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- W852928087 abstract "New methods and technologies for energy storage are required for the transition to renewable energy sources, in Germany termed the “Energiewende”. Subsurface energy storage systems, such as salt caverns for hydrogen, compressed air and methane storage or porous formations for heat and gas storage offer the possibility of hosting large amounts of energy or substance. They can thus be utilized to store energy and dampen the intermittent nature of the renewable sources of energy production. When employing these systems, an adequate system and process understanding is required in order to understand the subsurface formations intended for use as storage sites as well as to predict the complex and interacting effects on the storage formations, neighbouring formations and protected compartments like e.g. shallow ground water, soil, ecological functions and ultimately humans. This process understanding is the basis for assessing the potential of these storage options in the subsurface on the scale required to dampen production fluctuations, as well as to identify the risks connected with these uses. Special attention is turned on possible mutual influences of these intended storage options with existing or planned other uses of the subsurface. Figure 1 shows a schematic subsurface with possible types of use and their possible interactions. Interactions can be manifold and are transmitted by hydraulic, thermal, chemical or mechanical effects." @default.
- W852928087 created "2016-06-24" @default.
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- W852928087 date "2015-06-02" @default.
- W852928087 modified "2023-09-25" @default.
- W852928087 title "Impacts of the use of the geological underground for thermal, electrical or material geoenergy storage - prognosis of induced effects by scenario analysis" @default.
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