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全球尺度数值天气预报模型的平均辐射温度。

Mean radiant temperature from global-scale numerical weather prediction models.

机构信息

European Centre for Medium-Range Weather Forecasts, Reading, UK.

University of Reading, Reading, UK.

出版信息

Int J Biometeorol. 2020 Jul;64(7):1233-1245. doi: 10.1007/s00484-020-01900-5. Epub 2020 Apr 9.

Abstract

In human biometeorology, the estimation of mean radiant temperature (MRT) is generally considered challenging. This work presents a general framework to compute the MRT at the global scale for a human subject placed in an outdoor environment and irradiated by solar and thermal radiation both directly and diffusely. The proposed framework requires as input radiation fluxes computed by numerical weather prediction (NWP) models and generates as output gridded globe-wide maps of MRT. It also considers changes in the Sun's position affecting radiation components when these are stored by NWP models as an accumulated-over-time quantity. The applicability of the framework was demonstrated using NWP reanalysis radiation data from the European Centre for Medium-Range Weather Forecasts. Mapped distributions of MRT were correspondingly computed at the global scale. Comparison against measurements from radiation monitoring stations showed a good agreement with NWP-based MRT (coefficient of determination greater than 0.88; average bias equal to 0.42 °C) suggesting its potential as a proxy for observations in application studies.

摘要

在人体生物气象学中,平均辐射温度(MRT)的估计通常被认为具有挑战性。这项工作提出了一种计算全球尺度人体模型在室外环境中直接和漫射太阳辐射和热辐射下平均辐射温度的通用框架。该框架需要输入由数值天气预报(NWP)模型计算的辐射通量,并生成全球范围的 MRT 网格化地图作为输出。它还考虑了太阳位置的变化,当这些变化作为时间累积量存储在 NWP 模型中时,会影响辐射分量。该框架的适用性使用欧洲中期天气预报中心的 NWP 再分析辐射数据进行了演示。相应地在全球范围内计算了 MRT 的映射分布。与辐射监测站的测量值进行比较表明,与基于 NWP 的 MRT 具有很好的一致性(决定系数大于 0.88;平均偏差等于 0.42°C),这表明它在应用研究中作为观测值的替代具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b06/7295834/b2a4a014de5a/484_2020_1900_Fig1_HTML.jpg

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