| L. C. Young and S. E. Zarantonello. High performance vector processing in reservoir simulation. In Proceedings of Supercomputing '91, pages 304--315, November 1991. |
....to determine the human DNA sequence of 3 billion base pairs. Computational fluid dynamics [Has87, MK91, SBGM91] Conjugate gradient methods [Chr91] Thanks to Cindy Phillips. 1.1. Who needs virtual memory for data parallel computing 11 . Genetic algorithms [Man92, MF92] Geophysics [MS91, Wil91, YZ91]. Seismic problems are highly parallel and have huge datasets. Highnam [Hig92] and Seale [Sea92] report datasets well into the gigabytes, some over 30 gigabytes. Intelligence. According to Myers and Williams [MW91] Mass storage currently implies the storage of data in excess of 10 bits ....
L. C. Young and S. E. Zarantonello. High performance vector processing in reservoir simulation. In Proceedings of Supercomputing '91, pages 304--315, November 1991.
....one might run benchmarks like the Perfect Club [Ber89] suite or Linpack [Don93] and then summarize overall performance in MFLOPS or total elapsed time. Many researchers have looked at the performance of engineering and scientific codes running on vector supercomputers [IMS88, NPR88, SW88, YZ91, SWL 92] While this method certainly provides some interesting information for the application user, it does not provide direction to the architect or designer of vector machines nor does it provide any clear reasons why one program may perform much better or worse than another. Before ....
L. C. Young and S. E. Zarantonello. High-Performance Vector Processing in Reservoir Simulation. In Proceedings of Supercomputing'91, pages 304--315, Albuquerque, New Mexico, November 1991. IEEE Computer Society Press.
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L. C. Young and S. E. Zarantonello. High performance vector processing in reservoir simulation. In Proceedings of Supercomputing '91, pages 304--315, November 1991.
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