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首页> 外文期刊>International Journal of Biometeorology >Modelling radiation fluxes in simple and complex environments: basics of the RayMan model
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Modelling radiation fluxes in simple and complex environments: basics of the RayMan model

机译:在简单和复杂环境中建模辐射通量:RayMan模型的基础

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摘要

Short- and long-wave radiation flux densities absorbed by people have a significant influence on their energy balance. The heat effect of the absorbed radiation flux densities is parameterised by the mean radiant temperature. This paper presents the physical basis of the RayMan model, which simulates the short- and long-wave radiation flux densities from the three-dimensional surroundings in simple and complex environments. RayMan has the character of a freely available radiation and human-bioclimate model. The aim of the RayMan model is to calculate radiation flux densities, sunshine duration, shadow spaces and thermo-physiologically relevant assessment indices using only a limited number of meteorological and other input data. A comparison between measured and simulated values for global radiation and mean radiant temperature shows that the simulated data closely resemble measured data.
机译:人们吸收的短波和长波辐射通量密度对其能量平衡有重要影响。吸收辐射通量密度的热效应通过平均辐射温度进行参数化。本文介绍了RayMan模型的物理基础,该模型在简单和复杂的环境中模拟了三维环境中的短波和长波辐射通量密度。 RayMan具有免费提供的辐射和人类生物气候模型的特征。 RayMan模型的目的是仅使用有限数量的气象和其他输入数据来计算辐射通量密度,日照持续时间,阴影空间和热生理相关评估指数。对全球辐射的测量值和模拟值与平均辐射温度之间的比较表明,模拟数据与测量数据非常相似。

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