T. Nguyên, A Distributed Workflow Platform for Simulation, Proc. 4 th Intl. Conf on Advanced Engineering Computing and Applications in Sciences. Florence (I), 2010.

A. Abbas, High Computing Power: A radical Change in Aircraft Design Process, In proceedings of the 2nd China-EU Workshop on Multi-Physics and RTD Collaboration in Aeronautics, 2009.

T. Nguyên and J. Désidéri, Dynamic Resilient Workflows for Collaborative Design, In proceedings of the 6th Intl. Conf. on Cooperative Design, Visualization and Engineering, LNCS, vol.5738, pp.341-350, 2009.

W. Van-der-aalst, Modern Business Process Automation: YAWL and its support environment, 2010.

E. Deelman and Y. Gil, Managing Large-Scale Scientific Workflows in Distributed Environments: Experiences and Challenges, 2006 Second IEEE International Conference on e-Science and Grid Computing (e-Science'06), 2006.
DOI : 10.1109/E-SCIENCE.2006.261077

M. Ghanem, Grid-Enabled Workflows for Industrial Product Design, 2006 Second IEEE International Conference on e-Science and Grid Computing (e-Science'06), 2006.
DOI : 10.1109/E-SCIENCE.2006.261180

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.96.4040

G. Kandaswamy, Fault-tolerant and recovery of scientific workflows on computational grids, proceedings of the 8th Intl. Symp. On Cluster Computing and the Grid, 2008.

H. Simon, Future directions in High-Performance Computing 2009-2018. Lecture given at the ParCFD 2009 Conference, 2009.

J. Wang, A High-Level Distributed Execution Framework for Scientific Workflows, 2008 IEEE Fourth International Conference on eScience, 2008.
DOI : 10.1109/eScience.2008.166

D. Crawl and I. Altintas, A Provenance-Based Fault Tolerance Mechanism for Scientific Workflows, proceedings of the 2 nd Intl. Provenance and Annotation Workshop. IPAW 2008. Salt Lake City (UT), pp.152-159, 2008.
DOI : 10.1007/978-3-540-89965-5_17

M. Adams, Facilitating Flexibility and Dynamic Exception Handling in Workflows through Worklets, 2006.

M. Adams, The worklet custom service for YAWL, Installation and User Manual, Beta-8 Release, 2006.

L. Ramakrishnan, VGrADS, Proceedings of the Conference on High Performance Computing Networking, Storage and Analysis, SC '09, 2009.
DOI : 10.1145/1654059.1654107

M. Baudin, Introduction to Scilab " , Consortium Scilab Also: http://wiki.scilab.org/ Last accessed, p.331, 2010.

F. Baude, Programming, composing, deploying for the grid. in "GRID COMPUTING: Software Environments and Tools, p.331, 2006.
URL : https://hal.archives-ouvertes.fr/inria-00486114

J. Dongarra and P. Beckman, The International Exascale Software Roadmap, International Journal of High Performance Computer Applications, vol.25, issue.1, 2011.
DOI : 10.1177/1094342010391989

URL : http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.188.5128

R. Gupta and P. Beckman, CIFTS: A Coordinated Infrastructure for Fault-Tolerant Systems, 2009 International Conference on Parallel Processing, 2009.
DOI : 10.1109/ICPP.2009.20

D. Abramson and B. Bethwaite, Embedding optimization in computational science workflows, Journal of Computational Science, vol.1, issue.1, pp.41-47, 2010.
DOI : 10.1016/j.jocs.2010.04.002

A. Bachmann and M. Kunde, Advances in Generalization and Decoupling of Software Parts in a Scientific Simulation Workflow System, Proc. 4 th Intl. Conf. Advanced Engineering Computing and Applications in Sciences. Florence (I), 2010.

R. Duan and R. Prodan, DEE: A Distributed Fault Tolerant Workflow Enactment Engine for Grid Computing, Proc. 1 st . Intl. Conf. on High-Performance Computing and Communications. Sorrento (I). LNCS 3726, 2005.
DOI : 10.1007/11557654_81

Y. Simmhan, Building the Trident Scientific Workflow Workbench for Data Management in the Cloud, 2009 Third International Conference on Advanced Engineering Computing and Applications in Sciences, 2009.
DOI : 10.1109/ADVCOMP.2009.14

G. Sherp, Using UNICORE and WS-BPEL for Scientific Workfow execution in Grid Environments, Proc. EuroPAR 2009, 2010.

B. Ludäscher, Scientific Workflows: Business as Usual?, Proc. BPM 2009, 2009.
DOI : 10.1101/gr.361602

J. Montagnat, A data-driven workflow language for grids based on array programming principles, Proceedings of the 4th Workshop on Workflows in Support of Large-Scale Science, WORKS '09, 2009.
DOI : 10.1145/1645164.1645171

URL : https://hal.archives-ouvertes.fr/hal-00677806

U. Yildiz, Towards scientific workflow patterns, Proceedings of the 4th Workshop on Workflows in Support of Large-Scale Science, WORKS '09, 2009.
DOI : 10.1145/1645164.1645177

K. Plankensteiner, Fault-tolerant Behavior in State-of-the-Art Grid Workflow[1] Management Systems, 2007.

R. Duvigneau, A three-level parallelization strategy for robust design in aerodynamics, Proc. 20th Intl. Conf. on Parallel Computational Fluid Dynamics, 2008.

E. C. Joseph, A Strategic Agenda for European Leadership in Supercomputing: HPC 2020. IDC Final Report of the HPC Study for the DG Information Society of the EC Available at: http://www.hpcuserforum, p.331, 2010.

. Gmsh, https://geuz.org/gmsh/ Last accessed: 03/31, 2011.