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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⚙️ 44-Core Elite HPC for Advanced CFD Applications
In the world of computational fluid dynamics (CFD), speed, precision, and scalability determine how quickly innovation moves from concept to reality. The 44-Core Elite HPC system delivers uncompromising performance for engineers and researchers tackling the most computationally demanding CFD and multiphysics simulations.
Featuring dual Intel® Xeon® E5-2699 v4 processors, this powerhouse offers 44 physical cores (88 threads) running at 2.20GHz, providing the parallel computing capability required for aerodynamics, thermal-fluid analysis, combustion modeling, and environmental simulation at full scale.
💻 High-Performance Configuration
Key Specifications
Processors: Dual Intel® Xeon® E5-2699 v4 (44 Cores, 88 Threads, 2.20GHz)
Architecture: Intel Broadwell-EP
Optimization: CFD, FEA, and Multiphysics Simulation Workloads
Performance Focus: Multi-solver and Multi-simulation Parallelism
This system’s Broadwell-EP architecture provides the foundation for exceptional parallel efficiency, with high memory bandwidth and I/O performance optimized for large-scale simulation datasets. It’s engineered for maximum solver scalability across ANSYS Fluent, OpenFOAM, and similar HPC-driven environments.
🚀 Built for Advanced CFD and Multiphysics Workloads
The 44-Core Elite HPC is designed to dominate CFD workloads that require massive parallel processing power, enabling engineers to run complex models with extreme precision and reduced turnaround time.
It’s perfectly suited for:
Full-vehicle aerodynamics in automotive and aerospace design
Thermal management of large electronic systems
Detailed combustion simulations with comprehensive chemical reaction models
Large-scale environmental and airflow modeling
By distributing solver workloads across 44 cores, engineers can run multiple concurrent simulations or scale single, high-resolution models for faster convergence and improved accuracy.
🧠 Exceptional Parallel Processing Power
Each Xeon E5-2699 v4 processor delivers 22 cores of compute power, optimized for shared-memory parallelism and high-thread workloads. Together, they unlock 88-thread processing, providing exceptional scalability for multi-solver execution and parallel computation.
Key Advantages
Superior solver scaling for ANSYS Fluent and similar CFD solvers
Reduced runtime for transient and multiphase models
Improved throughput for high-cell-count simulations
Enhanced stability during continuous 24/7 HPC operation
The system’s NUMA-optimized memory management ensures efficient data distribution between cores, eliminating computational bottlenecks and maintaining consistent performance across extended simulation cycles.
💼 Ideal for Engineering, Research, and Industrial Applications
The 44-Core Elite HPC is built for professionals working on complex, data-intensive projects across engineering disciplines. Whether running aerodynamic optimization, thermal-fluid coupling, or combustion dynamics, this system provides the computational foundation for high-fidelity modeling and analysis.
Perfect for:
Automotive and aerospace simulation teams
Electronic cooling and heat transfer studies
Combustion and reactive flow researchers
Environmental and energy system modelers
With its server-grade reliability, ECC memory support, and redundant I/O performance, this HPC configuration ensures consistent uptime and data integrity even during the most demanding long-term runs.
🌐 Scalability for Future CFD Challenges
The Broadwell-EP platform is renowned for its scalability, offering exceptional performance on parallelized CFD workloads and data-heavy simulations. Its enhanced PCIe bandwidth supports GPU acceleration, while its multi-socket design ensures room for future expansion.
Technical Advantages:
44 cores / 88 threads of compute power
Optimized cache hierarchy for solver efficiency
High I/O throughput for large mesh and result files
Flexible architecture for hybrid CPU-GPU CFD workflows
This scalability ensures that the 44-Core Elite HPC remains a future-ready investment for evolving simulation technologies and ever-larger CFD datasets.
🏁 Final Thoughts
The 44-Core Elite HPC for Advanced CFD Applications represents a perfect balance of computational power, scalability, and reliability. With dual Intel Xeon E5-2699 v4 processors and the Broadwell-EP architecture, it provides engineers with the performance they need to handle the world’s most complex aerodynamic, thermal, and reactive flow simulations.
Whether you’re designing aircraft, optimizing cooling systems, or modeling combustion efficiency, this system enables faster iteration, deeper analysis, and greater productivity across all stages of CFD development.
Accelerate your simulation capabilities.
👉 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.