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Seasonal changes of azimuthal,radial, and tree-to-tree variations in sap flux affect stand transpiration estimates in a <Emphasis Type="Italic">Cryptomeria japonica</Emphasis> forest,central Taiwan
Authors:Chen-Wei Chiu  Tomonori Kume  Hikaru Komatsu  Han Tseng  Tsong-Huei Wey  Kyoichi Otsuki
Institution:1.Kasuya Research Forest,Kyushu University,Sasaguri,Japan;2.School of Forestry and Resource Conservation,National Taiwan University,Taipei,Taiwan;3.The Hakubi Center for Advanced Research,Kyoto University,Kyoto,Japan;4.Department of Geography,University of Hawai’i at Mānoa,Honolulu,USA;5.Lu Chen Cultural and Educational Foundation,Zhushan Township,Taiwan
Abstract:Stand transpiration (E) estimated using the sap flux methods is affected by the azimuthal, radial, and tree-to-tree variations of sap flux. Although several studies have examined the relative importance of the three variations in estimating E, the seasonality of the three variations remains unknown. In the current study, we attempted to clarify whether the relative importance of these three variations could show seasonal changes. Using sap flux data measured in a subtropical cloud forest from August 2010 to July 2011, we calculated the differences resulting from omitting the three variations in estimating E. The effects of the three variations in estimating E showed seasonality. The azimuthal and tree-to-tree variations were more pronounced during winter, whereas the radial variation was more pronounced during summer. However, the effect of tree-to-tree variation was consistently much larger than the other two variations throughout the study period. The tree-to-tree variation is more important in estimating E monthly, seasonally and annually than both the azimuthal and radial variations, although all three variations have shown seasonality. In addition, the sensor allocation for summer would be acceptable for the practical estimation of E if aiming at the long time scale.
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