Cooling, heating and power system

Author:

Chen Tzu-Chia1,Rashidov Rustam2,Treve Mark3ORCID,Mahdi Ahmed B4,Hammid Ali Thaeer5,Jalil Abduladheem Turki67,Shamel Ali8ORCID

Affiliation:

1. Ming Chi University of Technology Department of Industrial Engineering and Management, , 84 Gungjuan Rd., Taishan Dist., New Taipei City 243303, Taiwan

2. Department of Hospital orthopedic dentistry , Tashkent State Dental Institute, Makhtumkuli Street 103, Tashkent, 100047, Uzbekistan

3. School of Languages and General Education. Walailak University , Nakhon Si Thammarat. Thailand

4. Anesthesia Techniques Department, Al-Mustaqbal University College, Babylon , Iraq

5. Computer Engineering Techniques Department, Faculty of Information Technology, Imam Ja’afar Al-Sadiq University , Baghdad, Iraq

6. Yanka Kupala State University of Grodno Faculty of Biology and Ecology, , 230023 Grodno, Belarus

7. The Islamic University College of Technical Engineering, , Najaf, Iraq

8. Islamic Azad University Department of Chemistry, Ardebil Branch, , Ardebil, Iran

Abstract

Abstract Systems of cogeneration of cooling, heating and electric power with renewable energy sources are a very suitable solution for the independency of fossil fuels and reducing the emission of environmental pollutants. In this research, an internal combustion engine with a boiler and a linear parabolic concentrating collector has been used to realize the production of electrical and thermal energy. That the internal combustion engine is responsible for the production of electric power, which is responsible for the thermal energy by the concentrated linear collector with the boiler and the heat exchanger. Due to the need for thermal energy at different times, a thermal storage tank has been used in such a way that the thermal energy produced by the solar collector and boiler is stored in the tank to supply the load at the required times. The results show that the total cost of final products for one day of the hottest month of summer in the proposed thermal power plant with fossil fuel will be $69.3 and $63.5, respectively, and for 1 day of the coldest month of winter, the total cost of producing final products in the proposed and fossil system will be $31.6 and $28.5, respectively.

Publisher

Oxford University Press (OUP)

Subject

General Environmental Science,Architecture,Civil and Structural Engineering

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