optical thickness

英 [ˈɒptɪkl ˈθɪknəs] 美 [ˈɑːptɪkl ˈθɪknəs]

光学厚度

化学



双语例句

  1. Fourthly, in the eastern part of China, MODIS and MISR atmospheric aerosol optical thickness was bigger in spring and summer, while AOD in autumn and winter was smaller.
    第四,在中国东部地区,春夏两季的MODIS和MISR的大气气溶胶光学厚度较大,而秋冬两季的光学厚度分布较低。
  2. The observation and analysis of atmospheric aerosol optical thickness over Beijing Area
    北京地区大气气溶胶光学厚度的观测和分析
  3. Retrieval of aerosol optical thickness over Hong Kong and Pearl River Delta region using MODIS satellite data
    香港及珠三角地区MODIS高分辨率气溶胶光学厚度的反演
  4. The Experimental Study of Satellite Retrieval of Dust Aerosol Optical Thickness& Take SACOL over the Semi-Arid Region at Loess Plateau as example
    沙尘气溶胶光学厚度卫星反演试验研究&以黄土高原半干旱地区SACOL为例
  5. High Resolution Aerosol Optical Thickness Retrieval Using MODIS Data
    基于MODIS数据的高分辨率气溶胶光学厚度反演
  6. Atmospheric Correction Model of Remote Sensing Image by Regression Analysis between Elevation/ Aerosol Optical Thickness and Correction Parameters of 6S Model
    基于高程或气溶胶厚度与6S模型校正参数回归方程的遥感图像大气校正模型
  7. Each fringe is the locus of all points in the film for which the optical thickness is a constant.
    每一个条纹就是膜上一切光学厚度为常数的点的轨迹。
  8. The worth biggest and FWHM of defect mode up with the increment of the optical thickness of doping.
    滤波通道的峰值和半高宽都随吸收杂质的光学厚度的增加而减小。
  9. Retrieval of the optical thickness and effective radius of multilayered cloud using MODIS data
    利用MODIS数据反演多层云光学厚度和有效粒子半径
  10. The Experimental Study of Satellite Retrieving Dust Aerosol Optical Thickness over Land
    陆地沙尘气溶胶光学厚度的卫星反演试验研究
  11. In addition, the spectrum characteristics, the optical thickness and the chemical composition of sand aerosol particles are also counted and analysed.
    并综合研究了沙尘气溶胶尺度谱特征、光学厚度和化学组分等变化特征,提出了若干结果。
  12. And the assumption is raised that optical thickness interval in the film is uniform.
    并提出了均匀光学厚度的假设,应用计算机仿真给出了理论计算的结果。
  13. Optical thickness monitor ( OTM) is designed for optical thin film coaters.
    光学膜厚监控仪(OTM),适配于光学镀膜机。
  14. Based on these data, AOT ( aerosol optical thickness) and Angstrom parameters were retrieved. Through analyzing the variation of AOT and Angstrom parameters, the reason which cause the variation was discussed.
    利用这些数据,反演了气溶胶光学厚度和相应的Angstrom参数,分析了光学厚度和Angstrom参数的日变化和逐日变化,并讨论了这些变化的原因。
  15. The problem of secondarily-deriving the columnar aerosol grain density from a satellite-retrieved aerosol optical thickness is discussed.
    在卫星数据反演气溶胶光学厚度产品的基础上,讨论了二次反演大气柱中气溶胶粒子密度的问题。
  16. The relationships between atmospheric aerosol optical thickness and horizontal visibility as well as the dusty weather were discussed.
    本文还探讨了大气气溶胶光学厚度与水平能见度以及沙尘天气之间的关系。
  17. It can improve the monitoring precision of a coating with quarterwave or non-quarterwave optical thickness layers.
    这一方法既可提高淀积规整膜系时的层厚监控精度,也可提高淀积非规整膜系时的层厚监控精度。
  18. In this paper, the calibration of sun photometer, the calculation of atmospheric aerosol optical thickness and the Angstrom parameters a and β obtained from aerosol optical thickness are discussed.
    本文在讨论了太阳辐射计的标定、大气气溶胶光学厚度的计算和Angstrom参数的计算等问题的基础上,介绍了利用多波段太阳辐射计对黄海海域气溶胶光学厚度的洲量和研究。
  19. The Processing Method of Aerosol Optical Thickness and Aerosol Reflectance Ratio
    气溶胶的光学厚度与反射率比的处理方法
  20. In the visible spectral region, cloud reflection function depends mainly on the cloud optical thickness.
    在可见光谱区,云的反射函数主要依赖于云的光学厚度;
  21. The thermal radiation effects on the distributions of velocity and temperature and that on the heat transfer are investigated under the moderate optical thickness.
    考察了中等大小光学厚度下,热辐射作用对介质内速度分布、温度分布以及换热的影响。
  22. Relative bandwidth adjustment methods are put forward, such as using interval layer material, selecting optical thickness, using equivalent film, adjusting film refractive index.
    针对多半波结构,提出了间隔层膜料和光学厚度的选择、采用等效膜、调整膜层折射率等相对带宽调整的方法。
  23. The structure of system and its application in measurement of aerosol optical thickness are described.
    阐述了系统的结构以及该仪器在监测气溶胶光学厚度领域的应用,并与传统的太阳光度计进行了对比试验。
  24. The photonic crystal's characteristic septal optical thickness is determined by calculation and simulation.
    通过数值计算和计算机模拟,确定了光子晶体结构的特征间隔光学厚度。
  25. The effects of Fibonacci defects, optical thickness modulation and incident angle on the optical transmission spectra in a periodic superlattice have been discussed by the transfer matrix method.
    利用转移矩阵方法,讨论了Fibonacci缺陷、光学厚度调制、入射角对周期超晶格透射光谱的影响。
  26. The influence of the optical thickness on the transmission of the lognormal distributed water fog is calculated by using the improved Monte Carlo method with the particle size distribution in consideration.
    采用改进的蒙特卡罗方法,考虑了粒径分布,计算了粒径满足对数正态分布水雾的透过率随光学厚度的变化。
  27. Cloud optical thickness and effective particle radius are the important parameters to parameterize the cloud optical properties.
    云的光学厚度与有效粒子半径是云光学属性参数化方案中的重要参数。
  28. The position, amount and transmission of defect modes are great related with not only the form of defect but also the optical thickness, refractive index, position of defect and periodicity of crystals.
    缺陷模的位置、数目和透射率等特性不仅和缺陷的产生方式有关,还和缺陷的光学厚度、折射率、位置以及缺陷两侧晶体的周期数有关。
  29. The change of DBR optical thickness has greater effect on VCSEL performance than the change of cavity optical thickness.
    DBR光学厚度变化比谐振腔光学厚度变化对VCSEL的性能有更大影响。
  30. When the optical thickness increases, the warming speed of the earth-atmosphere system is faster than ground.
    当光学厚度增大时,地气系统的增温速度要快于地面。