Pages that link to "Item:Q5470962"
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The following pages link to Shape Design in Aorto-Coronaric Bypass Anastomoses Using Perturbation Theory (Q5470962):
Displaying 17 items.
- Parametric free-form shape design with PDE models and reduced basis method (Q658750) (← links)
- A reduced basis hybrid method for the coupling of parametrized domains represented by fluidic networks (Q695852) (← links)
- The shape optimization of the arterial graft design by level set methods (Q729677) (← links)
- Shape optimization for Stokes flow (Q928838) (← links)
- Shape-topology optimization for Navier-Stokes problem using variational level set method (Q955071) (← links)
- A computational framework for derivative-free optimization of cardiovascular geometries (Q995283) (← links)
- Shape optimization for Stokes flows using sensitivity analysis and finite element method (Q1690920) (← links)
- Convergence analysis of mixed finite element approximations to shape gradients in the Stokes equation (Q1986443) (← links)
- Fast simulations of patient-specific haemodynamics of coronary artery bypass grafts based on a POD-Galerkin method and a vascular shape parametrization (Q2375208) (← links)
- A mathematical approach in the design of arterial bypass using unsteady Stokes equations (Q2433901) (← links)
- Boundary control and shape optimization for the robust design of bypass anastomoses under uncertainty (Q2842455) (← links)
- A parallel two-level domain decomposition based one-shot method for shape optimization problems (Q2952558) (← links)
- Sensitivity of shear rate in artificial grafts using automatic differentiation (Q3406576) (← links)
- The circulatory system: from case studies to mathematical modeling (Q4638234) (← links)
- OPTIMAL CONTROL AND SHAPE OPTIMIZATION OF AORTO-CORONARIC BYPASS ANASTOMOSES (Q4822382) (← links)
- Shape optimization of Stokes flows by a penalty method (Q6131496) (← links)
- Optimal error estimates of the discrete shape gradients for shape optimizations governed by the Stokes-Brinkman equations (Q6169240) (← links)