Skip to main navigation Skip to search Skip to main content

Development, validation and demonstration of a new Modelica pit thermal energy storage model for system simulation and optimization

  • BEW Berliner Energie und Wärme AG
  • Department of Civil and Environmental Engineering, Institute of Structural Mechanics and Design, Technical University of Darmstadt
  • Department of Materials- and Geosciences, Geothermal Science and Technology, Technical University of Darmstadt
  • GFZ Helmholtz Centre for Geosciences

Research output: Contribution to journalArticlepeer-review

Abstract

Space heating applications account for a high share of global greenhouse gas emissions. To increase the renewable share of heat generation, seasonal thermal energy storage (STES) can be used to make thermal energy from fluctuating renewable sources available in times of high demand. A popular STES technology is pit thermal energy storage (PTES), where heat is stored underground, using water as a storage medium. To evaluate the use of PTES in an energy system, easily adaptable, publicly accessible and tool independent models are needed. In this paper, we improve an existing PTES model developed in the Modelica modeling language. The model is cross-compared with a more detailed and previously validated COMSOL model, considering different amounts of insulation, showing a deviation of 2-13% in the observed annual charged and discharged amount of heat. The results indicate that the presented model is well suited for early design stage and an exemplary case study is performed to demonstrate its applicability in a system context. Dimensions of system components are optimized for the levelized cost of heat (LCOH), both with and without subsidies, highlighting the importance of subsidies for the transition towards climate friendly heating solutions, as the gas boiler use is reduced from 47.6% to 2.7%.
Original languageEnglish
Number of pages23
JournalGeothermal Energy Science
Volume12
Issue number1
DOIs
Publication statusPublished - 24 Jun 2024

Research Field

  • Large Energy Supply Infrastructure

Web of Science subject categories (JCR Impact Factors)

  • Energy & Fuels

Fingerprint

Dive into the research topics of 'Development, validation and demonstration of a new Modelica pit thermal energy storage model for system simulation and optimization'. Together they form a unique fingerprint.

Cite this