Please use this identifier to cite or link to this item: https://doi.org/10.21256/zhaw-29368
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dc.contributor.authorBaldini, Luca-
dc.contributor.authorZambrano, Juan Mahecha-
dc.date.accessioned2023-12-08T15:37:45Z-
dc.date.available2023-12-08T15:37:45Z-
dc.date.issued2023-12-
dc.identifier.issn1742-6588de_CH
dc.identifier.issn1742-6596de_CH
dc.identifier.urihttps://digitalcollection.zhaw.ch/handle/11475/29368-
dc.description.abstractThermochemical networks are a rather new subject in research and support our goal to lower winter electricity demand and foster the integration of renewable energy sources. This paper takes a first step towards a performance analysis of thermochemical networks and a comparison to a classical district heating network for a virtually defined network of 1.3 km length, assuming a space heating load of 204.7 MWh represented by 33 residential buildings. The performance comparison is done for winter operation when space heating demand is present. The simulation results clearly revealed that for the classical district heating system, thermal and pressure losses lead to a significant increase in the loads, further increasing the electricity demand for the heat pump and the circulation pump. Conversely, for the thermochemical network, no compressor is needed to extract the heat from the boreholes and the circulation of the sorbent solution was found to be minute, leading to a negligible electricity demand for space heating supply. This resulted in a very high electric COP as well as a high exergy efficiency compared to a classical district heating system. Further, the volumetric energy storage density was compared, recording a 2 to 22.3 times higher value for the thermochemical network.de_CH
dc.language.isoende_CH
dc.publisherIOP Publishingde_CH
dc.rightshttp://creativecommons.org/licenses/by/3.0/de_CH
dc.subjectThermochemical networkde_CH
dc.subjectSorption storagede_CH
dc.subjectSeasonal load shiftingde_CH
dc.subjectIntegration of renewablesde_CH
dc.subject.ddc333.79: Energiede_CH
dc.titleThermochemical storage networks for integration of renewable energy sources through seasonal load shiftingde_CH
dc.typeKonferenz: Paperde_CH
dcterms.typeTextde_CH
zhaw.departementArchitektur, Gestaltung und Bauingenieurwesende_CH
zhaw.organisationalunitInstitut Bautechnologie und Prozesse (IBP)de_CH
dc.identifier.doi10.1088/1742-6596/2600/4/042001de_CH
dc.identifier.doi10.21256/zhaw-29368-
zhaw.conference.detailsCISBAT International Conference, Lausanne, Switzerland, 13-15 September 2023de_CH
zhaw.funding.euNode_CH
zhaw.issue4de_CH
zhaw.originated.zhawYesde_CH
zhaw.pages.start042001de_CH
zhaw.publication.statuspublishedVersionde_CH
zhaw.volume2600de_CH
zhaw.publication.reviewPeer review (Publikation)de_CH
zhaw.title.proceedingsJournal of Physics: Conference Seriesde_CH
zhaw.funding.zhawTCology - Thermo-chemische Netzwerk-Ökologiede_CH
zhaw.author.additionalNode_CH
zhaw.display.portraitYesde_CH
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Baldini, L., & Zambrano, J. M. (2023). Thermochemical storage networks for integration of renewable energy sources through seasonal load shifting [Conference paper]. Journal of Physics: Conference Series, 2600(4), 42001. https://doi.org/10.1088/1742-6596/2600/4/042001
Baldini, L. and Zambrano, J.M. (2023) ‘Thermochemical storage networks for integration of renewable energy sources through seasonal load shifting’, in Journal of Physics: Conference Series. IOP Publishing, p. 042001. Available at: https://doi.org/10.1088/1742-6596/2600/4/042001.
L. Baldini and J. M. Zambrano, “Thermochemical storage networks for integration of renewable energy sources through seasonal load shifting,” in Journal of Physics: Conference Series, Dec. 2023, vol. 2600, no. 4, p. 042001. doi: 10.1088/1742-6596/2600/4/042001.
BALDINI, Luca und Juan Mahecha ZAMBRANO, 2023. Thermochemical storage networks for integration of renewable energy sources through seasonal load shifting. In: Journal of Physics: Conference Series. Conference paper. IOP Publishing. Dezember 2023. S. 042001
Baldini, Luca, and Juan Mahecha Zambrano. 2023. “Thermochemical Storage Networks for Integration of Renewable Energy Sources through Seasonal Load Shifting.” Conference paper. In Journal of Physics: Conference Series, 2600:42001. IOP Publishing. https://doi.org/10.1088/1742-6596/2600/4/042001.
Baldini, Luca, and Juan Mahecha Zambrano. “Thermochemical Storage Networks for Integration of Renewable Energy Sources through Seasonal Load Shifting.” Journal of Physics: Conference Series, vol. 2600, no. 4, IOP Publishing, 2023, p. 42001, https://doi.org/10.1088/1742-6596/2600/4/042001.


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