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流道叶轮
相关语句
  channel impeller
     Study on Hydraulic Design Method of Single Channel Impeller
     单流道叶轮水力设计方法的研究
短句来源
     Under the environment of Visual C++6.0, the parametric 3-D modeling software PCAD-3D is developed, which includes column blade, curved blade, double channel impeller, volute and radial vaned diffuser, etc.
     在Visual C++6.0编程环境下,开发了扭曲叶片、圆柱叶片、双流道叶轮、蜗壳和径向导叶等的参数化三维造型软件PCAD-3D。
短句来源
     Research on Non-overload Design of Double Channel Impeller Hydraulic Model
     双流道叶轮水力模型无过载设计研究
短句来源
     Design Exploration of Two channel Impeller
     双流道叶轮设计探讨
短句来源
     Application of VB in The Secondary Development of Solidworks on The Double Channel Impeller
     VB技术对Solidworks的二次开发在双流道叶轮中的应用
短句来源
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  “流道叶轮”译为未确定词的双语例句
     The CAD and Coefficient Statistics on Hydraulic Design ofDouble-channel Impeller
     双流道叶轮水力设计CAD中流道参数的确定
短句来源
     Research on the Designing Method of Double-flow-passage Impeller
     双流道叶轮设计方法研究
短句来源
     3-D Numerical Simulation for Incompressible Turbulent Flow in the Impellers ofDouble-channel Pumps
     双流道叶轮内湍流的三维数值模拟
短句来源
     On the bases of many designs and tests , provides the hydraulic design way on computer aideddesign of double-channel impeller, and with some main parameters.
     摘 要:在大量试验研究和设计实践的基础上,给出了双流道叶轮计算机辅助设计的方法,并对一些主要参数进行了统计分析。
短句来源
     In order to provide references on impeller of double-current designing ,based on the existing documents about impeller designing methods of double-flow-passage,some methods are introduced exhaustively.
     双流道叶轮设计采用变宽流道设计法,容易造成高效区向大流量偏移设计点效率偏低,因此需要对流道面积进行控制。
短句来源
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  相似匹配句对
     Manufacturing Technology of Narrow Flow Channel Impeller
     窄流道叶轮的制造工艺
短句来源
     Design Exploration of Two channel Impeller
     双流道叶轮设计探讨
短句来源
     Research and Manufacture of Impeller of Slurry Pump
     泥浆泵叶轮的研制
短句来源
     CAGD FOR CENTRIFUGAL PUMP IMPELLER
     离心泵叶轮计算机辅助几何设计
短句来源
     On Hot runner Technology
     热流道技术
短句来源
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The construction and characteristics of single channel pump is introduced. The construction of the impeller and the reasons that result in good untiblocking property are analyzed. A method of mass force dynamic balance based on the static balance principle is suggested. Experimental formulas of determining the geometric parameters of the impeller are established by statistic analysis.

介绍单流道泵的结构及其性能特点,对单流道叶轮的结构进行剖析,分析其无堵塞性优良的原因,提出一个用静平衡原理进行质量力动平衡的方法,用统计分析的方法建立了确定叶轮几何参数的经验公式。

Based on the desing method of two channel impeller presented in document some additional and modifing method are given,and the impeller axonometric drawting the vane drawing and the inlet shape and size design is discussed.

对文献[1] 中所述双流道叶轮设计方法提出了补充、修改意见,对叶轮的轴面图绘制、叶片绘制、进口边形状和参数的确定进行了探讨。

A new hydraulic design method of single channel impeller was discussed in this paper, it is simpler than the former design method of single channel impeller. The new method is especially fit for program CAD software. Based on summing up many excellent hydraulic models of single channel impeller, it gave all kinds of coefficient values of axial section. With reference to the design method of plan hydraulic design of double channel impeller, the new design method of plan hydraulic of single channel impeller is...

A new hydraulic design method of single channel impeller was discussed in this paper, it is simpler than the former design method of single channel impeller. The new method is especially fit for program CAD software. Based on summing up many excellent hydraulic models of single channel impeller, it gave all kinds of coefficient values of axial section. With reference to the design method of plan hydraulic design of double channel impeller, the new design method of plan hydraulic of single channel impeller is put forward. It introduced a new change rule of section area and an equation of plan channel midline. At last, a programming method and an example of design were given.

系统论述了单流道叶轮水力设计的新方法 ,新方法较原方法简单、可靠和实用 ,尤其便于编制计算机辅助设计软件。在对现有的优秀单流道叶轮水力模型进行归纳总结的基础上 ,给出了用速度系数法设计轴面图时的各速度系数值。借鉴双流道叶轮水力设计中平面图的设计方法 ,提出了新的单流道叶轮平面图水力设计方法。介绍和分析了新的流道截面面积变化规律和平面图流道中线方程 ,同时还给出了编程方法及其设计实例的实验结果

 
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