By Earll M. Murman, Saul S. Abarbanel (auth.), Earll M. Murman, Saul S. Abarbanel (eds.)
The current quantity, except for the introductory bankruptcy, involves papers brought on the workshop entitled "The effect of Supercomputers at the subsequent Decade of Computational Fluid Dynamics," The workshop, which came about in Jerusalem, Israel in the course of the week of December sixteen, 1984, used to be initiated via the nationwide technology origin of the united states (NSF), through the Ministry of technology and improvement, Israel (IMSD), and co-sponsored by means of the nationwide Aeronautics and area management (NASA), the place of work of clinical learn of the U.S. Air strength (AFOSR), Tel Aviv college and Massachusetts Institute of know-how. The introductory bankruptcy makes an attempt to summarize what transpired on the workshop. The genesis of the workshop used to be an contract among NSF and Il1S, signed within the spring of 1983, to behavior a sequence of bi-national paintings retailers and symposia. This workshop represented the 1st task spon sored below the contract. The undersigned have been chosen via their respective nationwide our bodies to behave as co-coordinators and organizers of the workshop. the 1st query that we confronted was once to make your mind up upon a subject matter. some time past few years the sphere of CFD has mushroomed and for this reason there were many conferences, symposia, workshops, congresses, etc.
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Additional resources for Progress and Supercomputing in Computational Fluid Dynamics: Proceedings of U.S.-Israel Workshop, 1984
Example text
In the current paper, a class of systems which is inexpensive enough that they may be dedicated full time to single projects is discussed to demonstrate that such systems are a useful alternative to batch supercomputers for CFD research projects. Low-cost, dedicated systems that can perform com- putations of complexity equivalent to supercomputers in reasonable time will be termed personal sized supercomputers. A research project that has successfully constructed a personal-sized supercomputer from minicomputer system components will be discussed along with the computational model and message-passing algorithm representation required for implementation on the minicomputer system and future multiprocessing systems.
EXPERIENCE WITH A PERSONAL SIZED SUPERCOMPUTER IMPLICATIONS FOR ALGORITHM DEVELOPMENT W. T. Thompkins, Jr. ABSTRACT While the use of supercomputers for computational fluid dynamics, CFD, has received considerable attention, alternatives to batch use of supercomputers for CFD have received little discussion. In the current paper, a class of systems which is inexpensive enough that they may be dedicated full time to single projects is discussed to demonstrate that such systems are a useful alternative to batch supercomputers for CFD research projects.
In the current paper, a class of systems which is inexpensive enough that they may be dedicated full time to single projects is discussed to demonstrate that such systems are a useful alternative to batch supercomputers for CFD research projects. Low-cost, dedicated systems that can perform com- putations of complexity equivalent to supercomputers in reasonable time will be termed personal sized supercomputers. A research project that has successfully constructed a personal-sized supercomputer from minicomputer system components will be discussed along with the computational model and message-passing algorithm representation required for implementation on the minicomputer system and future multiprocessing systems.