Fog and Hazy Simulation for outside Lighting Study

Author:

Han Shuai1,Cao Jia Mei1,Ding Yi Feng1,Li Wei1

Affiliation:

1. State Grid Beijing Electric Power Research Institute

Abstract

With the high humidity caused by the urban microclimate, the visibility is greatly reduced due to the fog weather as well as the hazy weather formed by the accumulation of pollutant and vapor. In order to evaluate how the fog and haze weather affects outside lighting, a hazy simulation environment is introduced in this paper. An ultrasonic humidifier is used to produce droplets for fog simulation. Haze is simulated by using air blower to blow plant ashes. Transmittance of several different light sources under the simulated fog and haze conditions is shown. The results can be used to study outside lighting.

Publisher

Trans Tech Publications, Ltd.

Reference6 articles.

1. Ding J., Liu L.: An analysis on characteristics of particulate pollutants and the process of absorbing gaseous pollutants in hazy weather. Shanghai environmental sciences, 28-1 (2009), pp.11-14.

2. Huang S., Li Z., Yang J.: Light absorbing properties of aerosols in the atmospheric bourdary layer over china. Plateau meteorology, 19-4 (2000), pp.487-494.

3. Yang X., Luo J., Wang J. et al: Measurement of the absorption coefficient of light by aerosol particles in atmosphere. High power laser and particle beams, 15-6(2003), pp.543-546.

4. Li X., Hu S., Xu Q. et al: Characteristics measurement of extinction and refractive index of aerosol particles. High power laser and particle beams, 19-2(2007), pp.207-210.

5. Li X., Li W., Zhou X.: Analysis of the solar radiation variation of china in recent 30 years. Quarterly journal of applied meteorology, 9-1(1998), pp.25-31.

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