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Trends for Stirling Engines in Households: A Systematic Literature Review

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  • Anna Kubule

    (Institute of Energy Systems and Environment, Faculty of Natural Sciences and Technology, Riga Technical University, Azenes iela 12/1, LV-1048 Riga, Latvia)

  • Jānis Kramens

    (Institute of Energy Systems and Environment, Faculty of Natural Sciences and Technology, Riga Technical University, Azenes iela 12/1, LV-1048 Riga, Latvia)

  • Madara Bimbere

    (Institute of Energy Systems and Environment, Faculty of Natural Sciences and Technology, Riga Technical University, Azenes iela 12/1, LV-1048 Riga, Latvia)

  • Nerijus Pedišius

    (Laboratory of Heat-Equipment Research and Testing, Lithuanian Energy Institute, Breslaujos Str. 3, LT-44403 Kaunas, Lithuania)

  • Dagnija Blumberga

    (Institute of Energy Systems and Environment, Faculty of Natural Sciences and Technology, Riga Technical University, Azenes iela 12/1, LV-1048 Riga, Latvia)

Abstract

Reliable heat and power supply are among the basic household needs nowadays. It is especially topical in rural or distant locations that may be cut off from the energy grid due to extreme weather or other events. Nonetheless, the sustainability of our power production systems has to be considered to sustain our planet’s long-term abilities to provide energy resources and a viable environment. Renewable energy resources must be prioritized in rural and remote areas, simultaneously strengthening distributed production ability and self-sufficiency. In this context, the use of the Stirling engine for heat to power generation in households, on the scale of small communities, and by using only renewable resources is becoming increasingly topical. Therefore, this research aims to identify the current state-of-the-art for Stirling engine applications using biomass as a renewable energy source, in the context of sustainability and energy security. The paper summarizes the current research tendencies at the household level in the use of biomass-based Stirling engines for renewable heat and power generation in decentralized energy systems. The methodology applied is a structured literature review and content analysis. The research results corroborate the progress towards the use of renewable resources and towards increased energy efficiency because the keyword and overlay analysis showed more frequent publishing in these areas. The content analysis on two more specific sub-directions of interest, i.e., biomass-fuelled Stirling engine use in households and Stirling engine implications on energy security, showed that though research activity in these directions has increased lately, more profound research is needed, especially on aspects of energy security and independence. The content analysis revealed a lack of in-depth analysis on the effects of Stirling engine use on energy security or energy independence, which is suggested as a topical subject for future research.

Suggested Citation

  • Anna Kubule & Jānis Kramens & Madara Bimbere & Nerijus Pedišius & Dagnija Blumberga, 2024. "Trends for Stirling Engines in Households: A Systematic Literature Review," Energies, MDPI, vol. 17(2), pages 1-17, January.
  • Handle: RePEc:gam:jeners:v:17:y:2024:i:2:p:383-:d:1317850
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    References listed on IDEAS

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    1. Maraver, Daniel & Sin, Ana & Royo, Javier & Sebastián, Fernando, 2013. "Assessment of CCHP systems based on biomass combustion for small-scale applications through a review of the technology and analysis of energy efficiency parameters," Applied Energy, Elsevier, vol. 102(C), pages 1303-1313.
    2. Secundo, Giustina & Ndou, Valentina & Vecchio, Pasquale Del & De Pascale, Gianluigi, 2020. "Sustainable development, intellectual capital and technology policies: A structured literature review and future research agenda," Technological Forecasting and Social Change, Elsevier, vol. 153(C).
    3. Jung, Wooyoung & Jazizadeh, Farrokh, 2019. "Human-in-the-loop HVAC operations: A quantitative review on occupancy, comfort, and energy-efficiency dimensions," Applied Energy, Elsevier, vol. 239(C), pages 1471-1508.
    4. Maurizio Massaro & John Dumay & James Guthrie, 2016. "On the shoulders of giants: undertaking a structured literature review in accounting," Accounting, Auditing & Accountability Journal, Emerald Group Publishing Limited, vol. 29(5), pages 767-801, June.
    5. Arthur Leandro Guerra Pires & Paulo Rotella Junior & Sandra Naomi Morioka & Luiz Célio Souza Rocha & Ivan Bolis, 2021. "Main Trends and Criteria Adopted in Economic Feasibility Studies of Offshore Wind Energy: A Systematic Literature Review," Energies, MDPI, vol. 15(1), pages 1-24, December.
    6. İncili, Veysel & Karaca Dolgun, Gülşah & Georgiev, Aleksandar & Keçebaş, Ali & Çetin, Numan Sabit, 2022. "Performance evaluation of novel photovoltaic and Stirling assisted hybrid micro combined heat and power system," Renewable Energy, Elsevier, vol. 189(C), pages 129-138.
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