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About Turing

Housed in the Massachusetts Green High Performance Computing Center, MGHPCC, Turing is the primary research cluster for computational science across WPI, serving over 75 different faculty members across 14 departments.

Turing was initially acquired through an NSF MRI grant (DMS-1337943), and consisted of the head node and 24 compute nodes connected with a high-speed Infiniband interconnect. The main system remains in place but has undergone a complete management and software overhaul, and numerous expansions since July 2016.

Examples of departments using Turing for research:

  • Bioinformatics & Computational Biology
  • Biology
  • Biomedical Engineering
  • Civil Engineering
  • Chemical Engineering
  • Chemistry & Biochemistry
  • Computer Science
  • Data Science
  • Electrical & Computer Engineering
  • Fire Protection Engineering
  • Mathematics
  • Mechanical and Materials Engineering
  • Physics
  • Robotics Engineering

Examples of software accessible on Turing include:

  • Languages: Python, MATLAB, R, Java
  • Compilers: GCC, LLVM, Intel, CUDA
  • Proprietary Simulation: Ansys/Fluent, COMSOL, Abaqus, VASP
  • Open Source Apps: OpenFOAM, NWChem, FDS, LAMMPS
  • AI Libraries: Keras, Tensorflow
  • Libraries: BLAS, Petsc, deal.II

Turing is managed using Bright Cluster Manager, and is running Ubuntu 20.04.

Hardware Summary

Turing consists of a 4-node hyperconverged head that controls over 80 compute nodes.

Total CPU/RAM/GPU counts across all compute nodes are as follows:

CPU RAM GPU
9732 68.3 TB 168

The number of GPUs available across the compute nodes are:

GPU Type A30 L40S A100 H100 H200 RTX6000B
Count 36 48 20 8 16 40
Per Node 4 4 4 4 8 2
VRAM per GPU 24G 48G 80G 80G 141G 96G

Cluster Network Connections

The cluster uses an internal 100 Gb Ethernet network for low-latency message passing and storage access.

The cluster is connected to the WPI network through eight aggregated 10 Gb Ethernet connections.

Storage

The Turing cluster has a 560 TB high-performance VAST scale-out storage system, providing home directories and scratch space. Additionally, VAST provides hourly snapshots of the home directories, enabling self-service file recovery.