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A digital mapping application for quantifying and displaying air temperatures at high spatiotemporal resolutions in near real-time across Australia

机译:用于在澳大利亚近实时的高时间分辨率定量和显示空气温度的数字测绘应用

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摘要

Surface air temperature (Ta) required for real-time environmental modelling applications should be spatially quantified to capture the nuances of local-scale climates. This study created near real-time air temperature maps at a high spatial resolution across Australia. This mapping is achieved using the thin plate spline interpolation in concert with a digital elevation model and ‘live’ recordings garnered from 534 telemetered Australian Bureau of Meteorology automatic weather station (AWS) sites. The interpolation was assessed using cross-validation analysis in a 1-year period using 30-min interval observation. This was then applied to a fully automated mapping system—based in the R programming language—to produce near real-time maps at sub-hourly intervals. The cross-validation analysis revealed broad similarities across the seasons with mean-absolute error ranging from 1.2 °C (autumn and summer) to 1.3 °C (winter and spring), and corresponding root-mean-square error in the range 1.6 °C to 1.7 °C. The R2 and concordance correlation coefficient (Pc ) values were also above 0.8 in each season indicating predictions were strongly correlated to the validation data. On an hourly basis, errors tended to be highest during the late afternoons in spring and summer from 3 pm to 6 pm, particularly for the coastal areas of Western Australia. The mapping system was trialled over a 21-day period from 1 June 2020 to 21 June 2020 with majority of maps completed within 28-min of AWS site observations being recorded. All outputs were displayed in a web mapping application to exemplify a real-time application of the outputs. This study found that the methods employed would be highly suited for similar applications requiring real-time processing and delivery of climate data at high spatiotemporal resolutions across a considerably large land mass.
机译:实时环境建模应用所需的表面空气温度(TA)应在空间上量化以捕获本地级气候的细微差别。这项研究在澳大利亚的高空间分辨率下在实时空气温度图附近创建。这种映射是使用薄板样条插值,与数字高度模型和“实时”录音从534遥测澳大利亚气象局(AWS)站点获得。使用30分钟间隔观察的1年期间,使用交叉验证分析评估插值。然后将其应用于基于R编程语言的完全自动映射系统 - 以在子时间隔的实时地图上产生。交叉验证分析显示出季节的广泛相似性,平均值为1.2°C(秋季和夏季)至1.3°C(冬季和弹簧),以及1.6°C范围内的对应的根均方误差1.7°C。每个季节的R2和一致性相关系数(PC)值也高于0.8,指示预测与验证数据强烈相关。每小时,在春季和下午6点到下午3点到下午6点,春季和夏季晚些时候的下午往往是最高的,特别是对于西澳大利亚州沿海地区,往往是最高的。映射系统在2020年6月1日至20日6月21日的21天内进行了试验,其中大多数地图在AWS现场观察的28分钟内完成。所有输出都显示在Web映射应用程序中,以举例说明输出的实时应用。本研究发现,所采用的方法非常适用于需要在大大大地质量的高时间分辨率下实时处理和递送气候数据的类似应用。

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  • 作者

    Mathew Webb; Budiman Minasny;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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