unstructured mesh (ANSYS inc)
90
Structured Review
ANSYS inc
unstructured mesh
Unstructured Mesh, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/unstructured+meshes/unstructured+mesh/pm40010173-89-1-5
Average 90 stars, based on 1 article reviews
Unstructured Mesh, supplied by ANSYS inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/unstructured+meshes/unstructured+mesh/pm40010173-89-1-5
Average 90 stars, based on 1 article reviews
unstructured mesh - by Bioz Stars,
2026-10
90/100 stars
Images
Related Articles
Generated:Article Title: Progression from Initial Lesions to Type B Aortic Dissection: A Patient-Specific Study of Computational Fluid Dynamics Models with Follow-up Data. Article Snippet: Background and Objective The natural history of type B aortic intramural hematoma (IMH) is highly heterogeneous.. A computational fluid dynamics (CFD) model can be utilized to calculate a range of data pertinent to flow dynamics, including flow rates, blood velocity, pressure, and wall shear stress.. This study presents a series of CFD simulations that model the dynamic progression from type B aortic IMH to false lumen formation. Article Title: Numerical investigations of the flow induced oscillation of a torque converter Article Snippet: .. For the structure FEM analysis, the Article Title: Numerical simulation analysis of multi-scale computational fluid dynamics on hemodynamic parameters modulated by pulsatile working modes for the centrifugal and axial left ventricular assist devices. Article Snippet: Continuous flow (CF) left ventricular assist devices (LVAD) operate at a constant speed mode, which could result in increased risk of adverse events due to reduced vascular pulsatility.. Consequently, pump speed modulation algorithms have been proposed to augment vascular pulsatility.. However, the quantitative local hemodynamic effects on the aorta when the pump is operating with speed modulation using different types of CF-LVADs are still under investigation. Article Title: Enlarged Lumen Volume of Proximal Aortic Segment and Acute Type B Aortic Dissection: A Computer Fluid Dynamics Study of Ideal Aortic Models Article Snippet: .. Four Article Title: Numerical study on the effective thermal conductivity and thermal tortuosity of porous media with different morphologies Article Snippet: Effective thermal conductivity and thermal tortuosity are crucial parameters for evaluating the effectiveness of heat conduction within porous media.. The direct pore-scale numerical simulation method is applied to investigate the heat conduction processes inside porous structures with different morphologies.. The thermal conduction performances of idealized porous structures are directly compared with real foams across a wide range of porosity. Article Title: Fluid flow and heat transfer analysis of TEFC machine end regions using more realistic end‐winding geometry Article Snippet: .. For the Article Title: Rapid design approach for U-bend of a turbine serpentine cooling passage Article Snippet: Article history: Received 17 November 2018 Accepted 7 May 2019 Available online xxxx other:Article Title: Non-Fourier effect of laser-mediated thermal behaviors in bio-tissues: A numerical study by the dual-phase-lag model Article Snippet: Pulsed laser has been widely used for the thermotherapy of skin diseases.. In this process, non-Fourier heat conduction has to be considered because of its small time scale.. After optical transmission and energy deposition were obtained by Monte Carlo method, the dual-phase-lag (DPL) model was employed and solved by using a three-level finite difference method to characterize non-Fourier heat conduction by focusing on the thermal lag during the interaction of pulsed laser with biological tissues. Software:Article Title: Numerical study on the effective thermal conductivity and thermal tortuosity of porous media with different morphologies Article Snippet: Effective thermal conductivity and thermal tortuosity are crucial parameters for evaluating the effectiveness of heat conduction within porous media.. The direct pore-scale numerical simulation method is applied to investigate the heat conduction processes inside porous structures with different morphologies.. The thermal conduction performances of idealized porous structures are directly compared with real foams across a wide range of porosity. |