December 16, 2005
Silicon Graphics announced that Ford Motor Company has purchased technology for three of its high performance computing center locations to increase productivity in research and automotive design. SGI InfiniteStorage solutions and SGI Altix servers are being deployed for a variety of CAE, CFD, and FEA applications used by Ford engineers and scientists to refine vehicle designs in areas such as crashworthiness, combustion efficiency, and passenger comfort and safety.
In May Ford completed the purchase of the following SGI storage and compute technologies:
Research Computer Systems Department, Dearborn, Michigan. The Department, which is part of the Ford Research and Innovation Center, uses SGI InfiniteStorage Shared Filesystem CXFS to give scientists concurrent access to files on SGI Altix and SGI Origin compute platforms, eliminating the need for downloading or copying data. Ford is now exploring the possibility of adding its Sun and IBM servers to the CXFS environment. SGI Data Migration Facility (DMF) automatically migrates data from high-speed disk to nearline and tape storage.
Numerically Intensive Computing Center (NIC), Dearborn, Michigan. An SGI Altix 3700 server with a terabyte of memory and powered by 256 Intel Itanium 2 processors running the Linux operating environment is the Center's general-purpose computational workhorse for engineers running computational fluid dynamics (CFD) and finite element analysis (FEA) studies for Ford models currently under development. It provides both distributed processing and a large shared-memory SMP environment.
Numerically Intensive Computing Center, Merkenich, Germany. At this facility, an extension of the NIC, Ford engineers in Germany access a 128-processor SGI Altix 3700 server with 512GB of memory to run design studies.
"Ford's selection of SGI HPC and storage technology is a validation of our core strengths," said Brian Samuels, senior vice president, Global Sales, Service & Marketing, SGI. "Our relationship with Ford and other companies gives us the insight to develop practical solutions that contribute to customers' overall ability and power to innovate."
Large-scale, worldwide scientific initiatives rely on some cloud-based system to both coordinate efforts and manage computational efforts at peak times that cannot be contained within the combined in-house HPC resources. Last week at Google I/O, Brookhaven National Lab’s Sergey Panitkin discussed the role of the Google Compute Engine in providing computational support to ATLAS, a detector of high-energy particles at the Large Hadron Collider (LHC).
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The Xeon Phi coprocessor might be the new kid on the high performance block, but out of all first-rate kickers of the Intel tires, the Texas Advanced Computing Center (TACC) got the first real jab with its new top ten Stampede system.We talk with the center's Karl Schultz about the challenges of programming for Phi--but more specifically, the optimization...
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Although Horst Simon was named Deputy Director of Lawrence Berkeley National Laboratory, he maintains his strong ties to the scientific computing community as an editor of the TOP500 list and as an invited speaker at conferences.
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May 16, 2013 |
When it comes to cloud, long distances mean unacceptably high latencies. Researchers from the University of Bonn in Germany examined those latency issues of doing CFD modeling in the cloud by utilizing a common CFD and its utilization in HPC instance types including both CPU and GPU cores of Amazon EC2.
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May 15, 2013 |
Supercomputers at the Department of Energy’s National Energy Research Scientific Computing Center (NERSC) have worked on important computational problems such as collapse of the atomic state, the optimization of chemical catalysts, and now modeling popping bubbles.
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May 10, 2013 |
Program provides cash awards up to $10,000 for the best open-source end-user applications deployed on 100G network.
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May 09, 2013 |
The Japanese government has revealed its plans to best its previous K Computer efforts with what they hope will be the first exascale system...
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05/10/2013 | Cleversafe, Cray, DDN, NetApp, & Panasas | From Wall Street to Hollywood, drug discovery to homeland security, companies and organizations of all sizes and stripes are coming face to face with the challenges – and opportunities – afforded by Big Data. Before anyone can utilize these extraordinary data repositories, however, they must first harness and manage their data stores, and do so utilizing technologies that underscore affordability, security, and scalability.
04/15/2013 | Bull | “50% of HPC users say their largest jobs scale to 120 cores or less.” How about yours? Are your codes ready to take advantage of today’s and tomorrow’s ultra-parallel HPC systems? Download this White Paper by Analysts Intersect360 Research to see what Bull and Intel’s Center for Excellence in Parallel Programming can do for your codes.
In this demonstration of SGI DMF ZeroWatt disk solution, Dr. Eng Lim Goh, SGI CTO, discusses a function of SGI DMF software to reduce costs and power consumption in an exascale (Big Data) storage datacenter.
The Cray CS300-AC cluster supercomputer offers energy efficient, air-cooled design based on modular, industry-standard platforms featuring the latest processor and network technologies and a wide range of datacenter cooling requirements.