Search ResultsElectronic Resources 
by
Keller, Jacob Charles, author.
Format:
Excerpt:
Prediction and Examination of Rotor Sound using Computational Fluid Dynamics / Keller, Jacob
by
Chhunchha, Aakash C., author.
Format:
Excerpt:
Aerodynamic Heating Analysis of Re-entry Space Capsule Using Computational Fluid Dynamics /
by
Rubtsov, Nickolai M. author.
Format:
Excerpt:
Engineering Fluid Dynamics.
by
Sheng, Chunhua. author.
Format:
Excerpt:
Engineering Fluid Dynamics.
by
Cai, Chenxiao. author.
Format:
Excerpt:
Engineering Fluid Dynamics.
by
d'Agostino, Luca. editor.
Format:
Excerpt:
Engineering Fluid Dynamics.
by
Doerffer, Piotr. editor.
Format:
Excerpt:
Engineering Fluid Dynamics.
by
Pollard, Andrew. editor.
Format:
Excerpt:
Engineering Fluid Dynamics.
by
Chernousko, Felix L. author.
Format:
Excerpt:
foundations of the rigid body dynamics and of the asymptotic method of averaging. The rigorous approach based
by
Bennett, David W., author.
Format:
Excerpt:
problem in the field of fluid dynamics.
by
Palmore, John Aaron, Jr., author.
Format:
Excerpt:
understanding of the dynamics of fuel combustion. One way of studying this combustion process is through
by
Mendez Carvajal, Julio Cesar, author.
Format:
Excerpt:
Computational Fluid Dynamics (CFD) plays an important role in engineering. It allows engineers to
by
Begum, Assma, author.
Format:
Excerpt:
the surface of the cylinder were studied using Computational Fluid Dynamics (CFD). The flow
by
Barr, Stephen M., author. (orcid)0000-0002-0450-165X
Format:
Excerpt:
for four inflow conditions ranging from cut-in to rated wind speeds. The computational fluid dynamics
by
Shellabarger, Eli R., author.
Format:
Excerpt:
A commercially available computational fluid dynamics (CFD) solver is configured and automated to
by
Shires, Andrew, author.
Format:
Excerpt:
predictions using the SAUNA Computational Fluid Dynamics (CFD) method that solves the Reynolds Averaged Navier
by
Rodriguez, Steven N., author.
Format:
Excerpt:
numerically as a coupled fluid-structure interaction (aeroelastic) phenomenon. The near-wake aerodynamics are
by
DiGregorio, Nicholas J., author. (orcid)0000-0002-3264-9125
Format:
Excerpt:
range of 0.3 up to 16 using the computational fluid dynamics (CFD) software, VULCAN. The boundary
by
Manar, Field Hogan, author.
Format:
Excerpt:
better route to intuitive understanding of the fluid dynamic origin of the forces. The experimental data
by
Vardaman, Nathan James, author.
Format:
Excerpt:
In this study, a computational fluid dynamics (CFD) model is created to mimic the mixing of the
by
Mo, Jingwen, author.
Format:
Excerpt:
engineering because of rich unveiled striking phenomena such as superfast flows in carbon nanotubes, fluid
by
Jackson, Brandon A., author. (orcid)0000-0002-4148-6380
Format:
Excerpt:
The first study included in this dissertation presents a computational fluid dynamics model of the

Select an Action





