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101 to 110 of 501 Results
MATLAB Source Code - 13.8 KB - MD5: 2765e5e6074ecded2bf4cdc3c8c8515f
This function is to calculate the contact angle of one interface. It also provides the average contact angle of all the interfaces in one image.
TIFF Image - 117.1 KB - MD5: 24e06e88f3ae521f8d1d25798030b9d7
Segmented image as a mask for the solid. This is different from the void mask, only if there are dead pores.
MATLAB Source Code - 29.0 KB - MD5: 32a315b45ac897d071f8fade8055122f
This is the main image processing code. For more information about the results and the processing procedure, refer to the references and the documents.
MATLAB Source Code - 2.7 KB - MD5: c71d37d13ec81ef253e1221ece33ef95
This function calculates length of a solid-fluid interface as the pixel to pixel distance of it.
MATLAB Source Code - 2.8 KB - MD5: a75101403ef9bc382d668887286772a8
This function calculates the fluid-fluid interface length as the pixel to pixel distance of the interface.
Markdown Text - 34.1 KB - MD5: 5bfed2c2b6e751d8a161d798f5420b6b
This document provides the details of GNU license.
TIFF Image - 721.3 KB - MD5: f6e81b32657c9f34c62ad502a99384d1
TIFF Image - 117.2 KB - MD5: 8ce3176f495ed24cd1ae7d7b0e53013d
Segmented image as a mask for the void
May 13, 2024 - Publication: Microfluidic experiments
Vahid Dastjerdi, Samaneh; Karadimitriou, Nikolaos; Steeb, Holger, 2024, "Data for: Formation of common preferential two-phase displacement pathways in porous media", https://doi.org/10.18419/DARUS-3358, DaRUS, V1, UNF:6:NG0rsoMQg/q3l86T4e08Dw== [fileUNF]
With the use of optical microscopy, microfluidic experiments took place in quasi-2D artificial porous media for a variety of cyclic displacement processes and boundary conditions, four of which are shared here. This Dataset contains the data presented in the related publication Vahid Dastjerdi et. al. (2024). Each experiment is flow-controlled and...
Gzip Archive - 3.1 GB - MD5: c58ff84dae0250d26496919e06816973
This archive file contains 4950 images from 24 sequential displacement processes. Flow rate in this experiment is 0.15 ul/min.
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