Title : Experimental and Numerical Studies of Gas Permeability through Orthogonal Networks for Isotropic Porous Material.

Pub. Date : 2021 Jul 8

PMID : 34300751






3 Functional Relationships(s)
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1 As part of experimental tests of gas permeability through porous material in the form of polyamide, the numerical simulation method was used, using the k-epsilon turbulence model. Nylons PAXIP1 associated glutamate rich protein 1 Homo sapiens
2 The analysis shows that, for a porous polyamide bed, there is a certain limit range of gas velocity (10-4-1) ms-1 at which flow resistance is the lowest. Nylons PAXIP1 associated glutamate rich protein 1 Homo sapiens
3 For porous polyamide, the permeability characteristic is non-linear, which, from the point of view of the measurements carried out, indicates the advantage of turbulent gas flow over its laminar movement. Nylons PAXIP1 associated glutamate rich protein 1 Homo sapiens