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QUANTITIVE STUDY ON VISIBILITY EFFECT IN ROAD TUNNELS

机译:公路隧道可见性影响的定量研究

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The term “visibility” is generally used synonymously with “visual range”, meaning the farthest distance at which an object can be clearly discerned. Meteorological visibility refers to transparency of air: in dark, meteorological visibility is still the same as in daylight for the same air. It can be reduced by the absorption and scattering of light by both gases and particles. With more and more serious air polluted globally, visibility has been attached more attention as the most straightforward measure of visual air quality, some countries and area use “visibility” as an indicator of atmosphere pollution. Visibility is a driving force in normal operation in road tunnels, however, theoretical research on tunnel visibility is scarce. Based on law of Beer-Lambert, the correlation between visibility in tunnels and extinction coefficient is clarified firstly. Accordingly to Mie theory, light absorption and scattering from gaseous and particle matters are analyzed, and atmospheric extinction coefficient linear equation is presented logically. In view of emission characters in road tunnels, road tunnel extinction coefficient equation is derived finally. This equation can be used as ventilation calculation as well as analysis factors sensitivity of fine mass, coarse mass and NO2 in road tunnels, and also provides foundation for the management of ventilation operation in tunnels.
机译:术语“可见性”通常与“可视范围”同义使用,意思是可以清楚地区分物体的最远距离。气象能见度是指空气的透明度:在黑暗中,同一空气的气象能见度仍与白天相同。它可以通过气体和颗粒对光的吸收和散射来减少。随着全球范围内越来越严重的空气污染,能见度已成为视觉空气质量最直接的衡量标准,一些国家和地区将“可见度”用作大气污染的指标。可见性是公路隧道正常运行的驱动力,但是,关于隧道可见性的理论研究很少。根据比尔-朗伯定律,首先阐明了隧道能见度与消光系数之间的关系。根据米氏理论,分析了气体和颗粒物的光吸收和散射,逻辑上给出了大气消光系数线性方程。针对公路隧道的排放特征,最后推导了公路隧道的消光系数方程。该方程可作为通风计算以及分析公路隧道中细颗粒,粗颗粒和NO2的敏感性因素,也为隧道通风操作的管理提供基础。

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