Matches in SemOpenAlex for { <https://semopenalex.org/work/W3015536180> ?p ?o ?g. }
- W3015536180 endingPage "5883" @default.
- W3015536180 startingPage "5868" @default.
- W3015536180 abstract "This paper presents a new convenient and easy-to-use method to analyze and calculate measurable quantities in 1-D counter-current (COUC) spontaneous imbibition (SI) processes. Cumulative water imbibed vs time can be calculated both up to and after the water has contacted the no-flow boundary as well as the time required to contact the no-flow boundary. The model’s applicability for the whole process is a big advantage compared to other models which only are valid before this event. The method is developed based on a hypothesis that a frontal advance equation (FAE) also can be established for 1-D COUC SI processes in line with the Buckley – Leverett method for forced water imbibition. A relationship between distance traveled, x, by a diffusing water saturation, Sw, and time of the form, x∼D(Sw)t, is identified from the microscopic theory for diffusion. The proportionality factor between distance and time is the square root of the capillary diffusion coefficient, assumed to be constant for a given water saturation, Sw. The corresponding cumulative water volume diffusing into the medium for the same water saturation, Sw, is calculated from the diffusion equation using the same constant capillary diffusion coefficient D(Sw). The final step to establish the FAE is to recalculate the cumulative volume of water imbibed to an equivalent distance (ED) waterfront, i.e., the distance traveled by the imbibing water phase having the same cumulative volume water imbibed as calculated from the diffusion equation. The FAE is similar to the water saturation characteristics in the BL method. The results for cumulative water imbibed vs time is giving a highly accurate approximation when compared to analytical solutions (i.e., the McWhorter and Sunada solution), deviating slightly from the correct value due to the use of constant diffusion coefficients. The difference can be corrected by a factor in the range 1.0–1.24 for the four data sets considered. The conclusion obtained by comparing the FAE method result to the only experiment data set in the literature where all input data are available, GVB-3 (Bourbiaux and Kalaydjian, 1990), is that the new FAE cannot be falsified within the input parameter uncertainty range. The FAE method is qualitatively corroborated by the results from four 1-D COUC SI cases using synthetic input data as well comparison with many other test results reported in the literature." @default.
- W3015536180 created "2020-04-17" @default.
- W3015536180 creator A5015910525 @default.
- W3015536180 creator A5016034428 @default.
- W3015536180 creator A5027653178 @default.
- W3015536180 creator A5058466019 @default.
- W3015536180 date "2020-04-10" @default.
- W3015536180 modified "2023-09-27" @default.
- W3015536180 title "Interpretation of 1-D Counter-Current Spontaneous Imbibition Processes Using Microscopic Diffusion Theory and a Modified Buckley–Leverett Approach" @default.
- W3015536180 cites W1503497660 @default.
- W3015536180 cites W1572264020 @default.
- W3015536180 cites W1968591816 @default.
- W3015536180 cites W1987310301 @default.
- W3015536180 cites W1987545527 @default.
- W3015536180 cites W1990701159 @default.
- W3015536180 cites W2001642090 @default.
- W3015536180 cites W2006175248 @default.
- W3015536180 cites W2006459433 @default.
- W3015536180 cites W2007315370 @default.
- W3015536180 cites W2007959193 @default.
- W3015536180 cites W2017362474 @default.
- W3015536180 cites W2024470998 @default.
- W3015536180 cites W2025330670 @default.
- W3015536180 cites W2029729521 @default.
- W3015536180 cites W2030765885 @default.
- W3015536180 cites W2031711003 @default.
- W3015536180 cites W2035397838 @default.
- W3015536180 cites W2038139928 @default.
- W3015536180 cites W2043239282 @default.
- W3015536180 cites W2043443681 @default.
- W3015536180 cites W2053800905 @default.
- W3015536180 cites W2059060595 @default.
- W3015536180 cites W2064860243 @default.
- W3015536180 cites W2069741758 @default.
- W3015536180 cites W2072287445 @default.
- W3015536180 cites W2077304705 @default.
- W3015536180 cites W2078074995 @default.
- W3015536180 cites W2078895745 @default.
- W3015536180 cites W2080054794 @default.
- W3015536180 cites W2080795323 @default.
- W3015536180 cites W2088787947 @default.
- W3015536180 cites W2098793851 @default.
- W3015536180 cites W2113690154 @default.
- W3015536180 cites W2132307331 @default.
- W3015536180 cites W2149877003 @default.
- W3015536180 cites W2346647106 @default.
- W3015536180 cites W2508210794 @default.
- W3015536180 cites W2517485859 @default.
- W3015536180 cites W2535120525 @default.
- W3015536180 cites W2607272825 @default.
- W3015536180 cites W2612119078 @default.
- W3015536180 cites W2621169052 @default.
- W3015536180 cites W2761985609 @default.
- W3015536180 cites W2777282388 @default.
- W3015536180 cites W2793286004 @default.
- W3015536180 cites W2883337509 @default.
- W3015536180 cites W2945140305 @default.
- W3015536180 cites W2947475442 @default.
- W3015536180 cites W4236858519 @default.
- W3015536180 doi "https://doi.org/10.1021/acs.energyfuels.0c01109" @default.
- W3015536180 hasPublicationYear "2020" @default.
- W3015536180 type Work @default.
- W3015536180 sameAs 3015536180 @default.
- W3015536180 citedByCount "6" @default.
- W3015536180 countsByYear W30155361802022 @default.
- W3015536180 countsByYear W30155361802023 @default.
- W3015536180 crossrefType "journal-article" @default.
- W3015536180 hasAuthorship W3015536180A5015910525 @default.
- W3015536180 hasAuthorship W3015536180A5016034428 @default.
- W3015536180 hasAuthorship W3015536180A5027653178 @default.
- W3015536180 hasAuthorship W3015536180A5058466019 @default.
- W3015536180 hasConcept C100701293 @default.
- W3015536180 hasConcept C105569014 @default.
- W3015536180 hasConcept C114614502 @default.
- W3015536180 hasConcept C121332964 @default.
- W3015536180 hasConcept C136264566 @default.
- W3015536180 hasConcept C159390177 @default.
- W3015536180 hasConcept C162324750 @default.
- W3015536180 hasConcept C164602753 @default.
- W3015536180 hasConcept C178790620 @default.
- W3015536180 hasConcept C185250623 @default.
- W3015536180 hasConcept C185592680 @default.
- W3015536180 hasConcept C196806460 @default.
- W3015536180 hasConcept C2778409621 @default.
- W3015536180 hasConcept C2780378061 @default.
- W3015536180 hasConcept C3017618536 @default.
- W3015536180 hasConcept C33923547 @default.
- W3015536180 hasConcept C39432304 @default.
- W3015536180 hasConcept C41008148 @default.
- W3015536180 hasConcept C53403541 @default.
- W3015536180 hasConcept C56739046 @default.
- W3015536180 hasConcept C571446 @default.
- W3015536180 hasConcept C57879066 @default.
- W3015536180 hasConcept C59822182 @default.
- W3015536180 hasConcept C6648577 @default.
- W3015536180 hasConcept C69357855 @default.
- W3015536180 hasConcept C86803240 @default.
- W3015536180 hasConcept C97355855 @default.