Biography

Dr. Darryl E. Carlyle-Moses

Department of Geography and Full Graduate Faculty Member

Graduate Program in Environmental Science

Thompson Rivers Universit

Canada

Associate Professor


Email: [email protected]


Qualifications

2002 Ph.D., Graduate Department of Geography, University of Toronto, Canada

1996 M.Sc., Graduate Department of Geography, University of Toronto, Canada

1994 B.Sc., Department of Geography, University of Toronto at Mississauga, Canada


Publications (Selected)

  1. Llorens, P., Latron, J., Carlyle‐Moses, D. E., Näthe, K., Chang, J. L., Nanko, K., ... & Levia, D. F. (2022). Stemflow infiltration areas into forest soils around American beech (Fagus grandifolia Ehrh.) trees. Ecohydrology, 15(2), e2369.
  2. Carlyle-Moses, D. E., Llorens, P., Latron, J., Nathe, K., Nanko, K., Chang, J., ... & Levia Jr, D. F. (2020, December). Investigating Infiltration Areas and Infiltration Funneling Ratios for American Beech Trees. In AGU Fall Meeting Abstracts (Vol. 2020, pp. H063-0005).
  3. Zhang, H., Levia, D. F., He, B., Wu, H., Liao, A., Carlyle-Moses, D. E., ... & Fu, C. (2020). Interspecific variation in tree-and stand-scale stemflow funneling ratios in a subtropical deciduous forest in eastern China. Journal of Hydrology, 590, 125455.
  4. Mrad, A., Katul, G. G., Levia, D. F., Guswa, A. J., Boyer, E. W., Bruen, M., ... & Scanlon, B. R. (2020). Peak grain forecasts for the US High Plains amid withering waters. Proceedings of the National Academy of Sciences, 117(42), 26145-26150.
  5. Levia, D. F., Creed, I. F., Hannah, D. M., Nanko, K., Boyer, E. W., Carlyle-Moses, D. E., ... & Bruen, M. (2020). Homogenization of the terrestrial water cycle. Nature geoscience, 13(10), 656-658.
  6. Carlyle-Moses, D. E., Iida, S. I., Germer, S., Llorens, P., Michalzik, B., Nanko, K., ... & Levia, D. F. (2020). Commentary: What we know about stemflow's infiltration area. Frontiers in Forests and Global Change, 3, 577247.
  7. Guswa, A. J., Tetzlaff, D., Selker, J. S., Carlyle‐Moses, D. E., Boyer, E. W., Bruen, M., ... & Levia, D. F. (2020). Advancing ecohydrology in the 21st century: A convergence of opportunities. Ecohydrology, 13(4), e2208.
  8. Carlyle-Moses, D. E., Livesley, S., Baptista, M. D., Thom, J., & Szota, C. (2020). Urban trees as green infrastructure for stormwater mitigation and use. Forest-water interactions, 397-432.
  9. Turner, B., Hill, D. J., Carlyle-Moses, D. E., & Rahman, M. (2019). Low-cost, high-resolution stemflow sensing. Journal of hydrology, 570, 62-68.
  10. Carlyle-Moses, D. E., Iida, S. I., Germer, S., Llorens, P., Michalzik, B., Nanko, K., ... & Levia, D. F. (2018). Expressing stemflow commensurate with its ecohydrological importance. Advances in Water Resources, 121, 472-479.
  11. Schooling, J. T., Levia, D. F., Carlyle-Moses, D. E., Dowtin, A. L., Brewer, S. E., Donkor, K. K., ... & Grzybowski, A. A. (2017). Stemflow chemistry in relation to tree size: A preliminary investigation of eleven urban park trees in British Columbia, Canada. Urban Forestry & Urban Greening, 21, 129-133.
  12. McKee, A. J., & Carlyle-Moses, D. E. (2017). Modelling stemflow production by juvenile lodgepole pine (Pinus contorta var. latifolia) trees. Journal of forestry research, 28(3), 565-576.
  13. Schooling, J. T., & Carlyle-Moses, D. E. (2015). The influence of rainfall depth class and deciduous tree traits on stemflow production in an urban park. Urban ecosystems, 18(4), 1261-1284.
  14. Carlyle‐Moses, D. E., & Schooling, J. T. (2015). Tree traits and meteorological factors influencing the initiation and rate of stemflow from isolated deciduous trees. Hydrological Processes, 29(18), 4083-4099.
  15. Carlyle‐Moses, D. E., & Lishman, C. E. (2015). Temporal persistence of throughfall heterogeneity below and between the canopies of juvenile lodgepole pine (Pinus contorta). Hydrological Processes, 29(18), 4051-4067.
  16. Carlyle-Moses, D. E., Lishman, C. E., & McKee, A. J. (2014). A preliminary evaluation of throughfall sampling techniques in a mature coniferous forest. Journal of forestry research, 25(2), 407-413.
  17. Levia, D. F., Carlyle-Moses, D., & Tanaka, T. (Eds.). (2011). Forest hydrology and biogeochemistry: synthesis of past research and future directions (Vol. 216). Springer Science & Business Media.
  18. Carlyle-Moses, D. E., & Gash, J. H. (2011). Rainfall interception loss by forest canopies. In Forest hydrology and biogeochemistry: Synthesis of past research and future directions (pp. 407-423). Dordrecht: Springer Netherlands.
  19. Levia, D. F., Keim, R. F., Carlyle-Moses, D. E., & Frost, E. E. (2011). Throughfall and stemflow in wooded ecosystems. In Forest hydrology and biogeochemistry: Synthesis of past research and future directions (pp. 425-443). Dordrecht: Springer Netherlands.
  20. Winkler, R. D., Moore, R. D., Redding, T. E., Spittlehouse, D. L., Smerdon, B. D., & Carlyle-Moses, D. E. (2010). The effects of forest disturbance on hydrologic processes and watershed. Compendium of forest hydrology and geomorphology in British Columbia. BC Min. For. Range, 66, 179.
  21. Winkler, R. D., Moore, R. D., Redding, T. E., Spittlehouse, D. L., Carlyle-Moses, D. E., & Smerdon, B. D. (2010). Hydrologic processes and watershed. Compendium of forest hydrology and geomorphology in British Columbia. BC Min. For. Range, 66, 133.
  22. Carlyle‐Moses, D. E., & Price, A. G. (2007). Modelling canopy interception loss from a Madrean pine‐oak stand, northeastern Mexico. Hydrological Processes: An International Journal, 21(19), 2572-2580.
  23. Carlyle‐Moses, D. E., & Price, A. G. (2006). Growing‐season stemflow production within a deciduous forest of southern Ontario. Hydrological Processes, 20(17), 3651-3663.


Profile Details

https://orcid.org/0000-0002-8358-4317 https://geography.unc.edu/

https://www.researchgate.net/profile/Darryl-Carlyle-Moses

https://scholar.google.com/citations?user=MZ1vZu0AAAAJ&hl=en



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