Recent developments in modern computational accelerators like Graphics Processing Units (GPUs) and coprocessors provide great opportunities for making scientific applications run faster than ever before. However, efficient parallelization of scientific code using new programming tools like CUDA requires a high level of expertise that is not available to many scientists. This, plus the fact that parallelized code is usually not portable to different architectures, creates major challenges for exploiting the full capabilities of modern computational accelerators. In this work, we sought to overcome these challenges by studying how to achieve both automated parallelization using OpenACC and enhanced portability using OpenCL. We applied our par...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The reliability of cardiovascular computational models depends on the accurate solution of the hemod...
<div><p>Recent developments in modern computational accelerators like Graphics Processing Units (GPU...
Recent developments in modern computational accelerators like Graphics Processing Units (GPUs) and c...
Using OpenCL, we developed a cross-platform software to compute electrical excitation conduction in ...
In this technical note we show the promise of using graphic processing units (GPUs) to accelerate si...
Cavazos, JohnAs the high-performance computing (HPC) community continues the push towards exascale ...
Large-scale simulations of wave-type equations have many industrial applications, such as in oil and...
Numerical simulations of cellular membranes are useful for both basic science and increasingly for c...
Large-scale simulations of wave-type equations have many industrial applications, such as in oil and...
Numerical simulations of cellular membranes are useful for both basic science and increasingly for c...
The modeling of the electrical activity of the heart is of great medical and scientific interest, be...
The reliability of cardiovascular computational models depends on the accurate solution of the hemod...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The reliability of cardiovascular computational models depends on the accurate solution of the hemod...
<div><p>Recent developments in modern computational accelerators like Graphics Processing Units (GPU...
Recent developments in modern computational accelerators like Graphics Processing Units (GPUs) and c...
Using OpenCL, we developed a cross-platform software to compute electrical excitation conduction in ...
In this technical note we show the promise of using graphic processing units (GPUs) to accelerate si...
Cavazos, JohnAs the high-performance computing (HPC) community continues the push towards exascale ...
Large-scale simulations of wave-type equations have many industrial applications, such as in oil and...
Numerical simulations of cellular membranes are useful for both basic science and increasingly for c...
Large-scale simulations of wave-type equations have many industrial applications, such as in oil and...
Numerical simulations of cellular membranes are useful for both basic science and increasingly for c...
The modeling of the electrical activity of the heart is of great medical and scientific interest, be...
The reliability of cardiovascular computational models depends on the accurate solution of the hemod...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The GPU performance of the adaptive wave propagation algorithm is critical to its effectiveness in s...
The reliability of cardiovascular computational models depends on the accurate solution of the hemod...