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Methodology for spatial scaling in NPP under the influence of variable topography and vegetation

机译:可变地形和植被影响下核电厂空间定标方法

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Both surface topography and vegetation heterogeneity are important factors introducing biases in regional ecological modeling, especially when the modeling is made at large grids. Several studies have demonstrated that gridding the land surface into coarse homogeneous pixels may cause important biases on ecosystem model estimations of carbon budget components at local, regional and global scales. These biases result from overlooking sub-pixel variability of land surface characteristics. This study suggests a simple algorithm that uses sub-pixel information on the spatial variability of vegetation and surface topography to correct net primary productivity (NPP) estimates, made at coarse spatial resolutions where the land surface is considered as homogeneous within each pixel. A spatial scaling algorithm is developed to correct biases in coarse-resolution NPP estimation. This algorithm considers the effect of sub-pixel heterogeneities of land cover, leaf area index (LAI), slope and elevation. Its application to a carbon-hydrology coupled model estimates made at a 1-km resolution over a watershed (named Baohe River Basin) located in the southwestern part of Qinling Mountains, in China, Shaanxi Province, China, improved estimates of average NPP as well as its temporal and spatial variability.
机译:表面形貌和植被异质性都是引入区域生态建模中偏差的重要因素,特别是当在大网格制作时。几项研究表明,将陆地表面与粗均匀像素网格网格集成可能对当地,区域和全球尺度的碳预算成分的生态系统模型估算产生重要偏见。这些偏置是由于覆盖了陆地表面特征的子像素变异性。本研究表明,一种简单的算法,其使用关于植被和表面形貌的空间可变性来校正净初级生产率(NPP)估计的简单算法,以粗略的空间分辨率制成,其中陆地表面被认为是在每个像素内均匀的均匀性。开发了一种空间缩放算法以在粗辨率NPP估计中校正偏差。该算法考虑了陆地覆盖,叶面积指数(LAI),坡度和高度的子像素异质性的影响。它在碳水化学耦合模型估算中,由位于中国陕西省陕西山脉西南部的流域(名为Baohe River Bourin)的分辨率为1公里的分辨率,也改善了平均NPP的估计作为其时空和空间变异性。

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