Title: Challenge: Computing for the Life Sciences
1Challenge Computing for the Life Sciences
- Gaining insight into protein science and protein
folding mechanisms - Simulating (thousands of) macromolecules
- Silicon cells
Interdisciplinary Mathematics, Physics,
Chemistry, Computer Science, Biology
Method molecular dynamics integrating Newtons
law Fm.a for all atoms where F depends on all
atoms! Initialization with the help of random
numbers
2Protein folding
http//www.research.ibm.com/bluegene/ http//resea
rchweb.watson.ibm.com/journal/sj/402/allen.html
One year 3 107 seconds Clock cycle 10-9 s Three
years 106 processors 3 3 107 106 109
1023 machine instructions
3Supercomputers
- Roadrunner1026 Teraflop/s (1012 floating point
operations / s) DOE Los Alamos - Uses advanced versions of the processor in the
Sony PlayStation 3 - Vgl. Huygens (Sara 11.9.08) 60 Tflop peak (rank
40)http//www.sara.nl/news/recent/opening_huygen
s/
4Blue Gene L/P
Blue Gene L max 478 Teraflops (1012 floating
point operations / s) fastest supercomputer till
june 2008not yet fast enough Blue Gene P up to
262,144 quad processor nodes, projected 3.56
Peta (1015) flops wordt gebruikt voor de
grootste radiotelescoop http//www.lofar.nl
5Dedicated chip
- Voor Moleculaire Dynamica MDGrape-3 281
Teraflops in 2007, 20 berekeningen parallel op
chiphttp//mdgrape.gsc.riken.jp - slechts 0.3 Watt/gigaflopvergelijk 14
Watt/gigaflop Pentium 4