000 02675nam  2200421zi 4500
0019.870749
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008190327s1996    onca    ob   f000 0 eng d
040 |aCaOODSP|beng|erda|cCaOODSP
043 |an-cn---
0861 |aEn13-5/96-72E-PDF
1001 |aBogan, J. D., |eauthor.
24512|aA semi-analytical model for the simulation of solute transport in a network of fractures / |cby J.D. Bogan and K.S. Novakowski.
264 1|a[Ottawa] : |bEnvironment Canada, Water Science and Technology Directorate = Environnement Canada, Direction générale des sciences et de la technologie, eau, |c1996.
300 |a1 online resource (2 unnumbered pages, 25 pages, 16 unnumbered pages) : |billustrations.
336 |atext|btxt|2rdacontent
337 |acomputer|bc|2rdamedia
338 |aonline resource|bcr|2rdacarrier
4901 |aNWRI contribution ; |v96-72
500 |a"For submission to: Water Resources Research. Revised May 2, 1996."
500 |aDigitized edition from print [produced by Environment and Climate Change Canada].
504 |aIncludes bibliographical references.
5203 |a"A semi-analytical model is developed which accounts for flow and solute transport through a two-dimensional network of fractures. Matrix diffusion, retardation, and hydrodynamic dispersion are also considered. The model is derived by application of the Laplace transform to the governing flow and transport equations for each fracture element. The resulting ordinary differential equations are linked using robust descriptions of mass conservation at the fracture intersections. Hydraulic head and solute concentration are determined in real time by numerically inverting the forward transform. The model was verified using a formal mass balance. To illustrate the use of the model, applications were undertaken in which matrix diffusion was studied in a theoretical fracture network and using a network in which the conditions in a known field setting, were simulated"--Abstract.
65310|aGroundwater flow
65310|aMathematical models
65310|aShields (Geology)
65310|aFracture mechanics
69207|2gccst|aGroundwater
7001 |aNovakowski, Kent S., |eauthor.
7101 |aCanada. |bEnvironment Canada.
7101 |aCanada. |bWater Science and Technology Directorate.
7102 |aNational Water Research Institute (Canada)
830#0|aNWRI contribution ;|v96-72.|w(CaOODSP)9.844121
85640|qPDF|s2.97 MB|uhttps://publications.gc.ca/collections/collection_2019/eccc/en13-5/En13-5-96-72-eng.pdf