Increase in dependability and efficiency of self-draining water systems of solar heat supply


Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

It is shown in the paper that the reliability and efficiency of self-draining systems of the drainback syphon type depend on the atmospheric pressure and heating temperature of the heat carrier in the solar collectors, which affect the value of the allowable drop of the atmospheric pressure in the upper point of the system after it is filled with the heat carrier and achieves the specified heat operation mode. In such systems, the drop of the atmospheric pressure and growth of the heating temperature of the heat carrier lead to an increase in the power consumption for the heat carrier circulation owing to the interruption of the jet in the syphon because of boiling of the heat carrier. An improved structure of the self-draining solar circuit with an active element in the form of a Venturi tube was developed in which there are no such drawbacks under atmospheric pressure, and as compared to the common self-draining system of the drainback syphon type, the power consumption for the heat carrier circulation is reduced to 65–80%. The calculated dependences are given to define the necessary degree of the flow contraction in the Venturi tube and its resistance coefficients.

About the authors

Yu. K. Rashidov

Tashkent Architecture Construction Institute

Author for correspondence.
Email: yu_rashidov@inbox.uz
Uzbekistan, Tashkent

Sh. Yu. Sultanova

Tashkent Architecture Construction Institute

Email: yu_rashidov@inbox.uz
Uzbekistan, Tashkent

Kh. T. Sur’atov

Tashkent Architecture Construction Institute

Email: yu_rashidov@inbox.uz
Uzbekistan, Tashkent

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c) 2017 Allerton Press, Inc.