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Advancing the application of a model-independent open-source geospatial tool for national-scale spatiotemporal simulations

机译:推进模型独立的开源地理空间工具在国家级的时空模拟中的应用

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摘要

Growing demands for geospatial application of environmental models have led to tool development for conducting simulations spatially. The model-independent, open-source tool "Geospatial Simulation" (GeoSim) has been developed previously. Based on previous applications at field scale, this study advances GeoSim application for national-scale and multi-year simulations. The widely-applied AquaCrop model was implemented by GeoSim to simulate wheat yield and irrigation requirements on a daily step across China from 2000 to 2009. The spatial inputs required by AquaCrop were minimized and 6915 unique response units were identified among the primary 116,801 polygons. It took around 20 h to perform the 10-year simulations. Post-processing of simulation outputs permitted mapping at the original 5 arc-minute resolution. The novel methods developed in this study demonstrate new opportunities for efficiently managing national-scale and multi-year simulations with high resolution. They render AquaCrop more suitable for studies on the water-food nexus at large scales, which are more policy-relevant.
机译:对环境模型的地理空间应用的需求不断增长导致在空间上进行模拟的工具开发。先前已经开发了独立于模型的开源工具“地理空间仿真”(Geosim)。基于以前的现场规模的应用,本研究进展了地质应用的国家规模和多年模拟。广泛应用的Aquacrop模型是由Geosim实施的,以模拟2000年至2009年对中国日常步骤的小麦产量和灌溉要求。Aquacrop要求的空间输入最小化,主要的116,801多边形中的6915个独特的响应单位。花了大约20小时来执行10年的模拟。仿真输出的后处理允许在原始的5个弧形分钟分辨率下映射。本研究开发的新型方法表明了高分辨率高效管理国家规模和多年模拟的新机遇。它们使Aquacrop更适合于大规模的水食Nexus研究,这是更具政策相关的。

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