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Daily global fire radiative power fields estimation from one or two MODIS instruments

机译:使用一台或两台MODIS仪器估算每日全球火灾辐射功率场

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pstrongAbstract./strong Fires are important emitters of aerosol and trace gases and as such need to be taken into account in any atmospheric composition modelling enterprise. One method to estimate these emissions is to convert fire radiative power (FRP) analysis into dry matter burnt and emissions of smoke constituents using land-cover-dependent conversion factors. Inventories like the Global Fire Assimilation System (GFAS) follow this approach by calculating daily global smoke emissions from FRP observed by the MODIS instruments onboard the Terra and Aqua satellites. Observations with different overpass times systematically sample fires at different stages in the strong diurnal fire cycle. For some time periods, observations are available from only one instrument, which leads to a bias in the observed average FRP. brbr We develop a method to correct this bias in daily FRP observations from any low Earth orbit (LEO) satellite, so that the budget of daily smoke emissions remains independent of the number of satellites from which FRP observations are taken into account. This ensures the possibility of running, for example, GFAS in case of failure of one of the MODIS instruments. It also enables the extension GFAS to 2000a??2002 and the inclusion of FRP observations from upcoming satellite missions. The correction combines linear and non-linear regressions and uses an adaptive regionalization algorithm. It decreases the bias in daily average FRP from Terra and Aqua by more than 95%, and RMSE by 75% for Aqua and 55% for Terra. The correction algorithm is applied to Terra observations from 25 February 2000 to 31 December 2002, when Aqua observations were not available. The database of fire emissions GFASv1.0 is extended correspondingly./p.
机译:> >摘要。火灾是气溶胶和微量气体的重要排放者,因此任何大气成分建模企业都必须考虑到火灾。估算这些排放的一种方法是使用依赖于土地覆盖的转换因子将火辐射功率(FRP)分析转换为燃烧的干物质和烟气成分的排放。诸如全球火灾同化系统(GFAS)之类的清单采用这种方法,通过计算Terra和Aqua卫星上的MODIS仪器观测到的FRP产生的全球日烟排放量。具有不同立交时间的观测结果会系统地对强昼火灾周期中不同阶段的火灾进行采样。在某些时间段内,只能通过一种仪器进行观察,这会导致观察到的平均FRP出现偏差。 我们开发了一种方法来纠正来自任何低地球轨道(LEO)卫星的每日FRP观测中的这种偏差,从而使每日烟尘排放的预算保持独立于将FRP观测纳入其中的卫星数量帐户。这样可确保在MODIS仪器之一发生故障时运行GFAS的可能性。它还使GFAS扩展到2000a ?? 2002,并包括了即将进行的卫星飞行任务中的FRP观测。该校正结合了线性和非线性回归,并使用了自适应区域化算法。它将Terra和Aqua的每日平均FRP偏差降低了95%以上,Aqua和Terra的RMSE降低了75%。校正算法适用于2000年2月25日至2002年12月31日期间的Terra观测,当时没有Aqua观测。相应地扩展了火灾排放数据库GFASv1.0。

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