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结合使用ANSYS® Mechanical™ 16.0和Intel®架构加速仿真的三条途径

在工程仿真领域,即便是渐进的性能提升也能改善生产力,并缩短产品研发时间。三倍的性能提升更是会带来整个工作流程的转变,让设计团队能够在更短时间内运行更多、更大型仿真,改善创新、质量、安全、可靠性和可制造性,并加速上市进程。

ANSYS和Intel紧密合作,针对多核Intel® Xeon®处理器E5 v3系列和多核Intel® Xeon Phi™协处理器精心优化ANSYS Mechanical™ 16.0,将设计与工程仿真性能提高3.2倍1,2。尽管完整硬件和软件升级才能实现最高水平的性能提升,但更加温和的升级策略仍可取得幅度小却有力的改善。

本白皮书中描述了三种不同的硬件升级途径。

此外还提供了有关指导与性能基准,帮助决策者根据他们的仿真、预算和业务要求确定出提高性能的最佳方式。

Author: ANSYS Type: White Paper Date:
Product Name: ANSYS Mechanical
Product Category: Structures


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Free ANSYS Performance Benchmark Program Supported by HPC Partners - Webinar

You know it’s time to run your ANSYS solvers on something more powerful than a workstation, but perhaps you need quantitative proof to convince your superiors that it’s worth the money. You can get that proof for free through the virtual benchmarking program that ANSYS, HPE and Intel are offering ANSYS clients. 

Join us for this program, and you can submit your own CFD or Mechanical model for free. We’ll run your model on a small HPE HPC cluster and send you the resulting time/performance comparison to compare to your workstation results. See for yourself which hardware setup gives you the best return on your ANSYS software investment — at no cost to you.

Author: ANSYS Type: Webinar Date:
Product Category: Fluids, Structures


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Making the Case for Digital Exploration - White Paper

Simulation has been established as a proven, effective means of streamlining the product development process. It allows companies to analyze product behavior earlier to evaluate more design iterations in the concept/design stage to optimize products, components and systems. However, simulation is often still siloed away in the domain of expert analysts, preventing companies from fully capitalizing on its benefits. As the product design and development landscape evolves to meet demands for more customized and complex products faster, simulation throughout the process is critical. 

Author: Digital Engineering Type: White Paper Date:
Product Name: ANSYS AIM
Product Category: Electronics, Multiphysics, Fluids, Structures


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Robopac - Case Study

Robopac is a leading designer and manufacturer of stretch wrapping machines, which use stretch film to stabilize products for shipment. The company needed to develop an innovative rotating arm machine that was more durable and less costly than its existing product to be competitive in the industry.

Author: Robopac Type: Case Study Date:
Product Name: ANSYS Mechanical, ANSYS SpaceClaim
Product Category: Structures


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Driving Innovation with Electronics - Article - ANSYS Advantage - V11 I3

Electronics are pervasive in our world today. From electric machines to high-speed electronic devices to antennas and wireless communication, the demand continues to grow. However, designing innovative products to work reliably in the real world becomes more difficult with the need to reduce energy consumption, avoid interference with other devices and decrease development time. Leading companies leverage engineering simulation to quickly bring to market pioneering products that meet and exceed expectations.

Author: ANSYS, Inc. Type: Article Date:
Product Name: ANSYS Maxwell, ANSYS Mechanical, ANSYS HPC, ANSYS HFSS, ANSYS Fluent, EMIT, ANSYS Icepak, ANSYS SIwave
Product Category: Electronics, Electronics - Cooling, Electronics - Electromechanical, Electronics - High Frequency Electromagnetics, Fluids, Structures, Electronics - Signal Integrity
Industry: Aerospace and Defense


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Decreasing Spacecraft Fuel Sloshing - Article - ANSYS Advantage - V11 I3

Fuel sloshing in the tank of a spacecraft has the potential to change the center of mass. This affects the carefully calculated maneuvers that accurately direct sensors to specific ground locations. Airbus engineers used fluid–structure interaction simulation to evaluate the ability of a proposed elastomeric membrane to minimize the effect of fuel sloshing on the center of mass in the early stages of developing a spacecraft.

Author: Airbus Defence and Space Type: Article Date:
Product Name: ANSYS Fluent, ANSYS Mechanical
Product Category: Fluids, Multiphysics, Structures
Industry: Aerospace and Defense


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Engineering E-Motors - Article - ANSYS Advantage - V11 I3

Creating an optimal custom engine for hybrid and electric vehicles requires that multiple electronic and mechanical components are designed and tested together as a system. Identifying and choosing trade-offs is difficult, but EM-motive GmbH tackled this challenge by developing a multidomain workflow incorporating ANSYS simulation and ANSYS optiSLang optimization software.

Author: EM-motive GmbH Type: Article Date:
Product Name: ANSYS Mechanical
Product Category: Structures, Platform
Industry: Automotive


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Tuning in to Antenna Design - Article - ANSYS Advantage - V11 I3

Using engineering simulation, big compute and 3-D printing, Optisys achieves orders-of-magnitude reduction in antenna size and weight while reducing development time. By leveraging ANSYS electromagnetic and structural simulation tools running on Rescale’s big compute platform, this startup’s engineers take full advantage of the design freedom offered by 3-D printing to meet radio frequency (RF) performance requirements for an integrated array antenna.

Author: Optisys, LLC Type: Article Date:
Product Name: ANSYS Mechanical, ANSYS HFSS, ANSYS HPC
Product Category: Structures, Electronics, Electronics - High Frequency Electromagnetics, High Performance Computing


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Crossed Signals - Article - ANSYS Advantage - V11 I3

Smart Modular Technologies engineers leverage the ANSYS Electronics Desktop platform to reduce the time required to perform signal integrity analysis of a high-speed printed circuit from days to hours. By using unified electromagnetic, thermal and structural simulation, engineers developed a reliable adapter.

Author: Smart Modular Technologies Type: Article Date:
Product Name: ANSYS Icepak, ANSYS Mechanical
Product Category: Electronics, Electronics - Cooling, Electronics - Signal Integrity, Structures


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深入的解决方案

跨接管是海底石油生产系统中能够将两个结构连接在一起的管道组件,例如:用于将卫星井连接到歧管、平台或其它设备。由于两个连接点需要在允许限度内(受热膨胀、水流等因素的影响)自由活动,因此设计这些极其重要的组件将会非常困难。跨接管设计人员需要评估运动、膨胀和旋转的所有可能组合,以确定哪种组合对跨接管所产生的应力最大,从而设计出能够承受这一应力的跨接管。

Technip 最近设计了四种跨接管,均可用于将管道终端(PLET)——即管道的两端连接点——连接到生产井的歧管或其它PLET。Technip 是能源行业项目管理、工程与施工领域的全球领导者。该公司设施遍布48 个国家,经营着一支专业化的管道安装与海底施工船队。

Author: ANSYS Type: White Paper Date:
Product Name: ANSYS DesignXplorer
Product Category: Structures
Sub Industry: Marine


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