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Altair® Flux® 应用

Flux 广泛应用于运输、电气设备和消费品等多个行业,用于开发具有更高连接水平且更高效的电气系统。

Flux 可进行广泛的电磁、电气和热仿真,并与 Altair 全球解决方案紧密相连,用于多学科设计探索和优化。 它赋予发明者力量,帮助他们加快设备的电气化进程,同时提供更高水平的性能,缩短产品上市时间,开发具有成本效益的解决方案,并提供高效可靠的设计。

了解更多关于 Flux 的信息

旋转电机多物理场优化

无论在哪个行业,高性能电机的设计都是一项复杂的工作。 Altair® FluxMotor®,Flux 和 Altair 套件为工程师提供了一种稳健的解决方案,可检查相互冲突的限制因素,如效率、控制、温度、重量、尺寸和成本。

为了更快探索更多概念、更好地了解其设计并提高性能,Altair 的工作流可引导电机设计师完成高效的仿真驱动设计流程。 这款分析与优化解决方案支持多学科团队合作,并能缩短设计时间。

更多多物理场应用

智能传感器设计

随着大多数行业着眼于开发更智能的连接设备,使用 Flux 开发合适的传感技术可以准确预测检测范围、测量误差或操作条件。

执行器优化

电磁驱动被广泛应用于众多工业和无线设备的控制和安全领域。 Flux 可以优化速度、转矩或能耗方面的性能,并集成至全局系统中,以进行高级控制和定位分析。

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中高压电网设备设计

为了更可靠、更高效、更灵活地供电,必须对电网基础设施进行现代化改造。 电力变压器、断路器和绝缘子等关键高压设备故障对成本的影响非常大。

Flux 可确保进行稳健的电气和热分析,以实现最高效率水平、减少损耗并优化全局性能。

随着全球趋势发展,这些设备的运行情况已接近其性能极限,Altair 的解决方案囊括了结构限制,可全面且准确地评估故障风险。

无线充电分析

随着各种无线应用的蓬勃发展,人们对便捷、高速的非接触式汽车充电的需求越来越大。

在将创新产品推向市场的竞争中,Flux 提供了一个强大的解决方案,不但能够优化能量转移,同时还考虑了各种约束条件,如损耗、系统失调、辐射场、干扰和热问题。

阅读 Gulplug 案例

热处理过程优化

热处理是一种工业、热和金属加工过程,适用于各种目的,如焊接、硬化或密封。

从电源配置到最佳感应器形状和强制冷却选项预测,Flux 可仿真整个过程以优化加热和强制冷却阶段。 工程师可在不影响零件的情况下获得最有效的热处理,同时也降低了重复性高电流消耗所带来的能源成本。

特色资源

Electric Motors Multidisciplinary Optimization Platform

The design of a high-performance e-Motor is a complex undertaking. Engineers have conflicting constraints to consider including efficiency, temperature, weight, size and cost. To explore more ideas, better understand their designs and improve performance, Altair HyperWorks™ has a workflow to guide motor designers through an efficient process of Simulation-Driven Design. This analysis and optimization solution supports multi-disciplinary teamwork and reduces design times.

E-motor Design using Multiphysics Optimization

Today, an e-motor cannot be developed just by looking at the motor as an isolated unit; tight requirements concerning the integration into both the complete electric or hybrid drivetrain system and perceived quality must be met. Multi-disciplinary and multiphysics optimization methodologies make it possible to design an e-motor for multiple, completely different design requirements simultaneously, thus avoiding a serial development strategy, where a larger number of design iterations are necessary to fulfill all requirements and unfavorable design compromises need to be accepted.

The project described in this paper is focused on multiphysics design of an e-motor for Porsche AG. Altair’s simulation-driven approach supports the development of e-motors using a series of optimization intensive phases building on each other. This technical paper offers insights on how the advanced drivetrain development team at Porsche AG, together with Altair, has approached the challenge of improving the total design balance in e-motor development.

白皮书

Altair FluxMotor - Thermal Design, Test, and NVH Evaluation

The latest release of FluxMotor, Altair's software product for electric machines design, adds several functionalities in the area of thermal design, test, and NVH evaluation. This short video illustrates some of the major updates.

Power Transformer under Short-circuit Fault Conditions: Multiphysics Approach to Evaluate the Robustness

Transformers’ windings experience mechanical loads from electromagnetic forces due to the currents they carry. Power transformers can suffer from high sudden short-circuit currents. These short-circuit currents are a significant threat, not only from an electrical but also from the structural integrity point of view. In this paper, coupled electromagnetic and structural mechanics simulations are carried out to evaluate short-circuit fault risks in a comprehensive and accurate way.

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