Nathan W. Haws, Ph.D.

Affiliations: 
2003 Purdue University, West Lafayette, IN, United States 
Area:
Hydrology, Environmental Engineering, Environmental Sciences
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"Nathan Haws"
Cross-listing: Envirotree

Parents

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P. Suresh C. Rao grad student 2003 Purdue
 (Integrated flow and transport processes in subsurface -drained agricultural fields.)
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Publications

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Haws NW, Ball WP, Bouwer EJ. (2007) Effects of initial solute distribution on contaminant availability, desorption modeling, and subsurface remediation. Journal of Environmental Quality. 36: 1392-402
Haws NW, Paraskewich MR, Hilpert M, et al. (2007) Effect of fluid velocity on model-estimated rates of radial solute diffusion in a cylindrical macropore column Water Resources Research. 43
Perkins DB, Haws NW, Jawitz JW, et al. (2007) Soil hydraulic properties as ecological indicators in forested watersheds impacted by mechanized military training Ecological Indicators. 7: 589-597
Haws NW, Ball WP, Bouwer EJ. (2006) Modeling and interpreting bioavailability of organic contaminant mixtures in subsurface environments. Journal of Contaminant Hydrology. 82: 255-92
Stillman JS, Haws NW, Govindaraju RS, et al. (2006) A semi-analytical model for transient flow to a subsurface tile drain Journal of Hydrology. 317: 49-62
Haws NW, Bouwer EJ, Ball WP. (2006) The influence of biogeochemical conditions and level of model complexity when simulating cometabolic biodegradation in sorbent-water systems Advances in Water Resources. 29: 571-859
Das BS, Haws NW, Rao PSC. (2005) Defining geometric similarity in soils Vadose Zone Journal. 4: 264-270
Haws NW, Rao PSC, Simunek J, et al. (2005) Single-porosity and dual-porosity modeling of water flow and solute transport in subsurface-drained fields using effective field-scale parameters Journal of Hydrology. 313: 257-273
Haws NW, Das BS, Rao PS. (2004) Dual-domain solute transfer and transport processes: evaluation in batch and transport experiments. Journal of Contaminant Hydrology. 75: 257-80
Haws NW, Rao PSC. (2004) The effect of vertically decreasing macropore fractions on simulations of non-equilibrium solute transport Vadose Zone Journal. 3: 1300-1308
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