Evapotranspiration from the understory of a tropical dry deciduous forest in Cambodia

被引:17
|
作者
Iida, Shin'ichi [1 ]
Shimizu, Takanori [1 ]
Tamai, Koji [1 ]
Kabeya, Naoki [2 ]
Shimizu, Akira [2 ]
Ito, Eriko [3 ]
Ohnuki, Yasuhiro [4 ]
Chann, Sophal [5 ]
Levia, Delphis F. [6 ,7 ]
机构
[1] Forestry & Forest Prod Res Inst, Tsukuba, Ibaraki, Japan
[2] Forestry & Forest Prod Res Inst, Kyushu Res Ctr, Kumamoto, Kumamoto, Japan
[3] Forestry & Forest Prod Res Inst, Hokkaido Res Ctr, Sapporo, Hokkaido, Japan
[4] Forestry & Forest Prod Res Inst, Tohoku Res Ctr, Morioka, Iwate, Japan
[5] Forestry Adm, Inst Forest & Wildlife Res & Dev, Phnom Penh, Cambodia
[6] Univ Delaware, Dept Geog & Spatial Sci, Newark, DE USA
[7] Univ Delaware, Dept Plant & Soil Sci, Newark, DE 19717 USA
关键词
Tropical dry deciduous forest; Understory vegetation; Evapotranspiration; Leaf area index; Sap flux density; SAP-FLOW; EDDY COVARIANCE; WATER-VAPOR; THERMAL DISSIPATION; FLUX-DENSITY; RAIN GAUGES; PINE FOREST; TRANSPIRATION; EVAPORATION; COMPONENTS;
D O I
10.1016/j.agrformet.2020.108170
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
The water balance of tropical dry deciduous forests is less well understood than some other forest ecosystems. To help close this knowledge gap, we separately measured the evapotranspiration from the whole ecosystem (ETw), transpiration (TR) and interception loss (IL) from overstory trees, and evapotranspiration from the understory vegetation (ETU) in a tropical dry deciduous forest in Cambodia. It was found that ETw was equivalent to 73.7% of rainfall (P) at the annual scale. In the dry season, ET(w )corresponded to 120.1% of P, which indicates the utilization of soil water replenished during the wet season. The sum of transpiration estimated by the thermal dissipation (TD) method with the original coefficient (TRG), IL, and ETU was smaller than ETw, except for the middle of the dry season, due to an underestimation of TRG. Although recently reported calibration coefficients can reasonably correct TRG, future calibrations of the TD method are highly recommended for the precise evaluation of single-tree-scale transpiration in tropical dry forests. The annual contribution of the understory vegetation to ETw (ETU/ETw) was 34.6%, leading to the conclusion that the understory vegetation cannot be ignored when trying to gain a comprehensive understanding of the hydrologic cycle in tropical dry forests. The seasonal variations in ETU/ETw were mainly controlled by the leaf area index (LAI) of overstory trees, resulting from the overall stability of ETw and decreasing trend of ETU with increasing LAI in the wet season, with the opposite holding true in the dry season, i.e., decreasing ET w with the decline of LAI and less variations of ETU. Thus, LAI influenced both the seasonality and the annual contribution in ETU/ETw, exerting a notable influence on hydrological cycling in this forest.
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页数:12
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