2015
DOI: 10.1016/j.advengsoft.2014.12.006
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Hybrid MPI/OpenMP cloud parallelization of harmonic coupled finite strip method applied on reinforced concrete prismatic shell structure

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Cited by 10 publications
(4 citation statements)
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“…It was inevitable to combine different parallelization models -MPI and OpenMP and use different sources of parallel resources (multicomputer, multiprocessormulticore, GPGPU based, or cloud available environment). Our results show that rational usage of hybrid parallelization approach to speed up the critical parts of our code contributes in significant performance improvements [9,10]. If uniformly compressed thin-walled structures undergo inelastic deformations, these structures generally sustain two sources of non-linearity (geometrical non-linearity due to large deflection and material non-linearity due to inelastic behaviour).…”
Section: Faculty Of Civil Engineering Subotica University Of Novi Samentioning
confidence: 88%
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“…It was inevitable to combine different parallelization models -MPI and OpenMP and use different sources of parallel resources (multicomputer, multiprocessormulticore, GPGPU based, or cloud available environment). Our results show that rational usage of hybrid parallelization approach to speed up the critical parts of our code contributes in significant performance improvements [9,10]. If uniformly compressed thin-walled structures undergo inelastic deformations, these structures generally sustain two sources of non-linearity (geometrical non-linearity due to large deflection and material non-linearity due to inelastic behaviour).…”
Section: Faculty Of Civil Engineering Subotica University Of Novi Samentioning
confidence: 88%
“…8, is analysed taking into account the governing dynamic RDA modulus along the longitudinal axis. The HCFSM algorithm for geometric non-linear analysis has been described in [9] and [10]. The semi-analytical FSM eigenvalue analysis of a structure is simpler as it is explained in Section 4.1.…”
Section: Numerical Applicationsmentioning
confidence: 99%
“…Recent works have been proposed to port scientific applications from various domains to private and public clouds [54][55][56][57] by using a mixture of MPI and OpenMP; an approach that benefits from the communication efficiency of MPI primitives and the easy parallelization of OpenMP annotations. Experimental results usually show good performance, but they also reveal the difficulties associated to MPI programming, which requires a level of expertise and platform knowledge that is far beyond the knowledge of typical programmers.…”
Section: Related Workmentioning
confidence: 99%
“…Recent works have been proposed to port scientific applications from various domains to private and public clouds [36], [37], [38], [39] by using a mixture of MPI and OpenMP; an approach that benefits from the communication efficiency of MPI primitives and the easy parallelization of OpenMP annotations. Experimental results usually show good performance, but they also reveal the difficulties associated to MPI programming, which require a level of expertise and platform knowledge that is far beyond the knowledge of typical programmers.…”
Section: Related Workmentioning
confidence: 99%