Methods of accounting the hot water consumption modes at the solar installations design

Authors

  • V.O. Dubkovsky Odessа Polytechnic National University
  • V.P. Kravchenko Odessа Polytechnic National University http://orcid.org/0000-0002-7557-3327
  • J.V. Kravchenko Odessа Polytechnic National University

DOI:

https://doi.org/10.15276/opu.2.46.2015.18

Keywords:

solar installation, water-supply, solar collector

Abstract

Peculiarities of the high-powered solar systems for hot water heating are considered. The purpose of work consists in development of methods for accounting the 24-hourly hot water consumption mode, determining the SS dynamic descriptions. The basic solar system schemes are analyzed with their shortages from the user satisfaction view point due to sun energy. For the dynamic parameters improvement the use of operative expense tank is examined such receptacle bearing built-in worm-pipe, through which all heat carrier from solar collectors passes before entering the fast heat exchanger which heats a tank-accumulator. The scientific novelty refers to the proof that this tank principal parameter is a not the volume, but the built-in exchanger capacity, determined by the solar collectors field total thermal power. As an ecological constituent of operating costs it is suggested to take into account cost paid for the emission of combustion products. As this method practical application example considered is the solar collectors capacity optimization for a communal enterprise.

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Author Biographies

V.O. Dubkovsky, Odessа Polytechnic National University

DEng, Prof.

V.P. Kravchenko, Odessа Polytechnic National University

DEng, Prof.

J.V. Kravchenko, Odessа Polytechnic National University

Master

References

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Weiss, W.W. Solar Heating Systems for Houses: A Design Handbook for Solar Combisystems / W.W. Weiss. — London: James & James, 2003. — 313 p.

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Published

2015-03-04

How to Cite

[1]
Dubkovsky, V., Kravchenko, V. and Kravchenko, J. 2015. Methods of accounting the hot water consumption modes at the solar installations design. Proceedings of Odessa Polytechnic University. 2(46) (Mar. 2015), 97–102. DOI:https://doi.org/10.15276/opu.2.46.2015.18.