Modeling mass transfer in fracture flows with the time domain-random walk method
Kuva, J., Voutilainen, M., & Mattila, K. (2019). Modeling mass transfer in fracture flows with the time domain-random walk method. Computational Geosciences, 23(5), 953-967. https://doi.org/10.1007/s10596-019-09852-5
Julkaistu sarjassa
Computational GeosciencesPäivämäärä
2019Tekijänoikeudet
© The Authors 2019
The time domain-random walk method was developed further for simulating mass transfer in fracture flows together with matrix diffusion in surrounding porous media. Specifically, a time domain-random walk scheme was developed for numerically approximating solutions of the advection-diffusion equation when the diffusion coefficient exhibits significant spatial variation or even discontinuities. The proposed scheme relies on second-order accurate, central-difference approximations of the advective and diffusive fluxes. The scheme was verified by comparing simulated results against analytical solutions in flow configurations involving a rectangular channel connected on one side with a porous matrix. Simulations with several flow rates, diffusion coefficients, and matrix porosities indicate good agreement between the numerical approximations and analytical solutions.
Julkaisija
SpringerISSN Hae Julkaisufoorumista
1420-0597Asiasanat
Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/32303171
Metadata
Näytä kaikki kuvailutiedotKokoelmat
Lisätietoja rahoituksesta
Financial support from the Finnish Research Programme on Nuclear Waste Management (KYT2018) is gratefully acknowledged.Lisenssi
Samankaltainen aineisto
Näytetään aineistoja, joilla on samankaltainen nimeke tai asiasanat.
-
Exploring fast proton transfer events associated with lateral proton diffusion on the surface of membranes
Amdursky, Nadav; Lin, Yiyang; Aho, Noora; Groenhof, Gerrit (National Academy of Sciences, 2019)Proton diffusion (PD) across biological membranes is a fundamental process in many biological systems, and much experimental and theoretical effort has been employed for deciphering it. Here, we report on a spectroscopic ... -
Analysis of fluid flow through porous media based on x-ray micro-tomographic reconstructions
Koivu, Viivi (University of Jyväskylä, 2010)This thesis deals with creeping fluid flow through fibrous porous materials. Permeability through a porous medium is a measure of the ability of the material to transmit fluids. For testing and demonstration purposes the ... -
On the a posteriori error analysis for linear Fokker-Planck models in convection-dominated diffusion problems
Matculevich, Svetlana; Wolfmayr, Monika (Elsevier, 2018)This work is aimed at the derivation of reliable and efficient a posteriori error estimates for convection-dominated diffusion problems motivated by a linear Fokker–Planck problem appearing in computational neuroscience. ... -
Deinstitutionalization revisited
Aksom, Herman (Emerald, 2021)Purpose The purpose of this paper is to offer a new analysis and understanding of the notion of deinstitutionalization. Deinstitutionalization of taken-for-granted practices as a natural consequence of ever-increasing ... -
Protein diffusion in mammalian cell cytoplasm
Kühn, Thomas; Ihalainen, Teemu; Hyväluoma, Jari; Dross, Nicolas; Willman, Sami; Langowski, Jörg; Vihinen-Ranta, Maija; Timonen, Jussi (Public Library of Science (PLoS), 2011)We introduce a new method for mesoscopic modeling of protein diffusion in an entire cell. This method is based on the construction of a three-dimensional digital model cell from confocal microscopy data. The model cell is ...
Ellei toisin mainittu, julkisesti saatavilla olevia JYX-metatietoja (poislukien tiivistelmät) saa vapaasti uudelleenkäyttää CC0-lisenssillä.