supported by National Key R&D Program of China(Grant No.2021YFB0301300);National Natural Science Foundation of China(Grant No.U1811461);Zhejiang Lab(Grant No.2021KC0AB04);Major Program of Guangdong Basic and Applied Research(Grant No.2019B030302002);Program for Guangdong Introducing Innovative and Entrepreneurial Teams(Grant No.2016ZT06D211)。
High-throughput computing(HTC)is a computing paradigm that aims to accomplish jobs by easily breaking them into smaller,independent components.However,it requires a large amount of computing power for a long time.Most...
supported by the National Key R&D Program of China(2022YFE0106400 and 2017YFA0603902);the National Natural Science Foundation of China(41830964 and T2125006);the Science and Technology Innovation Project of Laoshan Laboratory(LSKJ202202200,LSKJ202202201,LSKJ202202202,LSKJ202202203 and LSKJ202202204);the Jiangsu Innovation Capacity Building Program(BM2022028)
With the aid of the newly developed’Sunway’heterogeneous-architecture supercomputer,which has world-leading HPC(high-performance computer)capability,a series of high-resolution coupled Earth system models(SW-HRESMs)...
partially supported by the National Natural Science Foundation of China under Grant No.62225206.
Unified programming models can effectively improve program portability on various heterogeneous high-performance computers.Existing unified programming models put a lot of effort to code portability but are still far ...
Project supported by the Key R&D Program of Zhejiang Province,China(No.2022C01250);the National Key R&D Program of China(No.2019YFA0709402)。
With the continuous improvement of supercomputer performance and the integration of artificial intelligence with traditional scientific computing,the scale of applications is gradually increasing,from millions to tens...
National Natural Science Foundation of China,Grant/Award Number:51979187。
Parallel computing assigns the computing model to different processors on different devices and implements it simultaneously.Accordingly,it has broad applications in the numerical simulation of geotechnical engineerin...
China’s first supercomputer capable of 100 million calculations per second was the YH-1,which was independently developed by the Institute of Computer Science at the National University of Defense Technology(NUDT)bet...
supported by National Key Research and Development Project of China(Grant No.2016YFB0200500)。
In recent years,the improvements of system performance and energy efficiency for supercomputers have faced increasing challenges,which create more intensive demands on the architecture design for realizing exascale co...
As of June 2020,Japan’s Fugaku supercomputer took the crown as the most powerful system built to date,according to TOP500,the semi-annual ranking of the 500 most powerful computer systems in the world[1,2].With a pea...
We have demonstrated the application of the world’s fastest supercomputer Fugaku located in Japan to select the COVID-19 drugs and stopping the pandemic spread. Using computer simulation out of 2128 potential drug ca...
the Department of Energy Computational Science Graduate Fellowship(Krell Institute)under grant DE-FG02-97ER25308;the Gordon and Betty Moore Foundation through Grant GBMF3834;by the Alfred P.Sloan Foundation through Grant 2013-10-27;the University of California,Berkeley.Computation and data utilized XSEDE’s Comet supercomputer(Towns et al.2014);the National Science Foundation(Grant No.ACI-1053575);the Carnes and Ormac families,as well as Michelle Oliver and the Los Alamos Public Library。
Spatial analyses involving binning often require that every bin have the same area,but this is impossible using a rectangular grid laid over the Earth or over any projection of the Earth.Discrete global grids use hexa...