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1)  cloud thickness
云厚
2)  Magnolia Rostrata
云厚朴
1.
Study on Effect of Alcohol on Supercritical Fluid CO_2 Extraction of the Total Phenolic from Magnolia Rostrata;
乙醇对超临界CO_2萃取云厚朴总酚影响的研究
2.
Comparative Study of Two Extraction Methods for Magnolia Rostrata
云厚朴两种提取方法的比较研究
3)  cloud optical thickness
云光学厚度
1.
Experiment of cloud optical thickness retrieval using SCIAMACHY instrument in oxygen A-band channel;
利用SCIAMACHY仪器氧气A带通道反演云光学厚度试验
2.
In this paper, we present a ground based retrieval method for determining the cloud optical thickness and effective particle radius and discuss the impact of cloud inhomogeneity on.
本文以提高对卫星反演云光学厚度及有效粒子半径产品的理论认识为出发点,发展了一种地基反演方法,探讨了云的非均匀性的对反演结果的影响,主要研究结果如下: 1。
3.
The cloud optical thickness, cloud particle effective radius and cloud top temperature are important parameters to determine cloud radiative properties, and it’s absolutely necessarily to make use of satellite data to get a worldwide information.
本文利用FY-2C静止卫星提供的可见光、中红外和热红外观测数据,开展了水云光学厚度、粒子有效半径和云顶温度的云参数遥感探测理论和反演方法研究。
4)  The clouds are building up.
云越积越厚。
5)  Warm cloud depth
暖云区厚度
6)  deep convective cloud
深厚对流云
1.
Methods were presented to detect deep convective clouds in the tropical cyclone using NOAA-16/AMSU-B microwave brightness temperature differences between water vapor channels and GOES-9 infrared brightness thresholds of cloud top temperatures,and the classification of clouds were identified in the tropical cyclone applying with visible/infrared/water vapor spectral features.
利用NOAA-16/AMSU-B三水汽通道微波亮温差和GOES-9红外亮温阈值对热带气旋深厚对流云进行检测,同时利用GOES-9可见光、红外、水汽多光谱通道特征对热带气旋云系进行识别,通过一次台风"蒲公英"个例,对热带气旋在微波和光学遥感图像上的深厚对流云进行分析。
补充资料:法云寺云光师《释氏通鉴》
【法云寺云光师《释氏通鉴》】
  法云寺云光师讲经天为雨花。帝意其证。圣夜于含光殿。焚疏请宝志。偕法云云光二师斋。翌日志独赴。而云光未知帝敬志焉(僧史)
  
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