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光学厚度 的英文翻译、例句

光学厚度

词组短语
optical thickness
更多网络例句与光学厚度相关的网络例句 [注:此内容来源于网络,仅供参考]

Based on these data,AOT and Angstrom parameters were retrieved.

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。

Based on these data,AOT 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。

The decennary increment of AOD averaged from all stations was 0.05. As to mean values, the maximum was in Sichuan Basin of 0.649, and the second maximum in South-Xinjiang Basin of 0.411, while the minimum was in Qinhai-Tibet plateau of 0.125. As to seasonal mean, AOD in spring had the highest value, and then in summer, while the minimum was in winter.

对本文方法反演的50多个台站1961~1990年的0.75μm对流层AOD数据进行统计分析,结果表明:我国AOD分布受地形影响显著,存在四川盆地、南疆盆地高值区和青藏高原低值区,1961~1990年平均AOD四川盆地为0.649,南疆盆地为0.411,青藏高原为0.125.1961~1990年,四川盆地光学厚度增加最显著,平均每十年增加0.16;南疆盆地光学厚度增长相对缓慢,平均每十年增加0.03;青藏高原为光学厚度增加最缓慢的地区,平均每十年增加0.01;全国平均AOD每十年增加0.05。

By taking the method of inverse operation and the computer-aided technique, the testing of thickness of optical thin films is completed firstly in China. Meanwhile, this method is also applied to the process of this coated film.

采用这种方法的逆运算形式,应用计算机辅助计算和检测技术,在国内首次完成对多层光学薄膜镀膜后或制备过程中各膜层光学厚度的检测。

A new method to correct the Rayleigh scattering effect by using NCEP reanalyzed data set was given. The aerosol optical thickness and surface albedo distribution in 670nm and 865nm over north of China were also given by using POLDER level-1B data, and some results were compared with that of by other method and seem to be reasonable.

六。在敏感性分析和模拟反演的基础上提出了完整的利用偏振反射率和总反射率同时反演陆地上空大气气溶胶光学厚度和地表反射率的方案,提出利用NCEP资料订正由海拔高度引起的Rayleigh散射变化的具体方法,并利用POLDER的Level 1B资料进行实际反演计算,给出我国华北地区气溶胶光学厚度和地表反射率的区域分布,并进行了对比验证分析,取得了比较合理的定量结果。

The author seeks after an effective way to retrieve aerosol optical depth for urban area with dense population and industrialization. Three-level remote sensing monitoring ""Satellite -airborne - surface"" was ideated with MODIS, OMIS and sun-photometer to retrieve urban aerosol optical depth. In the paper, the author compared three AOD retrieval methods and analyzed the applicability and limitation of each method, including ground-based remote sensing with sun-photometer.

本文针对人口密集、工业化程度高的城市区域范围,探索高光谱数据遥感反演气溶胶光学厚度的方法,应用中科院上海技术物理研究所自行研制的模块化成像光谱仪,结合MODIS卫星资料和地面太阳光度计监测,试图形成&星载—机载—地面&三个高度立体遥测,实现城市气溶胶光学厚度的反演,并进一步研究其环境效应。

Through the number calculation and the theories analysis that designs oping one-dimensional photonic crystal,the characteristic of TM wave and TE wave defect mode resulting from incident argle and the characteristic of TM wave defect mode resulting from thickness of defect were gotten.The defect mode of TM wave have been in the incident angle 0~π/2,the defect mode of TE wave have been in 0~0.65rad.

通过对设计出的一维掺杂光子晶体的数值计算和理论分析,得出了TM波和TE波缺陷模随入射角变化的特征以及TM波缺陷模随杂质光学厚度的变化特征为:TM波的缺陷模透射峰在入射角为0-π/2范围内均存在,而TE波的缺陷模透射峰只在入射角为0-0.65 rad范围内存在;在一定波长范围内TM波缺陷模的波长随杂质光学厚度近似呈线性变化。

The Eddington scheme is slightly more accurate in thicker optical depth region, while the two-stream DISORT is more accurate in the thin optical depth region where the solar zenith angle is less than 60 degree. Second, we compare the two two-stream schemes in a realistic atmospheric profile with gaseous transmission considered.

对于单层大气,Eddington 近似在光学厚度大的时候比二流离散纵标法更精确一点;而二流离散纵标法在光学厚度小且太阳天顶角小于60 度的时候更准确。

The variation of reflectivity spectra for the VCSELs with the change of incident angle, optical thickness of resonance cavity and optical thickness of DBR are investigated.

研究了VCSEL的反射率谱线位置随光线入射角度、谐振腔的光学厚度以及DBR光学厚度的变化。

Transmissions at 0.75 and 1.65 μm can also be used to retrieve τ and re. 2. Study the impact of cloud inhomogeneity on the satellite retrieval simultaneously. Two 3D cloud fields, cumulus and stratocumulus fields are used in our study. The two cloud fields are generated with LES model and are adopted by the I3RC phase II. The BRDF at the wavelengths of 0.65 and 2.13 μm are calculated with SHDOM, and then the cloud optical thickness and effective particle radius are simultaneously retrieved using the MODIS algorithm. We studied the impact of cloud inhomogeneity on the satellite retrieval at high and medium resolutions. Some conclusions have been made, such as the BRDF abnormal phenomenon, the reverse relationship between τ and re, the clustering effect of over and under estimation in the retrieval of τ and re .

我们选用为I3RC所采用的由LES模式给出的具有明确物理属性的两个高分辨率三维云场-积云场与层积云场,利用SHDOM三维辐射传输模式来模拟卫星观测的辐射值,并采用MODIS算法进行反演,同时研究了在高分辨云场及中低分辨率云场下,云的非均匀性对反演云光学厚度及有效粒子半径的影响,并得到了云的非均匀性会造成的双向反射率异常,反演结果中光学厚度与有效粒子半径的负相关关系,高估或低估现象是成&簇&出现的等结论。

更多网络解释与光学厚度相关的网络解释 [注:此内容来源于网络,仅供参考]

optical system:光学系统,光具组

optical path difference 光程差 | optical system 光学系统,光具组 | optical thickness 光学厚度

optical thickness:光学厚度

光学经纬仪 optical theodolite | 光学厚度 optical thickness | 光学传送函数 optical transfer function

optical thickness monitor:光学厚度监控器

optical thickness 光学厚度 | optical thickness monitor 光学厚度监控器 | optical thin-film 光学薄膜

optical thickness monitor:光学厚度监测

Reversing attachment 扭转附件 | Optical thickness monitor 光学厚度监测 | Quartz-Crystal microbalance monitor 石英晶体微量天平监测

aerosol optical thickness:气[悬]胶光学厚度

"aerosol loading","气[悬]胶负载" | "aerosol optical thickness","气[悬]胶光学厚度" | "aerosol particle","气[悬]胶粒子"

aerosol optical thickness:气溶胶光学厚度

基体带厚度:matrix ligament thickness | 气溶胶光学厚度:Aerosol Optical Thickness | 有效弹性厚度:Effective Elastic Thickness

optical thickness tolerances:光学厚度公差

optical thickness of thin film 薄膜光学厚度 | optical thickness tolerances 光学厚度公差 | optical thin film 光薄膜

OPTICAL:光学

能及主要特色 光学(Optical),物理(Physical),大量(massive)层的厚度定义 Ruget , 数学操作 , Herpin 替换(replacement) 光学和物理厚度的转换 群组和层数的转换 反向设计(reverse design) 不同质(inhomogeneous)层的模拟 包含了52种膜的材料 1.

optically anisotropic:光学各向异性的

optical thickness 光学厚度 | optically anisotropic 光学各向异性的 | optically denser medium 光密介质

Minimum thicknesses in rim and centre of lens:透镜边缘及中心最小厚度

光学零件的倒角 Chamfers for optical... | 透镜边缘及中心最小厚度 Minimum thicknesses in rim and centre of lens | 光学零件薄膜的分类、符号及标注 Thin-film coatings on optical parts--Classification, symbol...