HPC for ANSYS Fluent
Power your ANSYS Fluent CFD simulations with dedicated ANSYS HPC. Get essential processing, memory, and storage for CFD High-Performance Computing (HPC) without buying the hardware.
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⚙️ 36-Core Powerhouse for Professional CFD Applications
When simulation speed and precision define engineering success, the 36-Core Powerhouse delivers. Designed for professionals working in computational fluid dynamics (CFD), engineering design, and scientific research, this system provides the performance and scalability to handle even the most complex fluid dynamics simulations with ease.
Featuring dual Intel® Xeon® E5-2696 v4 processors, this configuration offers 36 physical cores (72 threads) running at 2.20GHz, providing outstanding parallel performance for ANSYS Fluent, OpenFOAM, and other solver-intensive applications. Built on Intel’s Broadwell-EP architecture, it combines balanced core count, clock speed, and I/O throughput—ensuring stable, high-efficiency operation for both multiphysics and mixed engineering workloads.
💻 High-Performance Configuration
Key Specifications
CPU: Dual Intel® Xeon® E5-2696 v4 (36 Cores, 72 Threads, 2.20GHz)
Architecture: Intel Broadwell-EP
Optimization: CFD, FEA, and Multiphysics Simulation
Performance Focus: Balanced parallel efficiency and per-core speed
The Broadwell-EP platform is engineered for demanding, parallelized CFD environments. Its high core density and wide memory bandwidth ensure exceptional throughput, whether processing steady-state flow simulations, transient turbulence models, or multi-domain coupling analyses.
🚀 Built for Advanced CFD Performance
The 36-Core Powerhouse system excels across industries where simulation-driven engineering is key. It delivers the raw compute performance required for large and complex simulation models, shortening turnaround times while maintaining numerical precision.
It’s ideal for:
Automotive aerodynamics and design optimization
Aerospace component analysis
HVAC airflow and thermal comfort modeling
Combustion and reactor flow simulations
Batch optimization and research computation
By leveraging 72 simultaneous processing threads, engineers can perform multiple concurrent simulations or accelerate single high-resolution CFD cases, drastically improving project throughput.
🧠 Balanced Architecture for Multiphysics Workloads
Each Intel Xeon E5-2696 v4 processor provides 18 cores and 45MB of cache, ensuring smooth performance across solver execution, meshing, and post-processing. This balanced architecture supports both multi-threaded parallel solvers and single-threaded engineering applications, offering a complete solution for diverse simulation workflows.
Key Advantages
Superior solver scalability for parallelized CFD applications
Excellent per-core frequency performance for pre/post tasks
Stable long-duration runtime for transient simulations
Optimized memory performance and I/O efficiency
The Broadwell-EP architecture is purpose-built for sustained computational workloads, offering energy efficiency and 24/7 reliability for enterprise or academic use.
💼 Ideal for Engineers, Researchers, and Industry Teams
The 36-Core Powerhouse is the perfect system for:
Automotive and aerospace engineering teams seeking faster design iteration
HVAC system designers optimizing airflow and energy efficiency
Process and chemical engineers modeling reactors and mixing systems
Research laboratories performing CFD-based analysis and teaching
With ECC memory support, redundant I/O, and server-grade reliability, this workstation delivers consistent uptime and data integrity for long-term simulation campaigns.
🌐 Scalable and Future-Ready
Built on the Broadwell-EP architecture, this platform scales effortlessly for expanding simulation requirements. It supports large memory configurations, GPU acceleration, and multi-node clustering, ensuring it grows alongside your computational needs.
Technical Highlights
36 cores / 72 threads of parallel compute performance
Enhanced cache hierarchy for fast CFD solver access
High-speed PCIe connectivity for GPU or storage upgrades
Energy-efficient design for continuous professional workloads
This scalability ensures longevity, making the 36-Core Powerhouse a smart, future-proof investment for advanced simulation professionals.
🏁 Final Thoughts
The 36-Core Powerhouse for Professional CFD Applications combines core density, clock speed balance, and scalable architecture to deliver consistent performance for the most demanding engineering challenges. Powered by dual Intel Xeon E5-2696 v4 processors, it enables faster solver convergence, more iterations per project, and higher simulation accuracy.
Whether you’re running aerodynamic models, thermal-fluid analyses, or chemical process simulations, this system provides the dependable computational foundation needed to achieve breakthrough engineering results.
Enhance your CFD workflow today.
👉 Contact MR CFD
Top performance with an excellent connection.
Run your CFD simulations, as fast as possible
With MR CFD's top-of-the-line ANSYS HPC servers, you can run your CFD simulations faster and more efficiently.
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Powerful Multi-Core Processing
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Access our state-of-the-art CPU servers with the latest Intel or AMD processors that are optimized for parallel computational workloads.
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High-Speed Internet
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Benefit from high-performance Ethernet connections that ensure seamless data transfer between you and your CFD simulations.
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Optimized Software Environment
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Optimized for popular CFD software including ANSYS Fluent, OpenFOAM, COMSOL, and more. Our systems are performance-tuned for maximum efficiency.
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Flexible Rental Options
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You can rent monthly, evey 3 months, every 6 months, or yearly. Choose from a variety of flexible rental plans to match your project timeline and budget.
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Dedicated Technical Support
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Our engineering team with CFD expertise provides technical assistance to help optimize your simulation setup, troubleshoot issues, and maximize performance on our infrastructure.
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Secure Data Environment
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Your proprietary simulation data remain protected with enterprise-grade security protocols, encrypted storage, and isolated computing environments.