Skip to main content
Log in

Heating Systems Based on Nanostructured Multielectrode Composite Electric Heaters

  • Published:
Russian Electrical Engineering Aims and scope Submit manuscript

Abstract

A review and analysis of existing systems and technical facilities of local heating of facilities in the power industry and agroindustrial and housing and communal services, including those based on nanostructured multielectrode composite electric heaters, are presented. The electrophysical and physical-mechanical parameters of insulation were defined, which make it possible to use the electric heaters in corrosive media and wet conditions. A calculation methodology of antifreezing systems using nanostructured multielectrode composite electric heaters is presented using the example of heating vertical gutters. The weight coefficients of ingredients of current-conducting composite material for implementation of conditions of self-regulation of electric heater to providing its energy-efficient functioning are determined.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Fig. 1.
Fig. 2.

Similar content being viewed by others

REFERENCES

  1. Dorosh, A.B. and Khalina, T.M., Energy efficient technical devices for local heating based on nanocomposite electric heaters for agroindustrial complex, Trudy XIV mezhdunarodnoi nauchno-prakticheskoi internet-konferentsii (MIK-2016) “Energo- i resursosberezhenie–XXI vek” (Proc. XIV Int. Sci.-Pract. Internet Conf. (IIC-2016) “Energy and Resource Saving in 21st Century”), Orel: Orlovsk. Gos. Univ. im. I.S. Turgeneva, 2016.

  2. Butorin, V.A. and Tkachev, A.N., Lifetime evaluation of electric radiant film heaters, Russ. Electr. Eng., 2018, vol. 89, no. 3.

  3. Khalina, T.M., Khalin, M.V., and Dorosh, A.B., RF Patent 2 476 033, Byull. Izobret., 2013, no. 5.

  4. Multi-electrode composite electric heaters: Operation manual. http://enefflech.ruAoad/pasport_mkeh/l-l-0-2.

  5. Fil’chakov, P.F. and Panchishin, V.I., Integratory EGDA. Modelirovanie potentsial’nykh polei na elektroprovodnoi bumage (Electric Analogue Integrators: Modeling of Potential Fields on Conductive Paper), Kiev: Akad. Nauk UkrSSR, 1961.

  6. Iossel’, Yu.Ya., Kochanov, E.S., and Strunskii, M.G., Raschet elektricheskoi emkosti (Calculation of Electric Capacity), Leningrad: Energoatomizdat, 1981.

  7. Khalina, T.M., Calculation of electrical conductivity between electrode systems in a composite electric heater, Elektrotekhnika, 2001, no. 8.

  8. Khalina, T.M., Khalin, M.V., and Dorosh, A.B., Energy efficient technologies and devices for local heating in agroindustrial complex, Dostizh. Nauki Tekh. APK, 2017, vol. 31, no. 3.

  9. Dorosh, A.B., Kbalina, T.M., Khalin, M.V., and Guseinova, S.A., Calculation of electrical conductivity of energy-saving nanostructured composite electric heaters, Int. J. Tech. Phys. Probl. Eng., 2016, vol. 8, no. 2.

  10. Khalina, T.M., Stal’naya, M.I., and Vedmakin, A.V., Information entropy method for determination of the homogeneity of the composite material for agroindustrial complex, Mezhd. Nauchn. Zh., 2017, no. 5.

  11. Khalin, M.V. and Vostrikov, E.I., Energy efficient composite electric heaters for anti-icing systems, Izv. Tomsk. Politekh. Univ., Energ., 2012, vol. 320, no. 4.

Download references

ACNOWLEDGMENTS

These studies were carried out in accordance with government contracts with the Foundation for Assistance to Small Enterprises in the Scientific and Technical Field by the Program Start-06 GC no. 4414/6815, GC no. 5922/6815, and GC no. 8796/6815.

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to T. M. Khalina.

Additional information

Translated by M. Kromin

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Khalina, T.M., Khalin, M.V., Dorosh, A.B. et al. Heating Systems Based on Nanostructured Multielectrode Composite Electric Heaters. Russ. Electr. Engin. 89, 695–702 (2018). https://doi.org/10.3103/S1068371218120052

Download citation

  • Received:

  • Published:

  • Issue Date:

  • DOI: https://doi.org/10.3103/S1068371218120052

Keywords:

Navigation