Analysis of the Hybrid Power-Heating System in a Single-Family Building, along with Ecological Aspects of the Operation

Author:

Woroniak Grzegorz1ORCID,Piotrowska-Woroniak Joanna1ORCID,Woroniak Anna2,Owczarek Edyta3,Giza Krystyna3ORCID

Affiliation:

1. HVAC Department, Bialystok University of Technology, Wiejska 45E, 15-351 Bialystok, Poland

2. III-th Highschool of K. K. Baczynski, Palacowa 2/1, 15-042 Bialystok, Poland

3. Faculty of Production Engineering and Materials Technology, Czestochowa University of Technology, Armii Krajowej 19, 42-218 Czestochowa, Poland

Abstract

This study evaluates a hybrid heating system in a single-family building in northeastern Poland, which has a temperate continental climate. The analysis covers two heating seasons in 2021/2022 and 2022/2023. The hybrid heating system includes an air heat pump HPA–08 CS Plus with a heating power of 8.2 kW (AHP), a condensing gas boiler VC146/5–5 with a power of 14 kW (GB–Condens.), and a solid fuel boiler with a power of 11 kW for central heating. Additionally, hot water is heated by a Basic 270 (DHW’s AHP) air–water heat pump with a power of 2 kW, utilizing a tank with a capacity of 270 dm3 equipped with two heating coils. The building’s average electricity consumption is around 5400 kWh/year. A 4.96 kWp photovoltaic installation is installed on the building’s roof at a 40° angle towards the south to supplement the hybrid system. The study aims to assess whether the PV installation can adequately cover the energy needs of the hybrid heat source for heating and hot water. Furthermore, the study calculates the emission of pollutants (CO2, SOx, NOx, CO, and PM10) into the atmosphere. The total annual electricity production from PV installations was 5444.9 kWh in 2021/2022 and 5684.8 kWh in 2022/2023. The excess electricity was stored in the PGE power grid as per the Prosumer settlement rules. The installed PV installation is sufficient to power the following devices annually: AHP, DHW’s AHP, and GB–Condens. However, the daily electricity production from the PV installation is not enough to cover the energy needs of the heat pump for heating during the cold months in Poland (I–III, XI–XII). It can meet the power needs of a PC all year round and can also be stored during the summer months, for example, in energy warehouses or by directly storing it in the PGE power grid. The use of the PV installation resulted in an average reduction in pollutant emissions into the atmosphere: CO2—94.1%, SOx—91.8%, NOx—95.6%, CO—9.7%, and PM10—32.1%.

Funder

Bialystok University of Technology

Publisher

MDPI AG

Reference63 articles.

1. European Parliament (2024, March 03). European Parliament Resolution of 15 January 2020 on the European Green Deal 2019, 2956 (RSP). Available online: https://www.europarl.europa.eu/doceo/document/TA-9-2020-0005_EN.html.

2. European Parliament (2024, March 05). European Parliament Resolution of 14 March 2019 on Climate Change-A European Strategic Long-Term Vision for a Prosperous, Modern, Competitive and Climate Neutral Economy in Accordance with the Paris Agreement 2019, 2582 (RSP). Available online: https://www.europarl.europa.eu/doceo/document/TA-8-2019-0217_EN.html.

3. International Energy Agency (IEA) (2019). Global Status Report for Buildings and Construction 2019, IEA. Available online: https://www.iea.org/reports/global-status-report-for-buildings-and-construction-2019.

4. United Nations Environment Programme (2020). 2020 Global Status Report for Buildings and Construction: Towards a Zero-Emission, Efficient and Resilient Buildings and Construction Sector, United Nations Environment Programme. Available online: https://globalabc.org/news/launched-2020-global-status-report-buildings-and-construction.

5. Causes of large projected increases in hurricane precipitation rates with global warming;Liu;NPJ Clim. Atmos. Sci.,2019

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