References
Grant, S.A. (2004) Effect of temperature on soil hydraulic properties. In Encyclopedia of Soils in the Environment, D.
Hillel, C. Rosenzweig, D. Powlson, K. Scow, M. Singer, and D.L. Sparks (Ed.). New York: Academic Press.
Grant, S.A., and D. Or (in prep) Relationship between temperature sensitivity of capillary pressure and soil particle
size. Water Resources Research.
Grant, S.A., and A. Salehzadeh (1996) Calculation of temperature effects on wetting coefficients of porous solids and
their capillary pressure functions. Water Resources Research, 32: 261270.
Grant, S.A., and M. Young (in prep) An evaluation of analytic and numerical approaches for estimating temperature
effect on infiltration. Geophysical Research Letters.
Jury, W.A., W.R. Gardner, and W.H. Gardner (1991) Soil Physics, 5th edition. New York: John Wiley and Sons, Inc.
Muskat, M., and M.W. Meres (1936) The flow of heterogeneous fluids through a porous media. Physics, 7: 346363.
Acknowledgments
This work was supported by funding from the U.S. Army Corps of Engineers Civil Works Research-and-Development-
funded TOWNS Research Program work unit "Technology Transfer, Innovations, and Demonstrations," CWIS # 39765, and
UFDP Work Unit "Assess and Improve Infiltration Analyses to Support Estimates of Recharge and Initial Abstraction,"
CWIS # 031329.
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This issue of Cold Regions Engineering was written by Steven A. Grant, PhD, Research Physical Scientist, and Kate
White, PhD, PE, Research Hydraulic Engineer, Environmental Sciences Branch, Cold Regions Research and Engineering
Laboratory (CRREL), U.S. Army Engineer Research and Development Center (ERDC), Hanover, New Hampshire.
Cold Regions Engineering
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