Sun Xianming
Shandong University of Technology
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Sun Xianming.
Chinese Physics B | 2009
Sun Xianming; Wang Haihua; Liu Wan-Qiang; Shen Jin
This paper calculates light scattering by a spherical water particle containing densely packed inclusions at a visible wavelength 0.55 μm by a combination of ray-tracing and Monte Carlo techniques. While the individual reflection and refraction events at the outer boundary of a sphere particle are considered by a ray-tracing program, the Monte Carlo routine simulates internal scattering processes. The main advantage of this method is that the shape of the particle can be arbitrary, and multiple scattering can be considered in the internal scattering processes. A dense-medium light-scattering theory based on the introduction of the static structure factor is used to calculate the phase function and asymmetry parameters for densely packed inclusions. Numerical results of the single scattering characteristics for a sphere containing multiple densely packed inclusions are given.
Chinese Physics B | 2012
Wang Haihua; Sun Xianming
The mixture of water cloud droplets with black carbon impurities is modeled by external and internal mixing models. The internal mixing model is modeled with a two-layered sphere (water cloud droplets containing black carbon (BC) inclusions), and the single scattering and absorption characteristics are calculated at the visible wavelength of 0.55 m by using the Lorenz–Mie theory. The external mixing model is developed assuming that the same amount of BC particles are mixed with the water droplets externally. The multiple scattering characteristics are computed by using the Monte Carlo method. The results show that when the size of the BC aerosol is small, the reflection intensity of the internal mixing model is bigger than that of the external mixing model. However, if the size of the BC aerosol is big, the absorption of the internal mixing model will be larger than that of the external mixing model.
Archive | 2013
Ma Lixiu; Shen Jin; Tan Boxue; Wang Yajing; Sun Xianming; Sun Xia; Chen Wengang; Jiang Jing
Archive | 2014
Ma Lixiu; Sun Xia; Shen Jin; Tan Boxue; Wang Yajing; Sun Xianming; Jiang Jing; Chen Wengang
Archive | 2014
Ma Lixiu; Liu Wei; Shen Jin; Tan Boxue; Wang Yajing; Chen Wengang; Sun Xia; Sun Xianming; Jiang Jing
Archive | 2013
Tan Boxue; Wei Peiyu; Shen Jin; Ma Lixiu; Liu Wei; Sun Xianming
Archive | 2013
Sun Xianming; Ma Lixiu; Shen Jin; Wang Haihua; Cao Lijun; Sun Mengyan
Archive | 2011
Sun Xianming; Wang Haihua; Shen Jin; Wang Shu-Jun
Archive | 2016
Ma Lixiu; Wang Haihua; Sun Xianming; Liu Wei; Shen Jin; Liu Guozhu; Chen Wengang; Sun Xia; Li Hongkui; Liu Xueting; Lin Yaning; Liu Bingzhuang; Wang Cong
Archive | 2016
Liu Guozhu; Ma Lixiu; Shen Jin; Sun Xianming; Liu Wei; Chen Wengang; Sun Xia; Li Hongkui; Liu Xueting; Liu Bingzhuang; Lin Yaning; Wang Cong