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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 V...
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.
Tabular Data - 186.4 KB - 3 Variables, 4950 Observations - UNF:6:DbafkTKErmp6KY6nzFK33Q==
This file contains the measured inlet pressure during the experiment with a flow rate of 0.15 ul/min.
Gzip Archive - 5.4 GB - MD5: 85d6f4f562a06b587a5634043a1f10a3
This archive file contains 4324 images from 12 sequential displacement processes. Flow rate in this experiment is 1.5 ul/min.
Gzip Archive - 3.4 GB - MD5: e19a2bbdb40f00359e8d4e77293247d6
This archive file contains 4946 images from 24 sequential displacement processes. Flow rate in this experiment is 15 ul/min.
Tabular Data - 163.5 KB - 3 Variables, 4324 Observations - UNF:6:+/qpJA8ZrtJ3TpZkAHFWbQ==
This file contains the measured inlet pressure during the experiment with the flow rate of 15 ul/min.
Apr 18, 2024 - Publication: Microfluidic experiments
Karadimitriou, Nikolaos; Lee, Dongwon; Vahid Dastjerdi, Samaneh; Steeb, Holger, 2024, "Primary drainage experiments and fractal dimensions", https://doi.org/10.18419/darus-4114, DaRUS, V1
The current repository contains raw data in the shape of images collected during a systematic laboratory study, examining the usability of the fractal dimension in the characterization of the flow regime. The study is presented in the paper by Karadimitriou et al., 2024. The two...
TAR Archive - 279.3 MB - MD5: 83e234d9d149aa5926c31444fd3f455f
Capillary number for the invading phase equal to 10-2. Viscosity ratio between the invading and the defending phase equal to 0.2.
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