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FluxEngine: A flexible processing system for calculating atmosphere-ocean carbon dioxide gas fluxes and climatologies

机译:FluxEngine:灵活的处理系统,用于计算大气 - 海洋二氧化碳气体通量和气候

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摘要

The air-sea flux of greenhouse gases (e.g. carbon dioxide, CO2) is a critical part of the climate system and a major factor in the biogeochemical development of the oceans. More accurate and higher resolution calculations of these gas fluxes are required if we are to fully understand and predict our future climate. Satellite Earth observation is able to provide large spatial scale datasets that can be used to study gas fluxes. However, the large storage requirements needed to host such data can restrict its use by the scientific community. Fortunately, the development of cloud-computing can provide a solution. Here we describe an open source air-sea CO2 flux processing toolbox called the ‘FluxEngine’, designed for use on a cloud-computing infrastructure. The toolbox allows users to easily generate global and regional air-sea CO2 flux data from model, in situ and Earth observation data, and its air-sea gas flux calculation is user configurable. Its current installation on the Nephalae cloud allows users to easily exploit more than 8 terabytes of climate-quality Earth observation data for the derivation of gas fluxes. The resultant NetCDF data output files contain >20 data layers containing the various stages of the flux calculation along with process indicator layers to aid interpretation of the data. This paper describes the toolbox design, the verification of the air-sea CO2 flux calculations, demonstrates the use of the tools for studying global and shelf-sea air-sea fluxes and describes future developments.
机译:温室气体(例如二氧化碳,CO2)的海-气通量是气候系统的关键组成部分,也是海洋生物地球化学发展的主要因素。如果我们要完全了解和预测我们的未来气候,则需要对这些气体通量进行更准确和更高分辨率的计算。卫星地球观测能够提供可用于研究气体通量的大型空间尺度数据集。但是,托管此类数据所需的大存储需求可能会限制科学界对其的使用。幸运的是,云计算的开发可以提供解决方案。在这里,我们描述了一个开放源代码的海气二氧化碳通量处理工具箱,称为“ FluxEngine”,旨在用于云计算基础架构。该工具箱使用户可以轻松地从模型,原位和地球观测数据中生成全球和区域性的海海CO2通量数据,并且用户可以配置其海海气体通量计算。它当前安装在Nephalae云上,使用户可以轻松利用8 TB以上的气候质量的地球观测数据来推导气体通量。最终的NetCDF数据输出文件包含> 20个数据层,其中包含助焊剂计算的各个阶段以及过程指示器层,以帮助解释数据。本文介绍了工具箱的设计,对海海CO2通量计算的验证,展示了用于研究全球和陆海海气通量的工具并描述了未来的发展。

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