Found 16 results
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Filters: First Letter Of Title is M and Author is John Selker  [Clear All Filters]
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M
C. Sayde, Buelga, J. Benitez, Rodriguez-Sinobas, L., Khoury, L. El, English, M., Van De Giesen, N., and Selker, J., Mapping variability of soil water content and flux across 1–1000 m scales using the actively heated fiber optic method, Water Resources Research, vol. 50, pp. 7302–7317, 2014.
R. D. Stewart, Najm, M. R. Abou, Rupp, D. E., and Selker, J., Measurement tool for dynamics of soil cracks, Vadose Zone Journal, vol. 11, 2012.
N. Tufillaro, Dorighi, J., Collier, M., and Selker, J., Measuring Stream Dynamics with Fiber Optics, in American Physical Society, 10th Annual Meeting of the Northwest Section of APS, May 15-17, 2008, abstract\# G3, 2008.
B. Kooreman, Hut, R., Van De Giesen, N., Selker, J., and Steele-Dunne, S., Measuring vegetation water content by looking at trees blowing in the wind, in EGU General Assembly Conference Abstracts, 2013.
S. A. Drake, Huwald, H., Selker, J., Higgins, C. W., Lehning, M., and Thomas, C. K., Measuring Wind Ventilation of Dense Surface Snow, in AGU Fall Meeting Abstracts, 2014.
E. L. Kraft and Selker, J., Methodological developments in in-situ measurement and visualization of colloid transport processes in the subsurface, in GSA Annual Meeting and Exposition, Salt Lake City UT, 2005.
N. Ochiai, Kraft, E. L., and Selker, J., Methods for colloid transport visualization in pore networks, Water resources research, vol. 42, 2006.
N. Weisbrod, Niemet, M. R., Rockhold, M. L., McGinnis, T., and Selker, J., Migration of saline solutions in variably saturated porous media, Journal of contaminant hydrology, vol. 72, pp. 109–133, 2004.
S. L. Uesugi, Yarwood, R. R., Selker, J., and Bottomley, P. J., A model that uses the induction phase of lux gene-dependent bioluminescence in Pseudomonas fluorescens HK44 to quantify cell density in translucent porous media, Journal of microbiological methods, vol. 47, pp. 315–322, 2001.
R. D. Stewart, Rupp, D. E., Najm, M. R. Abou, and Selker, J., Modeling effect of initial soil moisture on sorptivity and infiltration, Water Resources Research, vol. 49, pp. 7037–7047, 2013.
J. Selker, Modelling Variably Saturated Flow with HYDRUS-2D., Vadose Zone Journal, vol. 3, pp. 725–725, 2004.
D. E. Rupp, Selker, J., and Šimunek, J., A Modification to the Bouwer and Rice Method of Slug-Test Analysis for Large-Diameter, Hand-Dug Wells, Ground Water, vol. 39, pp. 308–314, 2001.
T. O. T. Read, Bense, V. F., Krause, S., Bour, O., Le Borgne, T., and Selker, J., Monitoring fluid velocity using Active-Distributed Temperature Sensing (A-DTS), in AGU Fall Meeting Abstracts, 2014.
F. Selker and Selker, J., Monitoring Movement in Fluid-Containing Environment via Variable Heating. 2013.
C. Sayde, Moreno, D., Legrand, C., Dong, J., Steele-Dunne, S. C., Ochsner, T., and Selker, J., Monitoring soil water dynamics at 0.1-1000 m scales using active DTS: the MOISST experience, in AGU Fall Meeting Abstracts, 2014.
M. H. Schroth, Istok, J. D., Selker, J., Oostrom, M., and White, M. D., Multifluid flow in bedded porous media: laboratory experiments and numerical simulations, Advances in Water Resources, vol. 22, pp. 169–183, 1998.