Katerina D. Papoulia
Affiliations: | Cornell University, Ithaca, NY, United States |
Area:
Civil Engineering, Mechanical EngineeringGoogle:
"Katerina Papoulia"Children
Sign in to add traineeAni Ural | grad student | 2004 | Cornell |
Chin-Hang Sam | grad student | 2005 | Cornell |
Fang Yiu | grad student | 2005 | Cornell |
Pritam Ganguly | grad student | 2006 | Cornell |
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Publications
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Vavasis SA, Papoulia KD, Hirmand MR. (2020) Second-order cone interior-point method for quasistatic and moderate dynamic cohesive fracture Computer Methods in Applied Mechanics and Engineering. 358: 112633 |
Hirmand MR, Vahab M, Papoulia KD, et al. (2019) Robust simulation of dynamic fluid-driven fracture in naturally fractured impermeable media Computer Methods in Applied Mechanics and Engineering. 357: 112574 |
Hirmand MR, Papoulia KD. (2019) Block coordinate descent energy minimization for dynamic cohesive fracture Computer Methods in Applied Mechanics and Engineering. 354: 663-688 |
Hirmand MR, Papoulia KD. (2018) A continuation method for rigid-cohesive fracture in a discontinuous Galerkin finite element setting International Journal For Numerical Methods in Engineering. 115: 627-650 |
Papoulia KD. (2017) Non-differentiable energy minimization for cohesive fracture International Journal of Fracture. 204: 143-158 |
Eshraghi A, Jahed H, Papoulia KD. (2013) Eulerian framework for inelasticity based on the jaumann rate and a hyperelastic constitutive relation-part ii: Finite strain elastoplasticity Journal of Applied Mechanics, Transactions Asme. 80 |
Eshraghi A, Papoulia KD, Jahed H. (2013) Eulerian framework for inelasticity based on the jaumann rate and a hyperelastic constitutive relation-part i: Rate-form hyperelasticity Journal of Applied Mechanics, Transactions Asme. 80 |
Papoulia KD, Panoskaltsis VP, Kurup NV, et al. (2010) Rheological representation of fractional order viscoelastic material models Rheologica Acta. 49: 381-400 |
Ural A, Krishnan VR, Papoulia KD. (2009) Erratum to “A cohesive zone model for fatigue crack growth allowing for crack retardation” [International Journal of Solids and Structures 46 (2009) 2453–2462] International Journal of Solids and Structures. 46: 3503 |
Ural A, Krishnan VR, Papoulia KD. (2009) A cohesive zone model for fatigue crack growth allowing for crack retardation International Journal of Solids and Structures. 46: 2453-2462 |