Quantifying the grid support of building energy systems.

Evaluation of grid-supportive concepts for space heating and cooling in non-residential buildings.
Buch | Softcover
206 Seiten
2017
Fraunhofer Verlag
978-3-8396-1230-9 (ISBN)

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Quantifying the grid support of building energy systems. - Konstantin Klein
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This Dissertation evaluates the suitability of building energy systems in non-residential buildings to provide load flexibility by adapting their load and generation trajectories according to the market need. It is explored how the "grid support" of buildings can be quantified, how grid-supportive present-day building energy systems are operated, how grid support can be improved, and how this affects energy efficiency.
As an effort to reduce carbon emissions, Germany plans to significantly increase the use of wind and PV electricity. Since wind and PV plants cannot be dispatched deliberately like conventional power plants, increased flexibility on the demand side is needed to efficiently utilize the intermittent renewable generation.
This Dissertation evaluates the suitability of building energy systems in non-residential buildings to provide load flexibility by adapting their load and generation trajectories according to the market need. It is explored how the "grid support" of buildings can be quantified, how grid-supportive present-day building energy systems are operated, and which approaches are most suitable to improve the grid support of buildings. To this end, four different flexibility and storage options (batteries, fuel switch, water tanks, and the thermal building mass) are compared in terms of improvement in grid support and impact on energy efficiency.
Erscheinungsdatum
Reihe/Serie Solare Energie- und Systemforschung
Zusatzinfo num. illus. and tab.
Verlagsort Stuttgart
Sprache englisch
Maße 148 x 210 mm
Themenwelt Technik Bauwesen
Technik Elektrotechnik / Energietechnik
Schlagworte alternative & renewable energy sources & technology • B • demand response • Electrical Engineering • Energiespeicherung • Erneuerbare Energie • Erneuerbare Energien • Fraunhofer ISE • Gebäudeenergie • heat transfer processes • Lastflexibilisierung • Wissenschaftler in der Gebäudeenergietechnik und E • Wissenschaftler in der Gebäudeenergietechnik und Energiesystemtechnik
ISBN-10 3-8396-1230-6 / 3839612306
ISBN-13 978-3-8396-1230-9 / 9783839612309
Zustand Neuware
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