Estimation of efficiency of the heat supply system based on a boiler house and a wind turbine in the northern environment
Autor: | V. A. Minin, A. V. Bezhan |
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Rok vydání: | 2017 |
Předmět: |
Engineering
Organic fuel Waste management Power station business.industry Boiler (power generation) Environmental engineering Heat supply Energy Engineering and Power Technology 02 engineering and technology Thermal energy storage 01 natural sciences Turbine 010305 fluids & plasmas 020401 chemical engineering Nuclear Energy and Engineering 0103 physical sciences Power supply unit 0204 chemical engineering business Indoor air temperature |
Zdroj: | Thermal Engineering. 64:201-208 |
ISSN: | 1555-6301 0040-6015 |
DOI: | 10.1134/s0040601516100013 |
Popis: | This article describes a methodological approach to defining indoor air temperature in buildings heated by a power supply unit consisting of a boiler house and a wind-driven power plant (WDPP). We discuss a heating option for a residential building in the windy conditions of Murmansk city. We proved that, during the periods of strong wind, a WDPP can partially or fully satisfy the heat demand and sometimes even create a surplus of energy. During low wind weather, almost all loads are handled by the boiler house. We considered a possibility to accumulate the surplus energy obtained from a WDPP during strong wind by increasing the temperature in the whole building up to 25°C and further using the accumulated heat during the lowwind period when indoor air temperature may fall below 20°C. This allows saving organic fuel in the boiler house. We demonstrated how indoor air temperature in the building may change throughout the year when using the surplus energy from the WDPP due to thermal storage capacitance of the building. We also provided the results of study, showing favorable energy-related effects of using a WDPP along with the boiler house. It was determined that engaging a WDPP in fulfilling the diagram of heating loads promotes the decrease in the boiler house’s contribution to heat supply by 30 to 50%, and using the surplus energy from the WDPP and thermal storage capacitance of the building allows reducing the contribution of the boiler house by 5–15% more in certain months. |
Databáze: | OpenAIRE |
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