2004
DOI: 10.1007/978-3-540-27866-5_64
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Parallel and Grid Computing in 3D Analysis of Large Dimmension Structural Systems

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“…Memory and computing power requirements to efficiently manage large three-dimensional structural systems requires the utilization of high-performance computing techniques. Moreover, a large number of different structural alternatives, under the influence of multiple earthquakes, must be simulated in the design stage, in order to find that which best satisfies the design specifications within all of the economic limitations, aesthetical aspects or safety requirements [27]. However, architecture or engineering studios do not own multiprocessor resources, so, owing to the use of Grid technologies, a high number of structural alternatives can be analysed in a realistic way.…”
Section: Real Applications Ported To the Grid Under Gmartementioning
confidence: 99%
“…Memory and computing power requirements to efficiently manage large three-dimensional structural systems requires the utilization of high-performance computing techniques. Moreover, a large number of different structural alternatives, under the influence of multiple earthquakes, must be simulated in the design stage, in order to find that which best satisfies the design specifications within all of the economic limitations, aesthetical aspects or safety requirements [27]. However, architecture or engineering studios do not own multiprocessor resources, so, owing to the use of Grid technologies, a high number of structural alternatives can be analysed in a realistic way.…”
Section: Real Applications Ported To the Grid Under Gmartementioning
confidence: 99%