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Exact(12)
As a result, when a portion of fractures is eliminated, the equivalent network permeability is strongly affected.
The results show that for all of the cases, a portion of fractures can be eliminated without significantly affecting the overall network permeability.
For all of the cases with a power-law aperture distribution, at least a portion of fractures can be eliminated without significantly affecting the effective network permeability.
We compare the effective permeability of the sub-network with a portion of fractures eliminated from the original fracture network using these criteria.
Countless criteria can be used to decide which portion of fractures to remove, such as fracture length, aperture, [length × aperture], velocity, etc.
As the aperture distribution becomes broader, the distribution of Q is also broader, and there is a small portion of fractures which carry much more flow than the others.
Similar(48)
The portion of the total flow in the aquifer increases with the aquifer thickness, while the portion of fracture flow coming from the overlying aquifer decreases.
Compared to the original fracture network, the dominant sub-network lacks a portion of small fractures which means that fractures with small aperture are eliminated systematically.
As presented in Fig. 6, when α = 1.001, the fracture network shows strongly preferential flow paths: A small portion of the fractures carry much more flow than the others.
If the fracture network is poorly connected, i.e., near the percolation threshold, it is well established that only a small portion of the fractures connects the injection well and the production well.
Thus, that portion of a fracture zone along an offset ridge axis is a fault boundary between the oppositely moving plates and is called a ridge ridge transform fault.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com