BEGIN:VCALENDAR PRODID:-//Microsoft Corporation//Outlook MIMEDIR//EN VERSION:1.0 BEGIN:VEVENT DTSTART:20121115T231500Z DTEND:20121116T000000Z LOCATION:Ballroom-EFGH DESCRIPTION;ENCODING=QUOTED-PRINTABLE:ABSTRACT: With tremendous speed-up of high-end computers, applications of fully-resolved Large Eddy Simulation (FRLES) is becoming feasible for engineering problems. FRLES directly computes all eddies responsible for the production of turbulence and thus, is expected to give as accurate results as Direct Numerical Simulation (DNS) does with by a factor of several tens smaller computational cost than that of DNS. The authors have developed flow and acoustical solvers capable of performing very large-scale engineering applications. We have already achieved a sustained performance of 8 percent to the theoretical processor performance and a parallel scalability more than 90 percent for 524,288 cores. The first results of very large-scale fluid-flow and aeroacoustical simulations of industrial problems using several tens of billion grids will be presented. SUMMARY:Very Large-Scale Fluid-Flow and Aeroacoustical Simulations for Engineering Applications Performed on Supercomputer K PRIORITY:3 END:VEVENT END:VCALENDAR