Laboratory experiments to estimate interception of infrared radiation by tree canopies

Laboratory experiments to estimate interception of infrared radiation by tree canopies
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估算树冠对红外辐射拦截的实验室实验

DOI:
10.1071/wf16007
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发表时间:
2016
影响因子:
3.1
通讯作者:
R. Kremens
R. Kremens
中科院分区:
农林科学3区
文献类型:
--
作者:
Bill J. Mathews;E. Strand;A. Smith;A. Hudak;M. Dickinson;R. Kremens

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Estimates of biomass-burning in wildfires or prescribed fires are needed to account for the production of trace gases and aerosols that enter the atmosphere during combustion. Research has demonstrated that the biomass consumption rate is linearly related to fire radiative power (FRP), and that total biomass consumed is linearly related to fire radiative energy (FRE). Measurement of these is biased by certain characteristics of a forest canopy, such as foliar moisture content and tree canopy cover. Laboratory experiments were conducted to assess the influence of canopy cover on the FRP observed from an overhead sensor (e.g. an aircraft or satellite). A range of canopy cover from 0 to 90% and two classes of canopy (non-transpiring living and desiccated branches) were used in the experiments. Experiments suggest that in cases of complete or nearly complete canopy closure, fires obscured by the canopy may be below the detection threshold of above-canopy FRP sensors. Results from this research will reduce uncertainties in estimates of biomass consumption in surface fires burning under forest canopies.
DOI: 10.1093/biosci/biv182
发表时间: 2016-02-01
期刊: Bioscience
影响因子: 10.1
作者:
Smith AMS;Kolden CA;Paveglio TB;Cochrane MA;Bowman DM;Moritz MA;Kliskey AD;Alessa L;Hudak AT;Hoffman CM;Lutz JA;Queen LP;Goetz SJ;Higuera PE;Boschetti L;Flannigan M;Yedinak KM;Watts AC;Strand EK;van Wagtendonk JW;Anderson JW;Stocks BJ;Abatzoglou JT
通讯作者: Abatzoglou JT