溶解性疏松介质和裂隙岩中结构障碍对完全均质化与虫洞形成的限制
摘要
在疏松介质和裂隙岩中的溶解会改变流体的化学成分以及固体的物理属性。 Depending on system conditions, reactive flow may enlarge pores uniformly, widen pre-existing channels, or trigger instabilities that form wormholes. The resulting pattern reflects feedbacks among advection, diffusion, surface reaction, and the initial heterogeneity of the medium. Porous and fractured media can exhibit distinct characteristics -- for example, the presence of large fractures can significantly alter the network topology and overall connectivity of the system. We quantify these differences with three network models -- a regular pore network, a disordered pore network, and a discrete fracture network -- evaluated with a unified metric: the flow focusing profile. This metric effectively captures evolution of flow paths across all systems: it reveals a focusing front that propagates from the inlet in the wormholing regime, a system-wide decrease in focusing during uniform dissolution, and the progressive enlargement of pre-existing flow paths in the channeling regime. The metric shows that uniform dissolution cannot eliminate heterogeneity resulting from the network topology. This structural heterogeneity -- rather than just pore-diameter or fracture-aperture variance -- sets a fundamental limit on flow homogenization and must be accounted for when upscaling dissolution kinetics from pore or fracture scale to the reservoir level.
引用
@article{arxiv.2602.06279,
title = {Structural barriers to complete homogenization and wormholing in dissolving porous and fractured rocks},
author = {Tomasz Szawełło and Jeffrey D. Hyman and Peter K. Kang and Piotr Szymczak},
journal= {arXiv preprint arXiv:2602.06279},
year = {2026}
}
备注
40 pages, 9 figures