DocumentCode :
695074
Title :
Towards Building Scalable Grid Computing Environments for Reservoir Simulation
Author :
Al-Shaikh, Raed ; Al-Saadoon, Omar ; Hayder, M. Ehtesham ; Baddourah, Majdi
fYear :
2013
fDate :
10-13 Sept. 2013
Firstpage :
573
Lastpage :
578
Abstract :
Standard high performance clusters (HPC) are being extensively used for solving computationally intensive problems in various scientific fields, one of which is the field of reservoir simulation. In our work, we expand the conventional HPC systems to run larger reservoir simulations on a heterogeneous grid of HPCs. This expansion is accomplished by developing a unique domain decomposition technique to achieve higher load balancing and computational efficiency on the grid. The decomposer works as an adaptive detector of the available hardware resources on the grid, learns about the different processor speeds and adjusts its load distribution among the CPUs. As a result, our grid implementation for reservoir simulation outperforms the conventional methods of domain decomposition, which are designed to run on homogenous set of processors in a cluster.
Keywords :
digital simulation; grid computing; hydrocarbon reservoirs; parallel processing; resource allocation; HPC; domain decomposition technique; grid computing environment; high performance clusters; load balancing; reservoir simulation; Benchmark testing; Computational modeling; Hardware; Load modeling; Numerical models; Reservoirs; Resource management; Dynamic Scheduling; Grid Computing; HPC; Reservoir Simulation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Modelling and Simulation (EUROSIM), 2013 8th EUROSIM Congress on
Conference_Location :
Cardiff
Type :
conf
DOI :
10.1109/EUROSIM.2013.101
Filename :
7005006
Link To Document :
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