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image correlation (DIC) datasets with fully three-dimensional finite element analysis (FEA) results in mechanical test setups on metals and polymers including uni-axial and bi-axial loading at different
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) experience and demonstrated proficiency (SolidWorks™ preferred). Finite-element analysis (FEA) experience and demonstrated proficiency (e.g., Ansys™ or equivalent). Gas dynamical modeling expertise (e.g
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. Experience in application of helium mass‐spectrometer leak detection (MSLD) apparatus. Computer-aided design (CAD) experience and demonstrated proficiency (SolidWorks™ preferred). Finite-element analysis (FEA
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Simulating Composite Fracture by the Extended Finite Element Method School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Dr J L Curiel Sosa Application Deadline
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of the Extended Finite Element Method (XFEM), the mechanisms of fracture and crack propagation in advanced composite structures such as fibre metal laminates (FML) used in the aerospace industries. Funding Notes
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diagrams (PFDs) for cryogenic plant systems. Experience with practical finite element analysis using ANSYS Workbench Excellent written and oral skills and proficient with MS Office and MS Excel. Preferred
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not be effectively analyzed. DIC data are combined with finite element modeling to analyze non-uniform stress and strain states within samples during dynamic loading, and in some cases to deduce
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., J. Chem. Engr. Data., 2020, 65 (7) Multiphysics simulations; computational fluid dynamics; finite volume, finite and discrete element methods; computational fluid and particle dynamics; multiscale
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and 3-D electromagnetic finite element codes. Control theory with applications to accelerator systems including RF-beam interactions. Broad knowledge and understanding of RF systems and their role in
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the development of new numerical strategies, e.g. pioneering the use of the Extended Finite Element Method in the prediction of delamination in composite structures (Curiel Sosa et al., 2018). This will permit you