Decreasing cost of heat pump heat supply systemby changing first circuit collector

Author:

Hallyyev I.1,Gilfanov K. H.1

Affiliation:

1. Kazan State Power Engineering University

Abstract

The aim of this work is to reduce the cost of the heat pump heating system by using a solar collector in the primary circuit of the heat pump. It is known that the price of material and installation of the primary circuit collector is 30% of the total cost of the heat pump heating system. The use of a solar collector in the primary circuit of a heat pump eliminates the need for drilling or underground installation of a low-potential thermal energy collector. The rejection of the classic types of collectors: horizontal collectors and vertical probes, also has a positive environmental effect on the soil. The combined use of a solar collector and a heat pump will add variability in the layout of the heat pump heating system. The article presents the results of a theoretical study of the feasibility of operating solar collectors at the latitudes of the Republic of Tatarstan. A comparative analysis of various types of heat pump and solar collector is given, based on which the main components of the combined system were selected. The work includes calculations of the required power and surface area of the absorption of the solar collector. The results of a comparative analysis of the performance of the solar collector are presented, depending on the angle of incidence of sunlight and the average level of insolation. As a result of the work, it was determined that the use of a solar collector in the primary circuit of a heat pump will be twice cheaper compared to horizontal collectors and 4 times compared to vertical probes.

Publisher

Kazan State Power Engineering University

Subject

Pharmacology (medical),Complementary and alternative medicine,Pharmaceutical Science

Reference15 articles.

1. Christian Winteler.11 th IEAHeatPumpConference 2014 / heatpump, solar energy and ice storage systems - modelling and seasonal performance. Montréal (Québec) Canada: 2014. 20-25 p.

2. Andreas Hauer.IEA-ETSAP and IRENA Technology Brief E17. Thermal Energy Storage.Bayern: 2013. pp. 5-8 p.

3. Carbonell D, Philippen D, Granzotto M.Conference Proceed ings EuroSun 2014. Simulation of Combined Solar Thermal, Heat Pump.Ice Storage and Waste Water Heat Recovery Systems. Rapperswil, Switzerland: 2014.pp. 63-80.

4. Khallyev I, Tanachev N. 25th International scientific and technical conference of students and post-graduate students "Radioelectronics, Electrical Engineering and Energy". Heat pump system using a solar collector. Moscow: 2019. pp. 23-30

5. Khallyev I, Tanachev N.ENERGY-2019 14th All-Russian (international) scientific and technical conference of students, graduate students and young scientists. Combined heat supply system heat pump - solar collector.Ivanovo: 2019. pp. 30-33.

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