Exascale Scientific Applications | Agenda Bookshop Skip to content
Abhinav Vishnu
Address Space
Age Group_Uncategorized
Age Group_Uncategorized
Alex Aiken
Allen D. Malony
Allison H. Baker
Amrita Mathuriya
Andrey Ovsyannikov
Ankit Bhagatwala
Anouar Benali
Arithmetic Intensities
automatic-update
Aydin Buluc
Azamat Mametjanov
B01=Katerina B. Antypas
B01=Timothy J. Williams
B01=Tjerk P. Straatsma
Beverly A. Sanders
Bilge Acun
Bnt Jo
Brian Dobbins
Brian Van Straalen
Bruce Palmer
Cameron Smith
Category1=Non-Fiction
Category=PH
Category=UB
Category=UKC
Category=UYF
Choong-Seock Chang
Chris Carothers
Christopher Kerr
COP=United Kingdom
Cray XC30
Daniel Peter
Daniel Rokhsar
Daniel T. Graves
Darren J. Kerbyson
David DelSignore
David Luet
David M. Ceperley
David Trebotich
Delivery_Delivery within 10-20 working days
Dense Linear Algebra
Derek Vigil-Fowler
Dimitri Komatitsch
Dirk Pleiter
Distributed Hash Table
Dmitry I. Lyakh
Dong H. Ahn
Dynamic Load Balancing
Ebru Bozdağ
Edoardo Aprà
Eduardo D'Azevedo
Eisung Yoon
Elliott Slaughter
Energy Research Scientific Computing Center
eq_computing
eq_isMigrated=2
eq_non-fiction
eq_science
Eric J. Bylaska
Evangelos Georganas
Exascale Systems
Execution Time
Felipe H. da Jornada
Frank T. Winter
Giulio Borghesi
Heike Jagode
Hemanth Kolla
Henri Vincenti
high performance computing
Holger Brunst
HPC System
Hybrid MPI
IBM Blue Gene
Intel Xeon Phi
Jack Deslippe
Jacqueline Chen
James C. Phillips
James Smith
Jaron T. Krogel
Jason Byrd
Jean-Luc Vay
Jed Brown
Jeff Daily
Jeff R. Hammond
Jeongnim Kim
Jeroen Tromp
Jianying Lang
John M. Dennis
John Mellor-Crummey
Jong Choi
Joseph C. Oefelein
Judith Hill
Kalyan Kumaran
Karol Kowalski
Katherine Yelick
Kenneth E. Jansen
Kevin Harms
Kevin J. Barker
Kevin Paul
KNL Node
Language_English
Laxmikant Kale
Leonid Oliker
Lion Krischer
Luke Shulenburger
Manish Parashar
Marcel Bornemann
Mark Dewing
Mark S. Shephard
Mark Taylor
Markus Eisenbach
Mathias Jacquelin
Mathieu Lobet
Matthew R. Norman
Matthieu Lefebvre
Michael Bauer
Michael Klemm
Michel Rasquin
Miguel A. Morales
MPI Implementation
MPI Rank
MPI Task
National Energy Research Scientific Computing
Norbert Podhorszki
Norm M. Tubman
NVIDIA GPUs
O. E. Bronson Messer
Oak Ridge Leadership Computing Facility
OpenMP Thread
PA=Available
Patrick S. McCormick
Patrick Worley
Paul F. Baumeister
Paul R. C. Kent
performance analysis
Philip Carns
Pic Code
portability
Power Consumption
Price_€100 and above
programming
PS=Active
Raghu Kumar
Ralph Castain
Ramanan Sankaran
Ray Loy
Remi Lehe
Ria Broer
Richard Mills
Rob Egan
Robert G. Edwards
Robert Hager
Rodney Bartlett
Ronak Buch
Ronny Tschüter
Rudolf Zeller
Sameer Shende
scalability
Scott Klasky
Scott Parker
Sean Treichler
Seung-Hoe Ku
Sheri Mickelson
softlaunch
Stephane Ethier
Stephen Abbott
Steven G. Louie
Steven Hofmeyr
Strong Scaling
supercomputing
Taylor Barnes
Thomas Papatheodore
Thorsten Kurth
Tuomas Koskela
Tyler McDaniel
Wayne Joubert
Wenjie Lei
Wibe A. de Jong
William Tang
Wim Nieuwpoort
Wonchan Lee
Xeon Phi
Yang Wang
Yangkang Chen
Ye Luo
Ying Wai Li
Youngsung Kim
Youyi Ruan
Zhihong Lin

Exascale Scientific Applications

English

From the Foreword:

"The authors of the chapters in this book are the pioneers who will explore the exascale frontier. The path forward will not be easy... These authors, along with their colleagues who will produce these powerful computer systems will, with dedication and determination, overcome the scalability problem, discover the new algorithms needed to achieve exascale performance for the broad range of applications that they represent, and create the new tools needed to support the development of scalable and portable science and engineering applications. Although the focus is on exascale computers, the benefits will permeate all of science and engineering because the technologies developed for the exascale computers of tomorrow will also power the petascale servers and terascale workstations of tomorrow. These affordable computing capabilities will empower scientists and engineers everywhere."
— Thom H. Dunning, Jr., Pacific Northwest National Laboratory and University of Washington, Seattle, Washington, USA

"This comprehensive summary of applications targeting Exascale at the three DoE labs is a must read."
— Rio Yokota, Tokyo Institute of Technology, Tokyo, Japan

"Numerical simulation is now a need in many fields of science, technology, and industry. The complexity of the simulated systems coupled with the massive use of data makes HPC essential to move towards predictive simulations. Advances in computer architecture have so far permitted scientific advances, but at the cost of continually adapting algorithms and applications. The next technological breakthroughs force us to rethink the applications by taking energy consumption into account. These profound modifications require not only anticipation and sharing but also a paradigm shift in application design to ensure the sustainability of developments by guaranteeing a certain independence of the applications to the profound modifications of the architectures: it is the passage from optimal performance to the portability of performance. It is the challenge of this book to demonstrate by example the approach that one can adopt for the development of applications offering performance portability in spite of the profound changes of the computing architectures."
— Christophe Calvin, CEA, Fundamental Research Division, Saclay, France

"Three editors, one from each of the High Performance Computer Centers at Lawrence Berkeley, Argonne, and Oak Ridge National Laboratories, have compiled a very useful set of chapters aimed at describing software developments for the next generation exa-scale computers. Such a book is needed for scientists and engineers to see where the field is going and how they will be able to exploit such architectures for their own work. The book will also benefit students as it provides insights into how to develop software for such computer architectures. Overall, this book fills an important need in showing how to design and implement algorithms for exa-scale architectures which are heterogeneous and have unique memory systems. The book discusses issues with developing user codes for these architectures and how to address these issues including actual coding examples.’
— Dr. David A. Dixon, Robert Ramsay Chair, The University of Alabama, Tuscaloosa, Alabama, USA

See more
Current price €132.99
Original price €143.99
Save 8%
Abhinav VishnuAddress SpaceAge Group_UncategorizedAlex AikenAllen D. MalonyAllison H. BakerAmrita MathuriyaAndrey OvsyannikovAnkit BhagatwalaAnouar BenaliArithmetic Intensitiesautomatic-updateAydin BulucAzamat MametjanovB01=Katerina B. AntypasB01=Timothy J. WilliamsB01=Tjerk P. StraatsmaBeverly A. SandersBilge AcunBnt JoBrian DobbinsBrian Van StraalenBruce PalmerCameron SmithCategory1=Non-FictionCategory=PHCategory=UBCategory=UKCCategory=UYFChoong-Seock ChangChris CarothersChristopher KerrCOP=United KingdomCray XC30Daniel PeterDaniel RokhsarDaniel T. GravesDarren J. KerbysonDavid DelSignoreDavid LuetDavid M. CeperleyDavid TrebotichDelivery_Delivery within 10-20 working daysDense Linear AlgebraDerek Vigil-FowlerDimitri KomatitschDirk PleiterDistributed Hash TableDmitry I. LyakhDong H. AhnDynamic Load BalancingEbru BozdağEdoardo ApràEduardo D'AzevedoEisung YoonElliott SlaughterEnergy Research Scientific Computing Centereq_computingeq_isMigrated=2eq_non-fictioneq_scienceEric J. BylaskaEvangelos GeorganasExascale SystemsExecution TimeFelipe H. da JornadaFrank T. WinterGiulio BorghesiHeike JagodeHemanth KollaHenri Vincentihigh performance computingHolger BrunstHPC SystemHybrid MPIIBM Blue GeneIntel Xeon PhiJack DeslippeJacqueline ChenJames C. PhillipsJames SmithJaron T. KrogelJason ByrdJean-Luc VayJed BrownJeff DailyJeff R. HammondJeongnim KimJeroen TrompJianying LangJohn M. DennisJohn Mellor-CrummeyJong ChoiJoseph C. OefeleinJudith HillKalyan KumaranKarol KowalskiKatherine YelickKenneth E. JansenKevin HarmsKevin J. BarkerKevin PaulKNL NodeLanguage_EnglishLaxmikant KaleLeonid OlikerLion KrischerLuke ShulenburgerManish ParasharMarcel BornemannMark DewingMark S. ShephardMark TaylorMarkus EisenbachMathias JacquelinMathieu LobetMatthew R. NormanMatthieu LefebvreMichael BauerMichael KlemmMichel RasquinMiguel A. MoralesMPI ImplementationMPI RankMPI TaskNational Energy Research Scientific ComputingNorbert PodhorszkiNorm M. TubmanNVIDIA GPUsO. E. Bronson MesserOak Ridge Leadership Computing FacilityOpenMP ThreadPA=AvailablePatrick S. McCormickPatrick WorleyPaul F. BaumeisterPaul R. C. Kentperformance analysisPhilip CarnsPic CodeportabilityPower ConsumptionPrice_€100 and aboveprogrammingPS=ActiveRaghu KumarRalph CastainRamanan SankaranRay LoyRemi LeheRia BroerRichard MillsRob EganRobert G. EdwardsRobert HagerRodney BartlettRonak BuchRonny TschüterRudolf ZellerSameer ShendescalabilityScott KlaskyScott ParkerSean TreichlerSeung-Hoe KuSheri MickelsonsoftlaunchStephane EthierStephen AbbottSteven G. LouieSteven HofmeyrStrong ScalingsupercomputingTaylor BarnesThomas PapatheodoreThorsten KurthTuomas KoskelaTyler McDanielWayne JoubertWenjie LeiWibe A. de JongWilliam TangWim NieuwpoortWonchan LeeXeon PhiYang WangYangkang ChenYe LuoYing Wai LiYoungsung KimYouyi RuanZhihong Lin
Delivery/Collection within 10-20 working days
Product Details
  • Weight: 1247g
  • Dimensions: 178 x 254mm
  • Publication Date: 09 Nov 2017
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Language: English
  • ISBN13: 9781138197541

About

Tjerk P. Straatsma, Katerina B. Antypas, Timothy J. Williams

Customer Reviews

Be the first to write a review
0%
(0)
0%
(0)
0%
(0)
0%
(0)
0%
(0)
We use cookies to ensure that we give you the best experience on our website. If you continue we'll assume that you are understand this. Learn more
Accept