The article presents the comparison of the implementation of the inverse problem in geoelectricalmethods in two different parallel computational environments. Combination of MonteCarlo method and Multistart algorithm was applied in the inversion process. Parallelizationwas done by fine grain decomposition. Execution time, speed-up and efficiency received forparallel algorithms in both computational environments were presented and analyzed
In this paper we present grid methods which we have developed for solving direct and inverse problem...
Understanding the earth model from real-world measurements is critical in geophysical explorations. ...
High performance computing is absolutely necessary for large-scale geophysical simulations. In order...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectrical me...
Proceedings of: Second International Workshop on Sustainable Ultrascale Computing Systems (NESUS 201...
The paper describes a method of gravity data inversion, which is based on parallel algorithms. The c...
Proceedings of: Second International Workshop on Sustainable Ultrascale Computing Systems (NESUS 201...
Proceedings of: Second International Workshop on Sustainable Ultrascale Computing Systems (NESUS 201...
In this paper we present grid methods which we have developed for solving direct and inverse problem...
Understanding the earth model from real-world measurements is critical in geophysical explorations. ...
High performance computing is absolutely necessary for large-scale geophysical simulations. In order...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectricalmet...
The article presents the comparison of the implementation of the inverse problem in geoelectrical me...
Proceedings of: Second International Workshop on Sustainable Ultrascale Computing Systems (NESUS 201...
The paper describes a method of gravity data inversion, which is based on parallel algorithms. The c...
Proceedings of: Second International Workshop on Sustainable Ultrascale Computing Systems (NESUS 201...
Proceedings of: Second International Workshop on Sustainable Ultrascale Computing Systems (NESUS 201...
In this paper we present grid methods which we have developed for solving direct and inverse problem...
Understanding the earth model from real-world measurements is critical in geophysical explorations. ...
High performance computing is absolutely necessary for large-scale geophysical simulations. In order...