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1.
Numerical Investigation on the Projection Method for the Incompressible Navier-Stokes Equations on MAC Grid
by Yek, Vorleak, M.S.  California State University, Long Beach. 2018: 82 pages; 10825591.
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A comparison of grid-based techniques for Navier-Stokes fluid simulation in computer graphics
by Chrisman, Cameron, M.S.  University of California, San Diego. 2008: 76 pages; 1450292.
4.
An Unstructured Grid Incompressible Navier-Stokes Algorithm for Convective Heat Transfer Based on Artificial Compressibility
by Kress, Jessica Elaine, M.S.E.  The University of Tennessee at Chattanooga. 2012: 82 pages; 1531892.
5.
Submarine channel and sediment wave formation by turbidity currents: Navier-Stokes based linear stability analysis
by Hall, Brendon J., Ph.D.  University of California, Santa Barbara. 2009: 145 pages; 3350381.
6.
Stochastically Perturbed Navier-Stokes System on the Rotating Sphere
by Varner, Gregory Alan, Ph.D.  University of Missouri - Columbia. 2013: 133 pages; 3576093.
7.
A dynamic hybrid RANS/LES modeling methodology for turbulent/transitional flow field prediction
by Alam, Mohammad Faridul, Ph.D.  Mississippi State University. 2013: 152 pages; 3603414.
8.
Residual-based Discretization Error Estimation for Computational Fluid Dynamics
by Phillips, Tyrone S., Ph.D.  Virginia Polytechnic Institute and State University. 2014: 149 pages; 10596861.
10.
Two-Dimensional Compressible Vortex Analysis
by Hubble, Andrew, M.S.  Tufts University. 2015: 88 pages; 1589459.
11.
Lattice-Boltzmann Models for High-Order Partial Differential Equations
by Otomo, Hiroshi, Ph.D.  Tufts University. 2019: 124 pages; 13814332.
12.
NLF wing design by adjoint method and automatic transition prediction
by Lee, Jen-Der, Ph.D.  Stanford University. 2009: 98 pages; 3364504.
13.
Simulation of Liquid Droplet in Air and on a Solid Surface
by Launglucknavalai, Kevin, M.S.  University of California, Irvine. 2013: 64 pages; 1537051.
15.
Some Regularity Properties for Two Equations Arising from Flows
by Chen, Eric Christopher, Ph.D.  Princeton University. 2019: 124 pages; 13885976.
16.
Time –Accurate Implementation of Lighthill's Acoustic Analogy for Complex 3-D Jet Noise Prediction
by Carter, Melissa Beth, Ph.D.  North Carolina State University. 2015: 109 pages; 3710727.
17.
Some Results on the Euler Equations for Incompressible Flow
by Elgindi, Tarek Mohamed, Ph.D.  New York University. 2014: 293 pages; 3635128.
18.
Robust reduced order control for nonlinear distributed systems of Burgers class
by Schmid, Matthias, M.S.  State University of New York at Buffalo. 2009: 148 pages; 1461767.
19.
Fast solvers and uncertainty quantification for models of magnetohydrodynamics
by Phillips, Edward G., Ph.D.  University of Maryland, College Park. 2014: 168 pages; 3644175.
20.
Large eddy simulation of dispersed multiphase flow
by Gong, Yejun, Ph.D.  Michigan Technological University. 2012: 171 pages; 3509743.
22.
Performance comparison between a full-length and a truncated aerospike nozzle
by Ladeinde, Temitayo A., M.S.  California State University, Long Beach. 2009: 123 pages; 1472342.
23.
Explorations in the mathematics of inviscid incompressible fluids
by Kliegl, Markus Vinzenz, Ph.D.  Princeton University. 2016: 164 pages; 10010743.
24.
Cascades, Spectra, Real Space Structure, Inhomogeneous Mixing and Transport in Active Scalar Turbulence
by Fan, Xiang, Ph.D.  University of California, San Diego. 2019: 105 pages; 13857272.
25.
Liquid-Gas Recirculation and Entrainment in a Wall-Driven Cavity
by Yucetepe, Mert, M.S.  Southern Illinois University at Edwardsville. 2015: 133 pages; 1591662.
26.
An Efficient Mesh-Free Particle Method for Modeling of Free Surface and Multiphase Flows
by Nabian, Mohammad Amin, M.S.  The George Washington University. 2015: 147 pages; 1605038.
27.
Marangoni Flows: Computation and Experiments
by Temprano-Coleto, Fernando, M.S.  University of California, Santa Barbara. 2018: 67 pages; 13423647.
28.
Modeling the electrohydrodynamics of three-dimensional vesicles
by Kolahdouz, Mohammad Ebrahim, Ph.D.  State University of New York at Buffalo. 2015: 142 pages; 3683048.
29.
CHORUS-MHD Code for Solar and Planetary Magnetohydrodynamics
by Zhang, Xiaoliang, Ph.D.  The George Washington University. 2019: 149 pages; 22618894.
30.
A study of rotationally constrained convection in tall aspect ratio annular geometries
by Watson, Michael, Ph.D.  University of Colorado at Boulder. 2008: 236 pages; 3303866.
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