The Exascale Computing Project has concluded. This site is retained for historical references.

Podcast

Spack: The Deployment Tool for ECP’s Software Stack

On ECP's podcast, Todd Gamblin, a computer scientist in the Center for Applied Scientific Computing at Lawrence Livermore National Laboratory, shares insights about his product, called Spack, the deployment tool for ECP's software stack.

Converging and Consolidating Algorithmic and Technology Innovation in Dense Linear Algebra Software

Jakub Kurzak, a research assistant professor at the University of Tennessee’s Innovative Computing Laboratory, discusses the Software for Linear Algebra Targeting Exascale (SLATE) project on the Let's Talk Exascale podcast.

A Discussion with ECP’s Director—August 2018

Exascale Computing Project (ECP) Director Doug Kothe talks with ECP Communications Manager Mike Bernhardt about some of the project’s most recent accomplishments.

Improving the Ability to Accurately Predict the Operating Behavior of Small Modular Nuclear Reactors

Steven Hamilton, an R&D staff member in the Reactor & Nuclear Systems Division at Oak Ridge National Laboratory, is guest on the Let's Talk Exascale podcast. He leads ExaSMR, a project directed at better understanding the behavior of small modular nuclear reactors.

The Flexible Computational Science Infrastructure (FleCSI) Project: Supporting Multiphysics Application Development

The Flexible Computational Science Infrastructure (FleCSI) project provides a framework to support multiphysics application development. The leader of FleCSI, Ben Bergen of Los Alamos National Laboratory, shares insights about the project on the Let's Talk Exascale podcast.

Influencing the Evolution of the MPI Standard for Optimal Exascale Scientific Applications

The Exascale MPI project is directed at affecting the evolution of the de facto programming model for parallel computing, message passing interface, so that optimal exascale scientific applications can be developed. Hear about the project on Let's Talk Exascale.

Exascale Holds the Key to Generating Realistic and Accurate Scenarios of Future Earthquakes

Computer simulation has become an essential and core component of earthquake design for major infrastructure, but researchers need to better understand and quantify future earthquakes. Exascale computing could allow for the realization of such advances. Learn more on Let's Talk Exascale.

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