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流动平面
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  “流动平面”译为未确定词的双语例句
     On the base of above preparations, the coupling model of 2D and 3D is established, its coupling condition, initial condition and boundary condition are introduced.
     然后分别对平面二维自由表面流动和三维有压流动,平面二维自由表面流动和三维自由表面紊流建立了嵌套连接数学模型,给出了嵌套连接和初始边界条件,并进行了算例分析。
短句来源
     The flow diagram is transformed into new complex plan with conformal mapping and then the deflection angles and reduction coeficient of injection with different valve port angles and different relative sizes can be found by using source and sink distribution method.
     本文利用源、汇分布法,通过将流动平面保角映射为新的复平面而得到了在不同阀口角度、不同阀口相对尺寸时射流的偏转角与射流的收缩系数。
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  相似匹配句对
     Mathematical modelling of two-dimensional flow in alluvial rivers
     冲积平原河流平面流动的数值模拟
短句来源
     Experimental Procedure Study on Unsteady Flow in Plane Cascade
     平面叶栅非定常流动试验方法研究
短句来源
     Modernity with Flowing Feature
     流动的现代性
短句来源
     ON P—PLANE FIELD
     p—平面
短句来源
     From Plan to Section
     从平面到剖面
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  flow plane
Also, the eigenfrequences were determined for the gas in the flow plane with the array absent [9].
      
The formulation of stationary, plane, and self-similar problems is considered when the flow parameters depend only on the polar angle, and the magnetic field lies in the flow plane.
      
The case in which the magnetic field is perpendicular to the flow plane has been examined in [1].
      
The question is investigated of what conditions the solution in the hodograph plane satisfies when it corresponds to a flow without singularities on the limit characteristic in the physical flow plane.
      
According to the momentum balance, the drag can be represented by an integral over a cross-flow plane (called wake integration method) at an arbitrary distance behind the configuration.
      
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An approximate method for solving the inverse problem in two-dimensional

本文提出一种解叶栅绕流反问题的近似方法.利用假想气体近似,将可压缩流动平面的反问题,变换为虚拟的不可压流动平面上的反问题.采用边界元方法造代求解出叶片型线,然后再变换到原物理平面.本文还对亚音速、无激波跨音速叶栅的三个例子作了数值计算.

The liquid injection will be deflected and reduced at inlet or outlet from slide valve, to which the dynamic stress acting on the slide valve bears relation. The flow diagram is transformed into new complex plan with conformal mapping and then the deflection angles and reduction coeficient of injection with different valve port angles and different relative sizes can be found by using source and sink distribution method. The deflection angle of injection mainly depends on the valve port angle and almost has...

The liquid injection will be deflected and reduced at inlet or outlet from slide valve, to which the dynamic stress acting on the slide valve bears relation. The flow diagram is transformed into new complex plan with conformal mapping and then the deflection angles and reduction coeficient of injection with different valve port angles and different relative sizes can be found by using source and sink distribution method. The deflection angle of injection mainly depends on the valve port angle and almost has no relation to the valve size, but the reduction coefficient vavies with both of them.

当液流由滑动阀阀口射入或射出时,都会发生射流的偏转与收缩,滑动阀所受的动应力即与此有关。本文利用源、汇分布法,通过将流动平面保角映射为新的复平面而得到了在不同阀口角度、不同阀口相对尺寸时射流的偏转角与射流的收缩系数。射流的偏转角主要受阀口角度的影响,几乎与阀口尺寸无关;但射流的收缩系数则与两者都有关系。

In this paper, The liquid (gass) flow graph (Figl) of tube (post) is map onto a plane of invented fluid on two shects plane of Riemann through logarithmic transformation of Velocity. To use successful approximate mapping, The region (Fig2) of curvilinear polygon is map onto a w-plane of complex potential Applying trigonometrical series compute obstruction, The acquired result is completer uniform than classical one. This method compute very simplicity to show advantage.

本文通过对数速度变换,将线柱体液(气)流动图形图1,映射成虚拟流动平面Ω平面图2,然后成功地利用近似映射将二叶黎曼面曲线形区域图2,映射成复势W平面图3区域,利用三角级数展开法计算阻力,所得结果与经典结果完全一致,计算方法简单,显示出这方法的优越性。

 
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