Computational Fluid Dynamics

Computational fluid dynamics (CFD) is a numerical method for predicting how fluids move and interact with surfaces, forces, and transported substances, making complex flow problems accessible through computation. It works by representing a fluid domain as a mesh and solving discretized conservation equations for mass, momentum, and energy under defined boundary and initial conditions. In biology, CFD can model blood flow through vessels, air transport in respiratory systems, and fluid movement around cells or within bioreactors, helping researchers examine shear stress, mixing, and transport. These simulations support experimental design, interpretation of biological measurements, and the development of biomedical devices and engineered tissue systems.

Computational Fluid Dynamics - Related Videos

Education

JoVE Science Education - Engineering

Computational Fluid Dynamics Simulations of Blood Flow in a Cerebral Aneurysm

0 Views •

2023

Source: Joseph C. Muskat, Vitaliy L. Rayz, and Craig J. Goergen, Weldon School of Biomedical Engineering, Purdue University, West Lafayette, Indiana The objective of this video is to describe recent advancements of computational fluid dynamic (CFD) simulations based on patient- or animal-specific vasculature. Here, subject-based vessel segmentations were created, and, using a combination of open-source and commercial tools, a high-resolution numerical solution was determined within a flow model.

Research

JoVE Journal - Engineering

Fast Imaging Technique to Study Drop Impact Dynamics of Non-Newtonian Fluids

0 Views •

Cited by 2 •

2014

Drop impact of non-Newtonian fluids is a complex process since different physical parameters influence the dynamics over a very short time (less than one tenth of a millisecond). A fast imaging technique is introduced in order to characterize the impact behaviors of different non-Newtonian fluids.

Research

JoVE Journal - Chemistry
Free Sample

Analyzing Melts and Fluids from Ab Initio Molecular Dynamics Simulations with the UMD Package

0 Views •

Cited by 2 •

2021

Melts and fluids are ubiquitous vectors of mass transport in natural systems. We have developed an open-source package to analyze ab initio molecular-dynamics simulations of such systems. We compute structural (bonding, clusterization, chemical speciation), transport (diffusion, viscosity) and thermodynamic properties (vibrational spectrum).

Spatial Measurement of Tumor Interstitial Fluid Pressure: A Method to Measure the Interstitial Fluid Pressure

0 Views •

2023

This video describes a technique of measuring the interstitial fluid pressure within a tumor by perfusion imaging using an image-guided robotic system. Measurements are compared to the intra-tumoral accumulation of liposomes, within a solid tumor.

Real-Time Dynamic Collection of Hippocampal Extracellular Fluid from Conscious Rats Using a Microdialysis System

0 Views •

2022

The protocol here provides a detailed real-time dynamic sampling of extracellular fluid from the hippocampus of awake rats using a microdialysis system.

View All Results

FAQs

Related Topics