Zobrazeno 1 - 8
of 8
pro vyhledávání: '"M. Amin F. Zarandi"'
Publikováno v:
AIChE Journal. 68
To validate the experimental results of Part-1, we conducted a two-phase flow simulation of imbibition of a wetting liquid through 2D microstructures made of ellipses of varying aspect ratios. The flow simulation in the particulate microstructures, c
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::c05c72b6ebf4ad95dd9899da90dcfd98
https://doi.org/10.22541/au.164873626.65820020/v1
https://doi.org/10.22541/au.164873626.65820020/v1
Publikováno v:
Water Quality Research Journal. 55:234-248
Arsenic contamination of water sources is a global problem, affecting numerous (especially developing) countries across the world. Exposure to exorbitantly high concentrations reaching 400 parts per billion of arsenic in water sources lead to numerou
Autor:
Krishna M. Pillai, M. Amin F. Zarandi
Publikováno v:
AIChE Journal. 67
Publikováno v:
Composites Part A: Applied Science and Manufacturing. 119:73-87
Tow permeability is a very important input in the dual-scale flow and void formation studies in Liquid Composite Molding processes for manufacturing polymer composites. In this comparative study aimed at checking the accuracy of various theoretical m
Publikováno v:
AIChE Journal. 64:3491-3501
Spontaneous imbibition of liquids in glass-fiber wicks. Part I: Usefulness of a sharp-front approach
Publikováno v:
AIChE Journal. 64:294-305
Spontaneous imbibition of a liquid into glass-fiber wicks is modeled using the single-phase Darcy's law after assuming a sharp flow-front marked by full saturation behind the front occurring in a transversely-isotropic porous medium. An analytical ex
Autor:
Krishna M. Pillai, M. Amin F. Zarandi
Publikováno v:
AIChE Journal. 64:306-315
In Part I (Zarandi MAF, Pillai KM. Spontaneous Imbibition of Liquids in Glass-Fiber Wicks. Part I: Usefulness of a Sharp-Front Approach. AIChE J, 64: 294–305, 2018), a model based on sharp liquid-front was proposed where a good match with the exper