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Spatial variation in sap flow velocity in semiarid region trees: its impact on stand‐scale transpiration estimates
Authors:Tomonori Kume  Kyoichi Otsuki  Sheng Du  Norikazu Yamanaka  Yi‐Long Wang  Guo‐Bin Liu
Institution:1. Kasuya Research Forest, Kyushu University, Sasaguri, Fukuoka 811‐2415, Japan;2. State Key Laboratory of Soil Erosion and Dryland Farming on Loess Plateau, Institute of Soil and Water Conservation, Chinese Academy of Sciences, Yangling, Shaanxi 712100, China;3. Arid Land Research Center, Tottori University, Hamasaka, Tottori 680‐0001, Japan
Abstract:In this study, we aimed to clarify spatial variations in xylem sap flow, and to determine the impacts of these variations on stand‐scale transpiration (E) estimates. We examined circumferential and radial variations in sap flow velocity (Fd) measured at several directions and depths in tree trunks of black locust (Robinia pseudoacacia) and native oak (Quercus liaotungensis), both of which have ring‐porous wood anatomy, in forest stands on the Loess Plateau, China. We evaluated the impacts of circumferential variations in Fd on stand‐scale transpiration estimates using a simple scaling exercise. We found significant circumferential variations in Fd in the outermost xylem in both species (coefficients of variation = 20–45%). For both species, Fd measured at the inner xylem was smaller than that of the outermost xylem and the Fd at the depth of > 10 mm was almost zero. The simple exercises showed that omitting circumferential variations in Fd affected the E estimate by 16–21%, which was less than the effects of omitting within‐tree radial and tree‐to‐tree variations in Fd in both species. These results suggest that circumferential variations in Fd can be a minor source of error for E estimates compared with within‐tree radial and tree‐to‐tree variations in Fd, regardless of the significant circumferential variations. Copyright © 2011 John Wiley & Sons, Ltd.
Keywords:heat pulse velocity  azimuthal and radial variation  ring‐porous wood  transpiration
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