fluent general purpose fluid dynamic code (ANSYS inc)
90
Structured Review
ANSYS inc
fluent general purpose fluid dynamic code
Fluent General Purpose Fluid Dynamic Code, 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/generator+code/general+purpose+cfd+code+fluent/pm19730002-47-17-25
Average 90 stars, based on 1 article reviews
Fluent General Purpose Fluid Dynamic Code, 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/generator+code/general+purpose+cfd+code+fluent/pm19730002-47-17-25
Average 90 stars, based on 1 article reviews
fluent general purpose fluid dynamic code - by Bioz Stars,
2026-09
90/100 stars
Images
Related Articles
Generated:Article Title: Inflow boundary conditions for image-based computational hemodynamics: impact of idealized versus measured velocity profiles in the human aorta. Article Snippet: hemodynamic models of human aorta.. This study aims at investigating if the imposition of BCs based on defective information, even when measured and specific-to-the-subject, might lead to misleading numerical representations of the aortic hemodynamics.. In detail, we focus on the influence of assumptions regarding velocity profiles at the inlet section of the ascending aorta, incorporating phase flow data within the computational model. Article Title: On the use of in vivo measured flow rates as boundary conditions for image-based hemodynamic models of the human aorta: implications for indicators of abnormal flow. Article Snippet: The purpose of this study is to investigate how the imposition of personalized, non-invasively measured blood flow rates as boundary conditions (BCs) influences imagebased computational hemodynamic studies in the human aorta.. We extracted from 4D phase-contrast MRI acquisitions of a healthy human (1) the geometry of the thoracic aorta with supra-aortic arteries and (2) flow rate waveforms at all boundaries.. Flow simulations were carried out, and the implications that the imposition of different BC schemes based on the measured flow rates have on wall shear stress (WSS)-based indicators of abnormal flow were analyzed. other:Article Title: Computational fluid dynamics in the assessment of patients' postoperative status after glottis-widening surgery. Article Snippet: The computations were carried out using the general Article Title: Very Large Eddy Simulation of Lean Premixed Flames to Imposed Inlet Velocity Oscillations Article Snippet: The present work describes an assessment and validation of the newly developed Very-Large Eddy Simulation (VLES) method for the numerical study of complex non-linear response of a lean premixed flame to acoustic velocity fluctuations.. The VLES method is a self-adaptive turbulence method which can achieve seamless switching between RANS, LES, and finally approaching DNS.. It is extended to the turbulent combustion simulation in the present study. Article Title: Abdominal aortic aneurysm endovascular repair: profiling post-implantation morphometry and hemodynamics with image-based computational fluid dynamics. Article Snippet: 2 Endovascular aneurysm repair (EVAR) has disseminated rapidly as an alternative to open surgical repair for the treatment of abdominal aortic aneurysms (AAAs), because of its reduced invasiveness, low mortality and morbidity rate.. The effectiveness of the endovascular devices used in EVAR is always at question as postoperative adverse events can lead to re-intervention or to a possible fatal scenario for the circulatory system.. Motivated by the assessment of the risks related to thrombus formation, here the impact of two different commercial endovascular grafts on local hemodynamics is explored through 20 image-based computational hemodynamic models of EVAR-treated patients (N=10 per each endograft model). Article Title: A rational approach to defining principal axes of multidirectional wall shear stress in realistic vascular geometries, with application to the study of the influence of helical flow on wall shear stress directionality in aorta. Article Snippet: Cite this article as: Umberto Morbiducci, Diego Gallo, Simone Cristofanelli, Raffaele Ponzini, Marco A. Deriu, Giovanna Rizzo, David A. Steinman, A rational approach to defining principal axes of multidirectional wall shear stress in realistic vascular geometries, with application to the study of the influence of helical flow on wall shear stress directionality in aorta, Journal of Biomechanics, http://dx.doi.org/10.1016/j.jbiomech.2015.02.027 Software:Article Title: On the use of in vivo measured flow rates as boundary conditions for image-based hemodynamic models of the human aorta: implications for indicators of abnormal flow. Article Snippet: The purpose of this study is to investigate how the imposition of personalized, non-invasively measured blood flow rates as boundary conditions (BCs) influences imagebased computational hemodynamic studies in the human aorta.. We extracted from 4D phase-contrast MRI acquisitions of a healthy human (1) the geometry of the thoracic aorta with supra-aortic arteries and (2) flow rate waveforms at all boundaries.. Flow simulations were carried out, and the implications that the imposition of different BC schemes based on the measured flow rates have on wall shear stress (WSS)-based indicators of abnormal flow were analyzed. |