NVIDIA Blog 10月29日 03:32
NVIDIA PhysicsNeMo加速工程设计,提升模拟效率
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领先的科技公司正通过NVIDIA PhysicsNeMo微服务加速其工程设计流程。该框架集成GPU加速计算、AI物理框架和数字孪生技术,能将建模和仿真工作流程的效率提升高达500倍,显著缩短创新周期。NVIDIA PhysicsNeMo赋能用户近乎实时地模拟汽车、飞机等复杂物理系统,加速产品上市。通过使用NVIDIA PhysicsNeMo预训练模型进行仿真初始化,可将GPU加速带来的50倍速度提升再扩大10倍,实现前所未有的设计探索和优化。

🚀 **显著提升工程设计效率**: NVIDIA PhysicsNeMo微服务结合GPU加速计算、AI物理框架和数字孪生技术,能够将工程设计中的建模与仿真工作流程效率提升高达500倍。这极大地缩短了产品研发周期,加速了创新进程,使得企业能够更快地将新产品推向市场。

✨ **加速复杂物理系统仿真**: NVIDIA PhysicsNeMo使企业能够近乎实时地模拟汽车、飞机、重型机械等复杂物理系统。这种强大的仿真能力不仅加速了产品上市,还允许工程师以前所未有的规模和精度自由探索突破性的设计方案,为行业带来革新。

💡 **AI物理框架的突破性应用**: 通过利用NVIDIA PhysicsNeMo预训练模型进行仿真初始化,可以显著提高初始状态的准确性,从而将GPU加速带来的50倍速度提升再扩大10倍。这解决了传统方法中计算成本高昂且迭代次数多的难题,为流体仿真等领域带来了革命性的速度和效率提升。

Leading technology companies in aerospace and automotive are accelerating their engineering design processes with the NVIDIA DoMINO NIM microservice, part of the NVIDIA PhysicsNeMo AI physics framework.

By integrating GPU-accelerated computing, NVIDIA PhysicsNeMo and interactive digital twin technologies, enterprises are accelerating their modeling and simulation workflows by up to 500x over traditional methods, speeding innovation and shortening development cycles.

NVIDIA PhysicsNeMo empowers users to accelerate simulating physical systems like automobiles, airplanes, heavy machinery and more in near real time for faster time to market.

Such simulation of complex physical systems unlocks incredible speedups and gives solutions providers the freedom to explore groundbreaking designs at previously inconceivable scales and accuracy.

Synopsys Achieves 500x Leap in Computational Engineering With NVIDIA AI Physics

Simulation software providers like Ansys, part of Synopsys, are using NVIDIA PhysicsNeMo to achieve up to 500x speedups in computational engineering.

This enormous speedup comes from multiplying the benefits of GPU acceleration by the performance and accuracy of AI physics.

The framework offers a new way to start fluid simulations with a highly accurate initial state — typically a computationally expensive task that requires numerous iterations — and with low runtime cost.

Fluid simulations can be up to 50x faster than traditional methods when performed with NVIDIA GPU-accelerated tools like Ansys Fluent. Using NVIDIA PhysicsNeMo pretrained models to initialize the simulation multiplies that GPU-powered 50x speedup by an additional 10x due to the higher accuracy of the initial solution.

Unlocking Real-Time Aerospace Design

Leading aerospace technology companies are using NVIDIA GPU-accelerated workflows and PhysicsNeMo to speed the design and optimization of advanced aircraft and automotive systems.

Northrop Grumman and Luminary Cloud are using accelerated compute and AI-driven physics to accelerate spacecraft thruster nozzle design. With Luminary’s high-speed, NVIDIA CUDA-X-accelerated computational fluid dynamics solver, Northrop generated a large training dataset to build a surrogate nozzle model on Luminary’s cloud platform, which is powered by NVIDIA PhysicsNeMo. This dataset enabled Northrop’s engineers to rapidly explore thousands of design options and identify the optimal solution

Aerospace pioneer Blue Origin is using NVIDIA PhysicsNeMo and advanced AI modeling to design next-generation space vehicles. PhysicsNeMo enables Blue Origin to use existing and augmented datasets to train models that rapidly explore potential design candidates, leading to ones that can be then validated with high-fidelity, CUDA-X-accelerated solvers.

Building on Computational Engineering Breakthroughs GPU Acceleration 

These latest AI physics breakthroughs further NVIDIA’s work in computational engineering to advance simulation with GPU acceleration.

Cadence is pushing real-time simulation in aerospace through its Cadence Fidelity computational fluid dynamics platform, using NVIDIA CUDA-X libraries.

By tapping into GPU acceleration, Cadence enables leading aerospace manufacturers to quickly build large-scale AI training datasets using its Millennium M2000 supercomputer. This lets engineers interactively explore and optimize designs, enhancing system efficiency and speeding time to market.

A global leader in energy solutions used Cadence Fidelity LES Solver and NVIDIA Grace Blackwell-accelerated simulation platforms to rapidly iterate designs and run high-fidelity multiphysics simulations. This significantly shortens design cycles and optimizes turbine performance, enabling greater efficiency, emissions management and reliability for next-generation energy systems.

Watch the GTC Washington, D.C., keynote from NVIDIA founder and CEO Jensen Huang and explore sessions.

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NVIDIA PhysicsNeMo 工程设计 GPU加速 AI物理 仿真 NVIDIA 数字孪生 计算工程 NVIDIA PhysicsNeMo Engineering Design GPU Acceleration AI Physics Simulation NVIDIA Digital Twin Computational Engineering
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