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Synthesis of global actual evapotranspiration from 1982 to 2019

机译:1982年至2019年的全球实际蒸散量综合

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As a linkage among water, energy, and carbon cycles, global actual evapotranspiration (ET) plays an essential role in agriculture, water resource management, and climate change. Although it is difficult to estimate ET over a large scale and for a long time, there are several global ET datasets available with uncertainty associated with various assumptions regarding their algorithms, parameters, and inputs. In this study, we propose a long-term synthesized ET product at a kilometer spatial resolution and monthly temporal resolution from 1982 to 2019. Through a site-pixel evaluation of 12 global ET products over different time periods, land surface types, and conditions, the high-performing products were selected for the synthesis of the new dataset using a high-quality flux eddy covariance (EC) covering the entire globe. According to the study results, Penman–Monteith–Leuning (PML), the operational Simplified Surface Energy Balance (SSEBop), the Moderate Resolution Imaging Spectroradiometer (MODIS, MOD16A2105), and the Numerical Terradynamic Simulation Group (NTSG) ET products were chosen to create the synthesized ET set. The proposed product agreed well with flux EC ET over most of the all comparison levels, with a maximum relative mean error (RME) of 13.94 mm (17.13 %) and a maximum relative root mean square error (RRMSE) of 38.61 mm (47.45 %). Furthermore, the product performed better than local ET products over China, the United States, and the African continent and presented an ET estimation across all land cover classes. While no product can perform best in all cases, the proposed ET can be used without looking at other datasets and performing further assessments. Data are available on the Harvard Dataverse public repository through the following Digital Object Identifier (DOI): https://doi.org/10.7910/DVN/ZGOUED (Elnashar et al., 2020), as well as on the Google Earth Engine (GEE) application through this link: https://elnashar.users.earthengine.app/view/synthesizedet (last access: 21 January 2021).
机译:作为水,能源和碳循环之间的联系,全球实际蒸散(ET)在农业,水资源管理和气候变化中起着重要作用。虽然很难在大规模和长时间估计ET,但是有几种全局ET数据集可用,该数据集可用于关于其算法,参数和输入的各种假设相关的不确定性。在这项研究中,我们提出了一公里的空间分辨率和每月时间分辨率的长期合成的ET产品,从1982年到2019年。通过在不同时间段,土地表面类型和条件下的12个Global ET产品的场地映射评估,选择高性能产品,用于使用覆盖整个地球仪的高质量助焊剂涡流协方差(EC)来合成新数据集。根据研究结果,选择操作简化的表面能量平衡(SSEBOP),中等分辨率成像光谱辐射器(MODIS,MOD16A2105)和数值矫正模拟组(NTSG)ET产品的操作简化表面能量平衡(SSEBOP)。创建合成的ET。所提出的产品与所有比较水平的助熔剂EC等相同,最大相对平均误差(RME)为13.94毫米(17.13%)和38.61毫米的最大相对根均方误差(RRMSE)(47.45% )。此外,产品比中国,美国和非洲大陆的当地ET产品更好,并介绍了所有陆地覆盖课程的ET估计。虽然在所有情况下没有产品最佳时,但可以使用该提议的ET而不查看其他数据集并进行进一步的评估。通过以下数字对象标识符(DOI):https://doi.org/10.7910/dvn/zgoued(elnashar等,2020),以及谷歌地球发动机(通过此链接应用程序:https://elnashar.users.earthengine.app/view/synthesizedet(上次访问:2021年1月21日)。

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