Issue |
E3S Web Conf.
Volume 313, 2021
19th International Stirling Engine Conference (ISEC 2021)
|
|
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Article Number | 06002 | |
Number of page(s) | 17 | |
Section | Renewable Applications of Stirling Engines | |
DOI | https://doi.org/10.1051/e3sconf/202131306002 | |
Published online | 22 October 2021 |
Analysis of CO2 reduction with micro CHP facility: Renewable energies and Stirling engine
1
Department of Mechanical, thermal and Fluids Engineering. Campus of Teatinos Universidad de Málaga, 29071 (Spain)
2
Department of Applied Phisycs II. E.I.I., Campus of Teatinos Universidad de Málaga, 29071 (Spain)
3
CS Centro Stirling S. Coop, Avda. Álava, 3, Aretxabaleta (Gipuzcoa), 20550 Spain
The Cogeneration laboratory is a research facility in the University of Málaga (UMA) that allows for the behavioural study of a renewable energy installation combining solar resources and micro-CHP. Energy generation in the system is provided by a 3 kWp photovoltaic array, two solar thermal connectors and a Whispergen EU1 Stirling micro-CHP unit. Energy storage in the facility is provided by water tank and lithium-ion battery. This laboratory is managed through a programmable Mitsubishi PLC that permits the simulation of different thermal and electrical load profiles, as well as the mode of operation. The electrical energy management is controlled by the solar inverter. Environmental data, are measured using a top of the line weather station.The system’s real time status is logged through the programmable PLC. All this data is transferred and analysed in a purpose-built MATLAB-based software, where power and energy balances are conducted, efficiencies are calculated, and a CO2 emissions evaluation is studied.The CO2 emissions analysis is carried to evaluate the carbon dioxide emissions generated by the facility when the electrical and thermal demand are provided by the joint solar and micro-CHP system. These emissions come from the burning of natural gas in the micro-CHP Stirling engine, and the usage of electricity from the grid. With the current mode of operation, a reduction of up to 70% in CO2 emissions has been achieved, with an energy generation that exceeds the demand.
© The Authors, published by EDP Sciences, 2021
This is an Open Access article distributed under the terms of the Creative Commons Attribution License 4.0, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
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