Permeability characterization. Part 1: A proposed standard reference fabric for permeability

Richard S. Parnas, J. Grant Howard, Thomas L. Luce, Suresh G. Advani

Polymer Composites · 1995 · 172 citations · 18 references

Concepts

TL;DR

The 3‑D woven fabric requires careful cutting and handling but is more robust than 2‑D woven or braided fabrics. The study proposes a three‑dimensionally woven fabric as a standard reference material for permeability characterization. The fabric was characterized for permeability in radial, unsaturated and saturated 1‑D, and through‑thickness flow geometries, and experiments with a random mat were performed to study transient wicking behavior. When prepared carefully, the 3‑D woven fabric’s permeability can be measured reproducibly within 15 % in radial or saturated 1‑D flow, while transient experiments reveal that structural heterogeneity increases unsaturated permeability and that wicking produces decreasing unsaturated permeability transients.

Abstract

Abstract A three‐dimensionally woven fabric is proposed as a standard reference material for permeability characterization. The 3‐D woven fabric requires care in cutting and handling, although it is more robust than 2‐D woven or braided fabrics. If prepared carefully, the permeability of the 3‐D woven fabric can be measured reproducibly within 15% in either radial flow or saturated 1‐D flow geometries. The material was characterized for permeability in radial, unsaturated and saturated 1‐D, and through‐thickness flow geometries. The transient results demonstrated the importance of structural heterogeneity on the unsaturated flow behavior, and agree qualitatively with a simplistic model of flow in heterogeneous unsaturated porous media. The effects of heterogeneity were manifested in the proposed SRM by an increasing trend in the “unsaturated permeability.” Experiments were also conducted with a random mat that displayed transient flows dominated by wicking. The effects of wicking on the macroscopic flow behavior were manifested by transients in the “unsaturated permeability” in which a decreasing trend was observed.

References

18