THE STRUCTURE OF SYSTEM FOR PROVIDING MICROCLIMATE OF THE WORKPLACE OF ASSEMBLERS OF RADIO EQUIPMENT

Authors

  • Andrei Vasilevich Nekrotyuk Kalashnikov Izhevsk State Technical University, Izhevsk, Russian Federation
  • Evgeni Vitalevich Korepanov Kalashnikov Izhevsk State Technical University, Izhevsk, Russian Federation

Keywords:

microclimate, thermal comfort, functional-structural model, mathematical modeling of ventilation, ventilation installation of radio equipment

Abstract

Described the structure of the assurance system of microclimate parameters of the workplace in the workshop.  Assembly of electronic equipment. Developed functional and structural model of the air conditioning system of the shop. Described mathematical model of the regulation of microclimate parameters, energy-efficient system. According to the preliminary calculation of the velocity distribution of air flow in the working area of the calculated indicator of the comfort thermal sensation PMV. It is shown that the well-being of the installers is crucial when choosing constructive solutions local ventilation. Formulated the problem and challenges for future research on the creation of an effective system of provision of the microclimate, characterized by a large number of alternative solutions and a variety of diverse factors

References

Baturin V.V. Osnovy promyshlennoj ventiljacii [Bases of Industrial Ventilation]. Moscow, Profizdat Publ., 1990. 448 p.

Molchanov B.S. Proektirovanie promyshlennoj ventiljacii [Design of Industrial Ventilation]. Leningrad, Stroyizdat Publ., Leningrad office, 1970. 239 p.

Kuvshinov Yu.Ya. Teoreticheskie osnovy obespechenija mikroklimata pomeshhenija [Theoretical Bases of Providing Microclimate of the Room]. Moscow, ASV Publ., 2007. 184 p.

Polosin I.I., Kuznetsov S.N., Portyannikov A.V., Derepasov A.V. [Creation of Effective Air Exchange for Rooms of Productions with Local Exhaust Ventilation with Use of Mathematical Model]. Izvestiya KGASU, 2009, no. 1, pp.191–195. (in Russ.).

Samarskaya Yu.G. [Improvement of Systems of Local Exhaust Ventilation with an Organized Suction from a Bunker Zone of Dust Removal Devices VZP]. Internet messenger VolgGASU. Ser. Polythematic, 2008, Vol.1(5). Аvailable at: www.vestnik.vgasu.ru/attachments/1(5)-3.3_2008.pdf.

Nekrotyuk A. V., Korepanov E. V. [System Analysis of Means of Ensuring of Parameters of a Microclimate of a Workplace of the Assembler of the Radio-Electronic Equipment]. Molodye uchenye – uskoreniju nauchno-tehnicheskogo progressa v XXI veke. [Jelektronnyj resurs]: jelektronnoe nauchnoe izdanie: sbornik trudov II Vserossijskoj nauchno-tehnicheskoj konferencii aspirantov, magistrantov i molodyh uchenyh s mezhdunarodnym uchastiem [Young Scientists – to Acceleration of Scientific and Technical Progress in the XXI Century. The Collection of Works II of the All-Russian Scientific and Technical Conference of Graduate Students, Undergraduates and Young Scientists with the International Participation, Izhevsk, on April 23–25, 2013]. Izhevsk, 2013, pp. 1361–1364. (in Russ.).

Panferov S.V. [Energy Saving Control System of Temperature Condition of the Heated Buildings]. Bulletin of the South Ural State University. Ser. Construction and Architecture, 2010, no. 33, pp. 42–46. (in Russ.).

Sotnikov A.G., Borovitskiy A.A. [Systematization and Synthesis of Characteristics of Local Exhaust Devices – a Basis of an Engineering Technique of Design of Effective Systems of Industrial Ventilation]. Inzhenerno-stroitel'nyj zhurnal [Civil Engineering Journal], 2012, no. 6, pp. 54–86. (in Russ.).

Croteau G.A., Flanagan M. E., Camp J.E., Seixas N.S. The Efficacy of Local Exhaust Ventilation for Controlling Dust Exposures During Concrete Surface Grinding. British Occupational Hygiene Society Published by Oxford University Press., 2004, vol. 48, no. 6, pp. 509–518. (in Russ.).

Meskhi B.Ch., Bulygin Yu.I., Legkonogikh A.N., Gaydenko A.L. [Mathematical and Computer Modeling of Formation of Parameters of the Production Environment for Design and Optimization of Systems of Ventilation of Rooms]. Scientific journal “Herald of Dagestan State Technical University. Technical Sciences”, 2014, vol. 14, no. 2(77), pp. 46–55. (in Russ.).

Pozin G.M., Ulyasheva V.M., Kibort I.D. [To a Question of Application of Models of a Turbuklentnost at Numerical Modeling of Ventilating Processes]. News of Higher Educational Institutions. Construction, 2013,

no. 10, pp. 48–56. (in Russ.).

Korepanov E.V. [Thermal Resistance to a Window Heat Transfer with a Selective Covering and Gas Filling]. Energosberezhenie i vodopodgotovka [Energy saving and water treatment], 2005, no. 6, pp. 59–62. (in Russ.).

Korepanov E.V. [Free Convection in Windows with a Double Glazing]. News of Higher Educational Institutions. Construction, 2005,no. 2, pp. 106–113. (in Russ.).

Korepanov E.V. Matematicheskoe modelirovanie teploperedachi cherez naruzhnye steny zdaniy s oknami [Mathematical Modeling of a Heat Transfer through External Walls of Buildings with Windows]. Izhevsk, Izd-vo IGTU Publ, 2011. 192 p.

Polushkin V.I., Rusak O.N., Burtsev S.I. Otoplenie, ventilyatsiya i konditsionirovanie vozdukha. Ch. I. Teoreticheskie osnovy sozdaniya mikroklimata zdaniya [Heating, Ventilation and Air Conditioning. Part. 1. Theoretical Bases of Creation of a Microclimate of the Building].St. Petersburg, Professiya Publ, 2001, 176 p.

Kokorin O.Ya. Sovremennye sistemy konditsionirovaniya vozdukha [Modern Air Conditioning Systems]. Moscow, Fiziko-matematicheskaya Literatura Publ, 2003, 272 p.

Kokorin O.Ya. Energosberegayushchaya tekhnologiya funktsionirovaniya sistem ventilyatsii, otopleniya, konditsionirovaniya vozdukha (sistem VOK) [Energy Saving Technology of Functioning of Systems of Ventilation, Heating, Air Conditioning (WOK Systems)]. Moscow, Prospect Publ, 1999, 206 p.

Moiseeva N.K., Karpunin M.G. Osnovy teorii i praktiki funktsional'no-stoimostnogo analiza [Bases of the Theory and Practice of the Functional and Cost Analysis]. Moscow, Vysshaya Shkola Publ, 1988, 192 p.

Nekrotyuk A.V., Korepanov E.V. [Functional and Structural Model of System of Local Exhaust Ventilation of a Workplace of the Assembler of Radio Equipment]. Intellektual'nye sistemy v proizvodstve [Intelligent systems in manufacturing], 2015, no. 1, pp. 65–68. (in Russ.).

Yudaev B.N. Teploperedacha [Heat Transfer]. Moscow, Vysshaya Shkola Publ, 1981, 319 p.

Ertl G. ml. Putevoditel' Prandtlya po gidroaerodinamike [Guide Prandtl on Aerohydrodynamics]. Moscow-Izhevsk: NITs «Regulyarnaya i Khaoticheskaya Dinamika», Institut Komp'yuternykh Issledovaniy Publ., 2007. 776 p.

Tsygankov A.V., Ivanov A.V., Leont'eva V.A. [Assessment of Technical and Economic Parameters of the Design Solution of Central Air]. Nauchnyy zhurnal NIU ITMO. Seriya Kholodil'naya tekhnika i konditsionirovanie [Scientific Journal of St Petersburg State University of Low Temperature and Food Technologies: Refrigeration and Air Conditioning], 2015, no. 2, pp. 57–63. (in Russ.).

Nekrotyuk A.V., Palagin A.V., Korepanov E.V. [Application of Neural Networks for Optimization of System of a Microclimate of Shop of Installation of the Radio-electronic Equipment]. Global'naya nauchnaya integratsiya [Global scientific integration],, 2013, no. 6, pp. 55–56. (in Russ.).

Palagin A.V., Korepanov E.V. [Management of Warm Cold Supply of the Building of System on Alternative Energy Sources]. Intellektual'nye sistemy v proizvodstve [Intelligent systems in manufacturing], 2015,

no. 1, pp. 152–156. (in Russ.).

Published

2017-07-31