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1)  axis-symmetric thermal forcing
轴对称热力强迫
1.
Exp 1 illustrates upper-layer axis-symmetric thermal forcing can produce axis-symmetric shallow overturning circulation in non-rotating frame.
同时,轴对称热力强迫产生的非线性温度梯度造成非线性变化的表层径向流速,近似于理想流体点源模型1/r的结构。
2)  thermal forcing
热力强迫
1.
Many factors have impact on local circulation such as surface friction,topography,thermal forcing and so on.
进而用动力学分析观点结合图形分析,定性讨论了热力强迫作用对局地环流的扰动作用,以及加热影响下各物理扰动场的空间分布及时间演变特征。
2.
For the barotropic potential vorticity equation (named the barotropic model) on a β-plane channel its solution is a stationary, wave-like pattern under a certain thermal forcing, while a quasi-periodic oscillation between two essential flow patterns appears if north-south thermal heating and wave-like topography are added as the .
在南北两端为齐次边界条件时,单纯的热力强迫下只出现了波状定常解;在只有经向加热和波状地形共同强迫下出现了在两种基本流型之间振荡的准周期解,十分类似于旋转地球上大气运动的纬向和经向流型之间的准周期循环,前者对应于强的西风环流,后者对应于弱西风流型。
3.
Dynamic and numerical methods are used to discuss the atmospheric response imposed by SST thermal forcing.
用动力分析和数值计算的方法讨论了大气对海温热力强迫的响应。
3)  thermo-force bending
轴对称热力弯曲
4)  axisymmetric heat conduction
轴对称导热
1.
According to the axisymmetric heat conduction of cylinder,a general method to calculate the axisymmetric temperature and thermal stress of multilayer cylinder is deduced,and tridiagonal linear equations of internal temperature and radial pressure are derived.
根据圆筒体轴对称导热的分析原理,推导了多层组合圆筒轴对称导热温度分布和热应力的通用计算式方法,多层组合圆筒体的内部界面温度和径向压力的三对角型方程组形式,给出了计算流程,编写了相应的计算程序,给出了算例。
5)  dynamic/thermodynamic forcing
动力-热力强迫
6)  heat exchange by forced corvection
强迫对流換热
补充资料:轴对称
也称“线对称”。如果把一一个图形沿着某一条直线折过来,它能与另一个图形重合,那么称这两个图形关于这条直线成轴对称。这条直线称为对称轴。如果两个图形关于某直线成轴对称,那么对应点的连线被对称轴垂直平分。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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