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Evaluation of satellite based primary production modelling in the semi-arid Sahel

机译:半干旱萨赫勒地区基于卫星的初级生产建模评估

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The MODIS (Moderate Resolution Imaging Spectroradiometer) primary productivity products are evaluated against observed Above-ground Net Primary Production (AGNPP) in the semi-arid Senegal 2001. MODIS net primary productivity (NPP) modelling is a light use efficiency (LUE) based approach incorporating constraints on vegetation productivity arising from simulated radiation, water demand and temperature data from NASA's Data Assimilation Office (DAO). Annually integrated MODIS PSN (MOD17A2 net photosynthesis, Collection 4) explains more of the observed biomass variation (r(2) = 0.77) than MODIS fAPAR (fraction Absorbed Photosynthetically Active Radiation, Collection 4) (r(2) = 0.72), indicating the effect of including the canopy stress scalar (epsilon(s)) based on DAO data combined with modelled maintenance respiration costs (of leaf and fine roots). Annual MODIS NPP (MOD17A3, Collection 4 (C4) and Collection 4.5 (C4.5)) including growth respiration and live wood maintenance respiration costs and 2 modified DAO input (C4.5) however increases the residual unexplained observed AGNPP variance (C4 NPP; r(2) = 0.49) (C4.5 NPP; r(2) = 0.37). The overall quality of the annual NPP MODIS C4 and C4.5 products are moderate for the semi-arid Senegal because of the annual respiration cost modelling and a change in C4.5 biome-specific parameters stored in a Biome Properties Look-Up Table (BPLUT) is the main contributor to the observed discrepancy between C4 and C4.5 NPP. The dynamic range of the values of all MOD 17 products was too low when compared to observed AGNPP. An estimate of canopy water stress (SIWSI; Shortwave Infrared Water Stress Index) derived from MODIS channels 2 and 6 and photosynthetically active radiation (PAR) irradiance derived from geostationary METEOSAT data were tested for primary production modelling using a stepwise linear regression analysis. PAR irradiance was combined with MODIS fAPAR into APAR (Absorbed Photosynthetically Active Radiation) explaining 79% of the observed AGNPP variation. Introducing SIWSI significantly increased the explained variance of observed AGNPP (r(2)=0.89). MODIS-derived percentage tree cover was tested as a predictor based on the hypothesis that tree cover provides information on differences in respiratory costs between trees and grasses thereby accounting for variations in the LUE conversion efficiency epsilon. No significant reduction in residual unexplained AGNPP variance was found. Earth observation based derivation of PAR and canopy water stress from SIWSI suggest potential improvements to primary production models in semi-arid biomes that can be implemented in general NPP modelling LUE methodology. (c) 2006 Elsevier Inc. All rights reserved.
机译:针对半干旱塞内加尔2001年观测到的地上净初级生产力(AGNPP),对MODIS(中等分辨率成像光谱仪)的初级生产力产品进行了评估。MODIS净初级生产力(NPP)建模是基于光利用效率(LUE)的方法纳入了来自NASA数据同化办公室(DAO)的模拟辐射,需水量和温度数据对植被生产力的限制。年度集成的MODIS PSN(MOD17A2净光合作用,集合4)比MODIS fAPAR(吸收的光合有效辐射的分数,集合4)(r(2)= 0.72)解释了更多的观察到的生物量变化(r(2)= 0.77)。基于DAO数据结合建模的维护性呼吸成本(叶和细根)包括树冠应力标量(ε)的效果。年度MODIS NPP(MOD17A3,集合4(C4)和集合4.5(C4.5)),包括生长呼吸和活木维护呼吸成本以及2个修改的DAO输入(C4.5),但是增加了无法解释的残余观测AGNPP方差(C4 NPP) ; r(2)= 0.49)(C4.5 NPP; r(2)= 0.37)。对于半干旱的塞内加尔,年度NPP MODIS C4和C4.5产品的整体质量中等,这是因为年度呼吸成本模型以及存储在生物群落特性查询表中的C4.5生物群落特定参数的变化( BPLUT)是导致C4和C4.5 NPP之间差异的主要原因。与观察到的AGNPP相比,所有MOD 17产品值的动态范围都太低。使用逐步线性回归分析测试了从MODIS通道2和6得出的冠层水分胁迫的估计值(SIWSI;短波红外水分胁迫指数)以及从对地静止METEOSAT数据得到的光合有效辐射(PAR)辐照度,用于主要生产模型。 PAR辐照度与MODIS fAPAR组合成APAR(吸收的光合有效辐射),解释了所观察到的AGNPP变化的79%。引入SIWSI显着增加了所观察到的AGNPP的解释方差(r(2)= 0.89)。基于以下假设的假设,对MODIS得出的树木覆盖率百分比进行了测试,即树木覆盖率提供了树木和草之间呼吸成本差异的信息,从而说明了LUE转换效率ε的变化。未发现残留的无法解释的AGNPP方差的显着降低。基于地球观测的SIWSI对PAR和冠层水分胁迫的推导表明,对半干旱生物群落初级生产模型的潜在改进可以在一般NPP建模LUE方法学中实现。 (c)2006 Elsevier Inc.保留所有权利。

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