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                HiPhi | 三维有≡限元静电场计算工具

                HiPhi |  三维有限元静电场▆计算工具
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                • HiPhi |  三维有限元静电场计算工具
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                产品报价: 10000
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                HiPhi
                三维有限元静电场计算工具
                高教 职教
                详细说明

                温馨提示:需求数量不同,价格不同。请联〒系我们,确认当前新的报价!

                HiPhi为3D静电提供不凡的计算能力、速度和准确性。该程序处理用户指定的几何形状,其中◆可能包含电极、电介质、空间电荷和电阻材料的区域。独立的软件包包※括Geometer(用于构建3D几何图形的交互式环境)、MetaMesh(自动保形网格生成器)和PhiView(用于绘图和交互式分析的后处理器)。该程序具有计算速度快的特点—在一台典型的个人计算机上计算200,000个节点Ψ 只需不到一分钟。HiPhi应用于高压工程、电路元件◤设计、光电及真空微电子器件、电镀↓及静电设备等领域。

                特征:

                • 从数学函数中指定连续的空间变化材料属性

                • 解决大型结构中微观细节的∞解决方案技术

                • 大量2D和3D绘图选项

                • 解决方案的交互式点击分析

                • 在批处理模式下运行HiPhi和PhiView以进行扩展计算的选项

                • 法线场的自动表面【积分,用于计算互电容和电极电流

                • 具有数字示波器功能的交互〇式线扫描和绘图

                HiPhi计算任意三维○系统中的静电场。该程序可以生成电介质或导电溶液。在电介质溶液中,溶液空间的区域可以代表电极、电介质和空间电荷密度。在导电溶液中,这∩些区域对应于电极或电阻性介质。你可以在一个解决方案中包括多达250种材料类型。HiPhi有☆几个功能:

                • 使用有限元技术对共形六边形网格进行高精度计算

                • 通过结构化网格实现不凡的计算速度,对具有FORTRAN95编码的多核Windows PC进行了优化

                • 大网格容量的动态内存分配(标准PC上20-5000万个元素)

                • 根据数学表达式将电位、介电常数、电导率和/或空间电荷㊣密度的连续空间变化分配给区※域的技术

                  HiPhi软件包包括两个程序:

                • hiphi.exe—在窗口中以交互式方式或在批处理文件控制下自动生成静电解决方↙案№

                • phiview.exe—符合要求的后处理器从】HiPhi解决方案文件生成绘图并计算场量

                  MetaMesh是AMaze通用共形网格生成器,用于准确输入几何文件。

                【英文介绍】

                HiPhi offers unparalleled computational power, speed and accuracy for 3D electrostatics at a moderate price. The program handles user-specified geometries that may contain regions of electrodes, dielectrics, space-charge and resistive materials. The self-contained package includes Geometer (interactive environment for building 3D geometries), MetaMesh (automatic conformal mesh generator) and PhiView (postprocessor for plots and interactive analyses). The program features high computational speed — a 200,000-node calculation takes less than 1 minute on a typical personal computer. HiPhi has application to areas such as high-voltage engineering, circuit component design, electro-optical and vacuum microelectronic devices, electroplating and electrostatic equipment.

                Features

                • Specify continuous spatial variations material properties from mathematical functions.

                • Advanced solution techniques to resolve microscopic details in large structures.

                • Extensive array of 2D and 3D plotting options.

                • Interactive point-and-click analysis of solutions.

                • Option to run HiPhi and PhiView in batch mode for extended calculations。

                • Automatic surface integrals of normal fields to calculate mutual capacitances and electrode currents.

                • Interactive line scans and plots with digital oscilloscope features.

                HiPhi calculates electrostatic fields in arbitrary three-dimensional systems. The program gen-erates either dielectric or conductive solutions. In dielectric solutions, regions in the solution-space may represent electrodes, dielectrics and space-charge density. In conductive solutions, the regions correspond to electrodes or resistive media. You may include up to 250 materialtypes in a solution. HiPhihas several advanced capabilities:

                • High accuracy calculations using finite-element techniqueson conformal hexahedron meshes.

                • Unmatched computation speed through unique structured meshes, optimized for multi-core Windows PCs with full FORTRAN95 coding.

                • Dynamic memory allocation for large mesh capacity (20-50 million elements on a standard PC).

                • Advanced techniques to assign continuous spatial variations of potential, dielectric con-stant, conductivity and/or space-charge density to regions from mathematical expressions.

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