References:

1. State committee of Ukraine on industrial safety, labour protection and mining supervision (2010), NPAOP 10.0-1.01-10: Pravila bezpeki u vugilnirh shakhtakh [NPAOP 10.0-1.01-10 Rules of safety in coal mines], Kiev, Ukraine

2. Gorlin, S.M. (1970), Eksperimentalnaya aeromekhanika [Experimental air-mechanic], High school, Moscow, SU

3. Spravochnik konstruktora tochnogo priborostroyeniya [Designer΄s reference book of exact instrument-makinging] (1989), Mechanical engineering, Leningrad, SU.

4. Itskovich, G.M. (1986), Soprotivleniye materialov [Resistance of materials], High school, Moscow, SU.

5. Belozerskiy, L.A. and Shevchenko, A.I. (2008), Analisis and treatment of apriori information in constructing of the systems of automatic recognition (SARS), PIPP «Science and education», Dnepropetrovsk, Ukraine.

6. Tu, Dzh. and Gonsales, P. (1978), Matematicheskiye principy raspoznavaniya obrazov [Mathematical principles of pattern recognition], "World", Moscow, SU.

About the authors:

Bunko Tatjana Viktorovna,Doctor of Technical Sciences (D.Sc), Senior Reseacher, Senior Reseacher in Department of problems of underground mines in great depths, M.S. Poljakov Institute of Geotechnical Mechanics under the National Academy of Sciences of Ukraine (IGTM NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Dudnik Michail Nikolayevich, Master of Science in the Department of Rock Thermoatrodynamics and Automated Systems N.S. Polyakov  Institutute of Geotechnical Mechanics under the National Academy of Sciences of Ukraine (IGTM NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Veretennik Victor Nikolayevich, Master of Science in the Department of Rock Thermoatrodynamics and Automated Systems N.S. Polyakov  Institutute of Geotechnical Mechanics under the National Academy of Sciences of Ukraine (IGTM NASU), Dnepropetrovsk, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

Vishnitskiy Aleksandr Ivanovich, Master of Science in the Department of Rock Thermoatrodynamics and Automated Systems N.S. Polyakov  Institutute of Geotechnical Mechanics under the National Academy of Sciences of Ukraine (IGTM NASU), Dnepropetrovsk, Ukraine,

Zhalilov Aleksandr Shamilyevich, Master of Science, Chief Mechanician of SP «Selidovugol», Selidovo, Ukraine, This email address is being protected from spambots. You need JavaScript enabled to view it.

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