首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >SOLWEIG 1.0 - Modelling spatial variations of 3D radiant fluxes and mean radiant temperature in complex urban settings.
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SOLWEIG 1.0 - Modelling spatial variations of 3D radiant fluxes and mean radiant temperature in complex urban settings.

机译:SOLWEIG 1.0-在复杂的城市环境中模拟3D辐射通量和平均辐射温度的空间变化。

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摘要

The mean radiant temperature, T(mrt), which sums up all shortwave and longwave radiation fluxes (both direct and reflected) to which the human body is exposed is one of the key meteorological parameters governing human energy balance and the thermal comfort of man. In this paper, a new radiation model (SOLWEIG 1.0), which simulates spatial variations of 3D radiation fluxes and T(mrt) in complex urban settings, is presented. The T(mrt) is derived by modelling shortwave and longwave radiation fluxes in six directions (upward, downward and from the four cardinal points) and angular factors. The model requires a limited number of inputs, such as direct, diffuse and global shortwave radiation, air temperature, relative humidity, urban geometry and geographical information (latitude, longitude and elevation). The model was evaluated using 7 days of integral radiation measurements at two sites with different building geometries - a large square and a small courtyard in Goteborg, Sweden (57 degrees N) - across different seasons and in various weather conditions. The evaluation reveals good agreement between modelled and measured values of T(mrt), with an overall good correspondence of R (2) = 0.94, (p < 0.01, RMSE = 4.8 K). SOLWEIG 1.0 is still under development. Future work will incorporate a vegetation scheme, as well as an improvement of the estimation of fluxes from the four cardinal points.
机译:平均辐射温度T(mrt)总结了人体所暴露的所有短波和长波辐射通量(直射和反射),是控制人体能量平衡和人体热舒适性的关键气象参数之一。本文提出了一种新的辐射模型(SOLWEIG 1.0),该模型可模拟复杂城市环境中3D辐射通量和T(mrt)的空间变化。 T(mrt)是通过对六个方向(向上,向下以及从四个基点)和角度因子的短波和长波辐射通量建模而得出的。该模型需要有限的输入,例如直接,漫射和全局短波辐射,气温,相对湿度,城市几何形状和地理信息(纬度,经度和海拔)。在两个具有不同建筑几何形状的地点-瑞典哥德堡(北纬57度)的一个大广场和一个小庭院-在不同季节和不同天气条件下使用7天的积分辐射测量对该模型进行了评估。评估表明,T(mrt)的模型值与测量值之间具有良好的一致性,R(2)= 0.94(p <0.01,RMSE = 4.8 K)。 SOLWEIG 1.0仍在开发中。未来的工作将包括植被方案,以及从四个基本点对通量估算的改进。

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