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1.
Characteristics of Water Vapour Transfer in Upper- middle Troposphere over Xinjiang
新疆对流层中上部水汽输送特征研究
2.
the atmospheric layer between the troposphere and the mesosphere.
位于对流层之上中间层之下的范围的大气。
3.
Atmospheric Density and Temperature Measurement with Lidar in the Middle and Upper Stratosphere
激光雷达探测平流层中上部大气密度和温度
4.
The simplest convection model is that of a contained layer of liquid sitting above a point heat source.
最简单的对流模式,是处在一个局部热源上流体的封闭圈层的模式。
5.
A SYNOPTIC ANALYSIS OF THE EVOLUTION OF GENERAL CIRCULATION IN THE UPPER TROPOSPHERE OF THE NORTHERN HEMISPHERE DURING THE PERIOD OF EARLY SUMMER, 1958
1958年初夏北半球对流层上部大气环流演变的分析
6.
In simple laminar convection simulations, large plumes stretch all the way from the bottom of the core to the top.
在简单的层流对流模拟中,大型的烟流从地核底部一路延伸到顶端。
7.
Above the troposphere is the stratosphere, followed by the ionosphere and capped by the exosphere.
在对流层上是平流层,接着是电离层,最上层是外逸层。
8.
large-scale pelagic drift-net fishing
大型中上层流网捕鱼
9.
The portion of the current confined to the surface layer becomes negligible.
流经上部地层的那部分电流变得可以忽略不计。
10.
PROPAGATION OF BAROCLINIC WAVE PACKETS IN UPPER TROPOSPHERE DURING THE MEIYU PERIOD OF 1998 OVER MIDDLE AND LOWER REACHES OF YANGTZE RIVER VALLEY
1998年长江中下游梅雨期间对流层上层斜压波包的传播
11.
upper atmosphere
【气象学】(对流层以上的)高层大气
12.
Recent Advances in the Study of Atmospheric Vertical Structures in Upper Troposphere and Lower Stratosphere
上对流层/下平流层大气垂直结构研究进展
13.
The Study of Receptivity of Supersonic Boundary-layer to Local Periodic Disturbance in Free-stream;
超音速边界层对自由流中空间局部周期扰动感受性问题的研究
14.
Influence of horizontal strengthened storey on performance of outrigger internal force and base settlement in tall frame-core wall structure
高层框—筒结构中加强层对上部伸臂内力和下部结构沉降性能的影响
15.
Ozone Budget in the Lower and Middle Troposphere over North China
我国北方地区对流层中下层臭氧收支
16.
H2O absorption is predominant in the troposphere, particularly the lower troposphere.
H2O吸收在对流层,特别在对流层下部起着主要作用。
17.
The dynamic response to the heating imbalance is such as to converge heat into the upper troposphere of the desert regions.
对这一加热不平衡的动力学响应结果导致热在这沙漠地带的对流层上部辐合。
18.
in the upper troposphere, ozone is created much more efficiently and is destroyed less easily than at ground level.
在上对流层中,与地面附近相比,臭氧能更有效地生成,而且更难分解。