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参数设计语言
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  “参数设计语言”译为未确定词的双语例句
     In this paper,ANSYS soft packages are used to solve the pressure field and the finite element/node control volume(FE/NCV) arithmetic is implemented completely under ANSYS soft environment by ANSYS Parametric Design Languages(APDL).
     本文利用ANSYS软件包求解压力场,以ANSYS软件环境下的参数设计语言编程,实现了有限单元/节点控制体积(FE/NCV)算法。
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     Based on the Visual C++ integrated developing environment,Gear Parametric Modeling was realized by using the function of B-Splines and APDL parametric design language in ANSYS,which has provided one new method and the way for resolving the contradiction between general program and specialized need.
     利用ANSYS的样条曲线(B-Splines)功能和APDL参数设计语言生成公式、曲线,并借助Visual C + +集成开发环境,实现齿轮的参数化建模,为解决通用程序和专业需要之间的矛盾提供了一种新方法和新途径。
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     The nonlinear thermal vibration characteristic of the composite thin-cylindrical shells under linear temperature field is investigated by the ANSYS parametric design language(APDL).
     采用有限元软件ANSYS参数设计语言(APDL)实现复合材料薄壁圆柱壳结构在线性分布温度场作用下的非线性热振动特性分析。
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     Utilizing the APDL(ANSYS Parametric Design Language) and the CT value per pixel in the CT image for developing a program through which every element of the bone can get its own material property.
     利用股骨CT图像中每个象素的CT值和ANSYS软件提供的参数设计语言APDL进行二次开发并形成自主开发的材料属性赋值程序.
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     Finally, based on the common-purpose flat of ANSYS, the macro file, which can simulate the temperature field and the thermal stress field, is compiled in this paper by using ANSYS Parametric Design Language (APDL) and many internal functions of ANSYS.
     最后在有限元分析程序ANSYS的通用平台上,通过参数设计语言(APDL)以及多种ANSYS内部函数,编制宏命令来控制ANSYS程序进行施工温度场和温度应力场仿真。
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     design factors;
     设计参数;
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     Design of Variable Parametric Function in C Language
     C语言的可变参数表函数的设计
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     It applies ship design of parameter.
     用于参数设计.
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     The Descripion of Linguistic Design.
     语言设计的描写
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     Language Testing and The Design
     语言测试及设计
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This paper researched the vibration control of the smart beam with distributed sensor/actuator of the piezoelectric film PVDF.Three control algorithm,namely the displacement feedback,the negative velocity feedback and the Lyapunov velocity feedback,are carried out.The results show that the control effect is the same as that of applying the control moment at the free end of the cantilever beam,and the velocity feedback is much more effective than the displacement feedback.Moreover,the APDL(ansys parametric design...

This paper researched the vibration control of the smart beam with distributed sensor/actuator of the piezoelectric film PVDF.Three control algorithm,namely the displacement feedback,the negative velocity feedback and the Lyapunov velocity feedback,are carried out.The results show that the control effect is the same as that of applying the control moment at the free end of the cantilever beam,and the velocity feedback is much more effective than the displacement feedback.Moreover,the APDL(ansys parametric design language)is employed to implement the simulation.The mehod broke a new path for the simulation and control of complex structures.

研究了分布传感 /执行器智能梁模型的振动控制问题。传感器和执行器选用了压电薄膜 PVDF,控制律根据直接位移反馈、负速度反馈和 L yapunov速度反馈设计。研究表明 ,在本文讨论的悬臂梁模型中 ,分布执行器控制的效果等效于自由端施加变化的控制力矩 ,而且速度型反馈明显优于位移型反馈。另外 ,在仿真的过程中 ,利用了 ANSYS的参数设计语言 APDL (ansys param etric design language) ,为复杂三维结构的控制仿真开辟了一条可行的途径

In this paper,the dynamic simulation for filament winding process and stress analysis of pressure vessel are programmed by APDL parametric language. The practical winding parameter can be applied directly to stress analysis. After analysis, the simulated data can be used to numerical control(NC) winding machine. Non geodesic trajectory mandrel rotation and payout eye motion equations for fiber reinforced composite pressure vessels are derivated by theory of differential geometry. Geometric nonlinear and physic...

In this paper,the dynamic simulation for filament winding process and stress analysis of pressure vessel are programmed by APDL parametric language. The practical winding parameter can be applied directly to stress analysis. After analysis, the simulated data can be used to numerical control(NC) winding machine. Non geodesic trajectory mandrel rotation and payout eye motion equations for fiber reinforced composite pressure vessels are derivated by theory of differential geometry. Geometric nonlinear and physic nonlinear are considered. The incremental stress strain relations for a nonlinear orthotropic lamina are applied. Reduction of material properties in the layer level is considered in progressive failure analysis. The test is finished for longitudinal flexural stiffness degradation. The result shows that the longitudinal flexural stiffness degradation is an important factor on the deformation at axial direction of fiber reinforced composite pressure vessels.

本文用APDL参数设计语言编制的程序可同时进行压力容器缠绕过程的动态仿真模拟及应力分析 ,可将实际缠绕参数直接用于应力分析 ,分析后得到的仿真数据可直接用于数控缠绕机进行生产 ,实现了纤维缠绕复合材料压力容器CAD/CAE/CAM一体化。本文用微分几何理论推导出纤维缠绕复合材料压力容器的非测地线缠绕轨迹、包角方程及绕丝头运动方程。在应力分析过程中考虑了几何非线性和物理非线性。采用叠层的增量本构关系 ,以分段线性表示单层非线性应力 应变曲线 ,对损伤后引起的刚度降低进行了实验研究 ,实验特别研究了面内剪切破坏和层间剪切破坏对纵向弯曲刚度的影响。结果表明纤维缠绕复合材料压力容器损伤后 ,弯曲刚度的降低是影响轴向变形的重要因素。

Based on ANSYS program, the macro file, which can simulate the temperature field of the Badong Yangtze River Bridge pile-cap, is compiled by using ANSYS Parametric Design Language (APDL) and many internal functions of ANSYS. The computational results are compared with the experimental results, which show that the finite element model is correctly set to simulate the temperature field of the concrete in practice.

在有限元程序ANSYS的通用平台上,通过参数设计语言(APDL)以及多种ANSYS内部函数,编制宏命令来控制ANSYS程序对巴东长江大桥承台大体积混凝土的浇筑温度场进行仿真分析,并将计算结果与实测结果进行了比较,结果显示所建立的有限元分析模型可以较好地仿真实际混凝土温度场.

 
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