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What controls stemflow? A LiDAR-based investigation of individual tree canopy structure, neighborhood conditions, and meteorological factors

  • Sandra Aurelie Yankine
  • , John T. Van Stan
  • , Dylan Chance Mesta
  • , Jean-François Côté
  • , Anke Hildebrandt
  • , Jan Friesen
  • , Gustavo Maldonado
  • Georgia Southern University
  • Natural Resources Canada, Canadian Forest Service
  • Friedrich Schiller University Jena
  • Helmholtz Centre for Environmental Research

Research output: Contribution to conferenceAbstractpeer-review

Abstract

Stemflow is a pointed hydrologic flux at the base of tree stems that has been linked to a host of biogeochemical processes in vegetated landscapes. Much work has been done to examine controls over stemflow water yield, finding three major factors: individual tree canopy structure, meteorological variables, and neighborhood conditions. However, the authors are unaware of any study to directly quantify all factors using a combination of terrestrial LiDAR and micrometeorological monitoring methods. This study directly quantifies individual Pinus palustris tree canopy characteristics (trunk volume and angle, branch volume and angle from 1st-to-3rd order, bark roughness, and height), 10-m radius neighborhood properties (number of trees, mean diameter and height, mean distance from study tree, and canopy overlap), and above-canopy storm conditions (magnitude, intensity, mean/max wind speed, and vapor pressure deficit) directly at the site. Stemflow production was 1% of rainfall, ranging from 0.3-59 L per storm from individual trees. Preliminary findings from storms (5-176 mm in magnitude) indicate that all individual tree characteristics, besides bark roughness, have little influence on stemflow generation. Bark roughness altered stemflow generation by affecting trunk water storage (0.1-0.7 mm) and wet trunk evaporation rates (0.005-0.03 mm/h). The strongest influence over stemflow generation from individual trees was the interaction between neighborhood characteristics and meteorological conditions (primarily rainfall amount and, secondarily, rainfall intensity).
Original languageAmerican English
StatePublished - Dec 11 2017
EventThe American Geophysical Union: Fall Meeting 2017 - New Orleans, United States
Duration: Dec 11 2017Dec 15 2017
https://agu.confex.com/agu/fm17/meetingapp.cgi/Home/0 (Link to AGU 2017 Fall Meeting)

Conference

ConferenceThe American Geophysical Union
Abbreviated titleAGU
Country/TerritoryUnited States
CityNew Orleans
Period12/11/1712/15/17
Internet address

Keywords

  • Hydrology

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