EEÖ Präsentationsvorlage · Partly based on fossil energy scarces in transiton period Virtual...

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Transcript of EEÖ Präsentationsvorlage · Partly based on fossil energy scarces in transiton period Virtual...

Page 1: EEÖ Präsentationsvorlage · Partly based on fossil energy scarces in transiton period Virtual power plants Grouping and intelligent control of bad and decentralised electricity
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©Schleicher, Kirchengast (2019)

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©Wärmezukunft 2050, TU Wien(2018)

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©Wärmezukunft 2050, TU Wien(2018)

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©Wärmezukunft 2050, 2018

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-10%

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10%

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40%

50%

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70%

-200

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2016 2020 2021 2022 2023 2024 2025 2026 2027 2028 2029 2030

Pri

mär

ener

gie

in P

JStromaustausch

Gas

Öl

Kohle

Abfälle

PV

Wind

Wasserkraft

Geothermie

Umgebungsw.

Solarthermie

Biogene

% Erneuerbar

Page 11: EEÖ Präsentationsvorlage · Partly based on fossil energy scarces in transiton period Virtual power plants Grouping and intelligent control of bad and decentralised electricity

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Erst ab einem Anteil von 60%-70% Wind & Sonne im europäischen Stromsystem entsteht signifikanter Speicherbedarf wegen „Überproduktion“.

Dieser sinkt durch stärkere Sektorkopplung gleichzeitig wieder.

©Zappa et. al (2018)

Page 13: EEÖ Präsentationsvorlage · Partly based on fossil energy scarces in transiton period Virtual power plants Grouping and intelligent control of bad and decentralised electricity

AufbringungStrom/Gas aus erneuerbaren

Energien

Power to Gas

Power to Heat

Power to Move

Direkt

Power to Liquid

NutzungRaumwärmeWarmwasserProzesswärmeMechanische ArbeitStrom

Umwandlung

©Wietschel et. al

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©Wärmezukunft 2050, TU Wien (2018)

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©Wärmezukunft 2050, TU Wien (2018)

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Quelle: EEÖ 2019

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©Set-Nav, 2019

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©Set-Nav, 2019

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©Set-Nav, 2019

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@florianmaringer

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©ENTSO-E, 2019

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©US National Climate Assessment, 2014

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© Our World In Data

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©Lechtenböhmer et. al (2018)

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©Wärmezukunft 2050, TU Wien(2018)

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Quelle. Stromzukunft 2030, TU Wien, 2017

Stromerzeugungsanteile (EE, fossile und nukleare Kraftwerke), Wintermonate Szenario 2030 Energiewende

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