INDUCTO 3D - 电磁建仿照真软件
欢迎您接见环中1xBET!
INDUCTO 3DTM法式提供3D域中的耦合电磁和热分析。FARADAY的涡流仿照能力与CELSIUS的热分析能力相联系,为感应加热问题提供解决规划。
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INDUCTO 3DTM能够执行瞬态和稳态仿真。此表,当不必要耦合仿真时,能够单独使用FARADAYTM和CELSIUSTM?。
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使用INDUCTO 3DTM设计人员能够:
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确定工件内全数点的温度散布
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推算感应线圈的有效电阻和电抗
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推算感应加热系统的总功率要求
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定造设计线圈以适应特定的感应加扰爪用
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设计通量集中器、磁分流器和电磁屏蔽
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钻研瞬态加热和冷却状态的影响
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特点:
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合用于各类利用的3D射频和微波场求解器
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有限差分时域求解器
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1xBET软件包蕴含:
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求解器的选择:为确保您对解决规划有信心并进行独立验证,BEM和FEM步骤都蕴含在统一个软件包中,以满足您的特定利用需要。并非每个求解器都适合每个利用法式,没佑装一刀怯妆。
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优化工具的选择:参数分析合用于那些必要急剧方便优化且进建曲线短的人。API和剧本为高蹬酌户提供了更多职能。这两种工具都在统一个包中。
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内置资料库:自界说和创建您自己的库,以便方便接见您使用的资料。
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与MATLAB?集成:用户的MATLAB代码能够蕴含对INTEGRATED API的函数挪用,以构建几何、分配物理参数、求解和获得了局。
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并行化:在64位推算机上使用时,能够充分利用可用RAM,从而显著提高求解速度和后处置速度。
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直观的界面,可凭据用户偏好方便定造(整体表观、工具栏、求解器、布景、默认值等)。
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利用:
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核磁共振
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无损检测系统
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磁屏蔽
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母线、充电夹具
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线圈和变压器
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感应加热线圈
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感应电机
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系统要求:
64位操作系统
Microsoft? Windows 10或更高版本
装置必要约莫110MB的磁盘空间
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3D法式:
至少4GB的RAM运行,但对于应该使用16GB或更多RAM的较大问题,不建议这样做。使用的RAM越多,解决大问题的速度就越快
强烈建议使用多核处置器,由于3D法式是多线程的
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【英文介绍】
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INDUCTO 3DTM program provides coupled electromagnetic and thermal analysis in the 3D domain. The eddy current simulation capabilities of FARADAY are linked to the thermal analysis capabilities of CELSIUS to provide a complete solution for induction heating problems.
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INDUCTO 3DTM can perform both transient and steady-state simulations. In addition, the FARADAYTM and CELSIUSTM modules can be used separately when coupled simulations are not required.
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Using INDUCTO 3DTM designers can:
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Determine temperature distribution at all points within a workpiece
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Calculate effective resistance and reactance of induction coils
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Calculate total power requirements for induction heating systems
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Custom design coils to accommodate specific induction heating applications
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Design flux concentrators, magnetic shunts and electromagnetic shields
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Investigate effects of transient heating and cooling regimes
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Features
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3D RF and microwave field solver for a diverse range of applications.
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Finite difference time domain solver.
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At no extra cost, our software packages include:
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Choice of solvers: To ensure you have confidence in the solution and for independent verification, both BEM and FEM methods are included in the same software package to suit your specific application needs. Not every solver fits every application, no “one size fits all”.
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Choice of optimization tools: Parametric Analysis for those who need fast and easy optimization with a short learning curve. API and Scripting give more power to advanced users. Both tools are available in the same package.
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Built-in material libraries: Customize and create your own library for easy access to the materials you use.
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Integration with MATLAB?: Users' MATLAB code can include function calls to the INTEGRATED API to build geometry, assign physical parameters, solve, and obtain results.
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Parallelization: When used on 64-bit computers, this permits full utilization of the available RAM to dramatically increase speed of solution and post-processing.
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Intuitive interface that can be easily customized according to user preferences (overall appearance, toolbars, solvers, backgrounds, defaults, etc.)
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