Energy and emission analyses of solar assisted local energy solutions with seasonal heat storage in a Finnish case district

Pilots for the seasonal thermal energy storage of solar energy on a local basis are few in Finland, even if international demonstrations show that the utilization level of solar energy can exceed 50% of the annual local heat requirement in similar climate zones. This study presents options for heat...

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Bibliographic Details
Published inRenewable energy Vol. 107; pp. 147 - 155
Main Authors Paiho, Satu, Hoang, Ha, Hukkalainen, Mari
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.07.2017
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Summary:Pilots for the seasonal thermal energy storage of solar energy on a local basis are few in Finland, even if international demonstrations show that the utilization level of solar energy can exceed 50% of the annual local heat requirement in similar climate zones. This study presents options for heat and electricity generation based on local energy systems and utilizing seasonal thermal energy storages. Energy needs and production on Vartiosaari district in Helsinki in Finland were explored as a case area. The project studied the impacts of introducing solar thermal energy on local energy self-sufficiency and emissions from heating energy supply, if excess solar heat in the summer is stored using borehole thermal energy storage or tank storage for use in the winter. Around 60% self-sufficiency in heat production would have been achieved in the scenarios studied. In addition, carbon dioxide emissions could be reduced by around 50%, and sulphur dioxide and particulate emissions by up to 70% compared to the business-as-usual situation. •Energy needs and production on a case area in Helsinki were explored.•Solar energy solutions and seasonal thermal energy storages were studied.•About 60% self-sufficiency in heat production can be achieved.•Emissions can be reduced even up to 50–70%.•Initial space requirements of solar concepts were defined.
ISSN:0960-1481
1879-0682
DOI:10.1016/j.renene.2017.02.003