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Understanding the effect of single-fracture heterogeneity from single-well injection-withdrawal (SWIW) tests

  • Martin Larsson
  • , Christine Doughty
  • , Chin-Fu Tsang
  • , Auli Niemi

Publikation: Bidrag till tidskriftArtikel i vetenskaplig tidskriftPeer review

Sammanfattning

The single-well injection-withdrawal (SWIW) tracer test is a method used to estimate the tracer retardation properties of a fracture or fracture zone. The effects of single-fracture aperture heterogeneity on SWIW-test tracer breakthrough curves are examined by numerical modelling. The effects of the matrix diffusion and sorption are accounted for by using a particle tracking method through the addition of a time delay added to the advective transport time. For a given diffusion and sorption property (P (m)) value and for a heterogeneous fracture, the peak concentration is larger compared to a homogeneous fracture. The cumulative breakthrough curve for a heterogeneous fracture is similar to that for a homogeneous fracture and a less sorptive/diffusive tracer. It is demonstrated that the fracture area that meets the flowing water, the specific flow-wetted surface (sFWS) of the fracture, can be determined by matching the observed breakthrough curve for a heterogeneous fracture to that for a homogeneous fracture with an equivalent property parameter. SWIW tests are also simulated with a regional pressure gradient present. The results point to the possibility of distinguishing the effect of the regional pressure gradient from that of diffusion through the use of multiple tracers with different P (m) values.
OriginalspråkEngelska
Sidor (från-till)1691-1700
Antal sidor10
TidskriftHydrogeology Journal
Volym21
Nummer8
DOI
StatusPublicerad - 2013

Nyckelord

  • Groundwater flow
  • Tracer tests
  • Solute transport
  • Fractured rocks
  • Numerical modeling

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