Details zur Publikation

Kategorie Textpublikation
Referenztyp Buchkapitel
DOI 10.1007/978-3-319-68225-9_12
Titel (primär) THC-processes
Titel (sekundär) Thermo-hydro-mechanical-chemical processes in fractured porous media: Modelling and benchmarking. From benchmarking to tutoring
Autor Nagel, T.; Ostermeier, P.; Seitz, G.; Class, H.; Helmig, R.
Herausgeber Kolditz, O.; Nagel, T.; Shao, H.; Wang, W.; Bauer, S.
Quelle Terrestrial Environmental Sciences
Erscheinungsjahr 2018
Department ENVINF
Seite von 259
Seite bis 270
Sprache englisch
Abstract The operation of thermochemical heat storage devices in open mode by permeating a reactive porous body or particle bed by a compressible heat-transfer fluid which in turn transports a reactive fluid component constitutes a strongly coupled problem of multiple physical processes. High reaction rates associated with a rapid release of significant amounts of heat and a complicated dependence of processes and material properties on the physical and chemical state of the system add to the level of complexity. It is the purpose of this chapter to (i) define a suitable benchmark for a suitable process model and (ii) perform such a comparison by using the simulation platforms OpenGeoSys, DuMux and ANSYS Fluent.
dauerhafte UFZ-Verlinkung https://www.ufz.de/index.php?en=20939&ufzPublicationIdentifier=21488
Nagel, T., Ostermeier, P., Seitz, G., Class, H., Helmig, R. (2018):
THC-processes
In: Kolditz, O., Nagel, T., Shao, H., Wang, W., Bauer, S. (eds.)
Thermo-hydro-mechanical-chemical processes in fractured porous media: Modelling and benchmarking. From benchmarking to tutoring
Terrestrial Environmental Sciences
Springer Nature, Cham, p. 259 - 270 10.1007/978-3-319-68225-9_12