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简单和复杂环境中辐射通量的建模——RayMan模型的应用。

Modelling radiation fluxes in simple and complex environments--application of the RayMan model.

作者信息

Matzarakis Andreas, Rutz Frank, Mayer Helmut

机构信息

Meteorological Institute, University of Freiburg, Freiburg, Germany.

出版信息

Int J Biometeorol. 2007 Mar;51(4):323-34. doi: 10.1007/s00484-006-0061-8. Epub 2006 Nov 9.

Abstract

The most important meteorological parameter affecting the human energy balance during sunny weather conditions is the mean radiant temperature T(mrt). It considers the uniform temperature of a surrounding surface giving off blackbody radiation, which results in the same energy gain of a human body given the prevailing radiation fluxes. This energy gain usually varies considerably in open space conditions. In this paper, the model 'RayMan', used for the calculation of short- and long-wave radiation fluxes on the human body, is presented. The model, which takes complex urban structures into account, is suitable for several applications in urban areas such as urban planning and street design. The final output of the model is, however, the calculated T(mrt), which is required in the human energy balance model, and thus also for the assessment of the urban bioclimate, with the use of thermal indices such as predicted mean vote (PMV), physiologically equivalent temperature (PET) and standard effective temperature (SET*). The model has been developed based on the German VDI-Guidelines 3789, Part II (environmental meteorology, interactions between atmosphere and surfaces; calculation of short- and long-wave radiation) and VDI-3787 (environmental meteorology, methods for the human-biometeorological evaluation of climate and air quality for urban and regional planning. Part I: climate). The validation of the results of the RayMan model agrees with similar results obtained from experimental studies.

摘要

在晴天条件下,影响人体能量平衡的最重要气象参数是平均辐射温度T(mrt)。它考虑了发出黑体辐射的周围表面的均匀温度,在给定的辐射通量下,这会导致人体获得相同的能量。在开阔空间条件下,这种能量获得通常有很大差异。本文介绍了用于计算人体短波和长波辐射通量的“RayMan”模型。该模型考虑了复杂的城市结构,适用于城市规划和街道设计等城市地区的多种应用。然而,该模型的最终输出是计算出的T(mrt),这是人体能量平衡模型所需要的,因此在使用预测平均投票(PMV)、生理等效温度(PET)和标准有效温度(SET*)等热指标评估城市生物气候时也是必需的。该模型是根据德国VDI指南3789第二部分(环境气象学,大气与表面之间的相互作用;短波和长波辐射的计算)和VDI-3787(环境气象学,城市和区域规划中气候和空气质量的人体生物气象评估方法。第一部分:气候)开发的。RayMan模型结果的验证与从实验研究中获得的类似结果一致。

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