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雾和气溶胶的光学特性对前向散射和总散射能见度仪性能的影响
引用本文:李浩,陈晓颖,单陈华,唐丽萍.雾和气溶胶的光学特性对前向散射和总散射能见度仪性能的影响[J].红外与激光工程,2013,42(6):1568-1574.
作者姓名:李浩  陈晓颖  单陈华  唐丽萍
作者单位:1.解放军理工大学 气象海洋学院,江苏南京211101;
摘    要:建立了完整的散射式能见度仪(SVM)探测方程,搜集整理了典型天气条件下雾和气溶胶的观测资料,在此基础上,运用米散射理论计算并分析了雾和气溶胶的光散射特性及其对前向散射能见度仪(FSVM)和总散射能见度仪(TSVM)探测性能的影响。结果表明:大气散射特性显著影响SVM 的探测误差,且FSVM 受影响程度超过TSVM;雾天气下FSVM 与TSVM 的探测误差基本相当,而气溶胶天气下FSVM 探测误差比TSVM 约大6%;相同天气条件下,TSVM 接收的光通量约为FSVM 的7倍,但TSVM 泄露的散射光仍不能忽略,否则将导致较大的系统误差;若不计光通量测量误差,雾天气下FSVM 与TSVM 的探测误差分别为4.06%、5.54%,气溶胶天气下分别为35.80%、30.33%。所得结果可为SVM 的光路设计、误差分析和比对试验等提供支持。

关 键 词:散射    能见度    前向散射能见度仪    总散射能见度仪    测量误差
收稿时间:2012-10-14

Effect of atmospheric fog and aerosal optical properties on the performance of FSVM and TSVM
Li Hao , Chen Xiaoying , Shan Chenhua , Tang Liping.Effect of atmospheric fog and aerosal optical properties on the performance of FSVM and TSVM[J].Infrared and Laser Engineering,2013,42(6):1568-1574.
Authors:Li Hao  Chen Xiaoying  Shan Chenhua  Tang Liping
Affiliation:1.Institute of Meteorology and Oceanography,PLA Univerity of Science and Technology,Nanjing 211101,China;2.School of Instrument Science and Engineering,Southeast University,Nanjing 210096,China;3.Unit No. 95871 of PLA,Hengyang 421002,China
Abstract:A complete detection model of scattering visibility meter (SVM) was established and the sounding data of fog and aerosol under the typical weather conditions were gathered. On this basis, a calculation of the light scattering characteristics of atmosphere fog and aerosol based on Mie scattering theory was presented. It emphatically analyzed and simulated the light scattering characteristics and its influence on the detection performance of forward scattering visibility meter (FSVM) and total scattering visibility meter (TSVM). The results show that atmospheric scattering characteristics have significant effect on the sounding error of SVM, and FSVM are more affected by them than TSVM; The sounding error of FSVM was similar to TSVM in fog conditions and is approximately 6% bigger than that of TSVM in aerosol conditions; The luminous flux is received from TSVM which is about 7 times more than from FSVM under the same atmosphere conditions, but the scattered light leaking from TSVM must not been still ignored to avoid very large system error; The sounding errors of FSVM and TSVM are approximately 4.06% and 5.54% respectively in fog conditions, and are approximately 35.806% and 30.33% respectively in aerosol conditions if the sounding error of luminous flux is ignored. The results are valuable to optical path design of SVM, error analysis and antitheses tests.
Keywords:scattering  visibility  FSVM  TSVM  sounding error
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