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dc.contributor.authorPark, Chan-
dc.contributor.authorBigler, Felix-
dc.contributor.authorKorba, Petr-
dc.date.accessioned2017-12-06T12:46:50Z-
dc.date.available2017-12-06T12:46:50Z-
dc.date.issued2016-
dc.identifier.urihttps://digitalcollection.zhaw.ch/handle/11475/1719-
dc.description.abstractThis paper presents a qualitative and quantitative feasibility analysis of the Power-to-Gas (PtG) technology in the future Swiss power grid which will be characterized by a significant share of intermittent renewable energy sources (RES), especially Photovoltaic (PV) energy.The Energy Strategy 2050 set forth by the Swiss federal government includes a plan of a strong expansion of renewable energy sources. PV, for example, shall make up one fifth of Switzerland’s total energy production in 2050. Such a drastic expansion rate of PV can lead to so-called reverse power flow in the low voltage (LV) grid, as indicated in a previous case study conducted in a Zürich area.This paper demonstrates the impact of the PtG technology through three different scenarios in the above-mentioned case. The scenarios are established with respect to the input energy source to the PtG plant. The PtG plant is integrated into the LV grid for absorbing the excess PV energy for producing hydrogen. For each scenario, the produced hydrogen is assumed to be sold in the mobility sector. The results of this simulation give the insights concerning the technical as well as economical feasibility of the integration of PtG into the existing LV grid.de_CH
dc.language.isoende_CH
dc.rightsLicence according to publishing contractde_CH
dc.subjectExcess energyde_CH
dc.subjectPower-to-Gasde_CH
dc.subjectDistribution gridde_CH
dc.subjectIntegration of Photovaltaicsde_CH
dc.subject.ddc621.04: Energietechnikde_CH
dc.titleThe utility of power-to-gas concept for integration of increased photovoltaic generation into the distribution gridde_CH
dc.typeKonferenz: Sonstigesde_CH
dcterms.typeTextde_CH
zhaw.departementSchool of Engineeringde_CH
zhaw.organisationalunitInstitut für Energiesysteme und Fluid-Engineering (IEFE)de_CH
zhaw.conference.details32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016de_CH
zhaw.funding.euNode_CH
zhaw.originated.zhawYesde_CH
zhaw.publication.statuspublishedVersionde_CH
zhaw.publication.reviewNot specifiedde_CH
Appears in collections:Publikationen School of Engineering

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Park, C., Bigler, F., & Korba, P. (2016). The utility of power-to-gas concept for integration of increased photovoltaic generation into the distribution grid. 32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016.
Park, C., Bigler, F. and Korba, P. (2016) ‘The utility of power-to-gas concept for integration of increased photovoltaic generation into the distribution grid’, in 32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016.
C. Park, F. Bigler, and P. Korba, “The utility of power-to-gas concept for integration of increased photovoltaic generation into the distribution grid,” in 32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016, 2016.
PARK, Chan, Felix BIGLER und Petr KORBA, 2016. The utility of power-to-gas concept for integration of increased photovoltaic generation into the distribution grid. In: 32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016. Conference presentation. 2016
Park, Chan, Felix Bigler, and Petr Korba. 2016. “The Utility of Power-to-Gas Concept for Integration of Increased Photovoltaic Generation into the Distribution Grid.” Conference presentation. In 32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016.
Park, Chan, et al. “The Utility of Power-to-Gas Concept for Integration of Increased Photovoltaic Generation into the Distribution Grid.” 32nd European Photovoltaic Solar Energy Conference and Exhibition (EU PVSEC 2016), Munich, Germany, 20-24 June 2016, 2016.


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