TY - JOUR
T1 - Influences of diurnal rainfall cycle on CO 2 exchange over Bornean tropical rainforests
AU - Kumagai, Tomo'omi
AU - Kume, Tomonori
N1 - Funding Information:
We are grateful to the Forestry Department, Sarawak, for their support during this study. We also thank Tohru Nakashizuka, Masakazu Suzuki and Tetsukazu Yahara for their support and numerous colleagues who helped us with this work. This work was funded by Core Research for Evolutional Science and Technology (CREST) of the Japan Science and Technology Agency (JST), the Global COE (Centers of Excellence) Program (GCOE) of the Japan Society for the Promotion of Science (JSPS), grants from the Ministry of Education, Science and Culture, Japan ( #20248016 , #21255001 , #23255002 , and #23405028 ).
PY - 2012/11/24
Y1 - 2012/11/24
N2 - In the Southeast Asian tropics, distinct peaks of the diurnal precipitation cycle at specific times of the day are among the dominant features of environmental factors. Although the characteristics of rainfall timing during the day are anticipated to affect the ecosystem CO 2 flux (N E), no attempt has been made to quantify the impact. To address this issue, the potential alteration of N E corresponding to a change in the diurnal rainfall regime was investigated using a combination of detailed field measurements conducted at an eddy flux observation site, computation with a multilayer soil-vegetation-atmosphere transfer model, and rainfall time series constructed from rainfall statistics of observation-site data and published data of long-term diurnal precipitation cycles over Borneo. The results showed that there was little difference in the mean diurnal N E pattern between " wet" and " dry" days (days with and without rainfall, respectively) and the diurnal rainfall regime little affected N E on a whole-year scale. Similar N E values for wet and dry days might be attributed to (1) a minor contribution of lower N E during rainfall events to total N E in wet conditions, because of constant cloud cover on both wet and dry days and (2) the light saturation of N E at relatively low incident radiative energy (≈500Wm -2 of solar radiation) in this forest ecosystem.
AB - In the Southeast Asian tropics, distinct peaks of the diurnal precipitation cycle at specific times of the day are among the dominant features of environmental factors. Although the characteristics of rainfall timing during the day are anticipated to affect the ecosystem CO 2 flux (N E), no attempt has been made to quantify the impact. To address this issue, the potential alteration of N E corresponding to a change in the diurnal rainfall regime was investigated using a combination of detailed field measurements conducted at an eddy flux observation site, computation with a multilayer soil-vegetation-atmosphere transfer model, and rainfall time series constructed from rainfall statistics of observation-site data and published data of long-term diurnal precipitation cycles over Borneo. The results showed that there was little difference in the mean diurnal N E pattern between " wet" and " dry" days (days with and without rainfall, respectively) and the diurnal rainfall regime little affected N E on a whole-year scale. Similar N E values for wet and dry days might be attributed to (1) a minor contribution of lower N E during rainfall events to total N E in wet conditions, because of constant cloud cover on both wet and dry days and (2) the light saturation of N E at relatively low incident radiative energy (≈500Wm -2 of solar radiation) in this forest ecosystem.
UR - https://www.scopus.com/pages/publications/84864921457
UR - https://www.scopus.com/pages/publications/84864921457#tab=citedBy
U2 - 10.1016/j.ecolmodel.2012.07.014
DO - 10.1016/j.ecolmodel.2012.07.014
M3 - Article
AN - SCOPUS:84864921457
SN - 0304-3800
VL - 246
SP - 91
EP - 98
JO - Ecological Modelling
JF - Ecological Modelling
IS - C
ER -