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1.
Studies of combustion characteristics of heavy hydrocarbons in simple and complex flows
by Zhao, Runhua, Ph.D.  University of Southern California. 2016: 224 pages; 10124457.
3.
Multi-scale flow and turbulence in complex terrain under weak synoptic conditions
by Hocut, Christopher M., Ph.D.  University of Notre Dame. 2013: 180 pages; 3732211.
5.
PDF modeling of turbulent flows on unstructured grids
by Bakosi, Jozsef, Ph.D.  George Mason University. 2008: 200 pages; 3313843.
6.
Sustainable Solutions in Complex Spaces of Innovation
by Nogueira, AndrĂ© Martins, Ph.D.  Illinois Institute of Technology. 2019: 264 pages; 27548171.
7.
Tribological Interfaces and Fluid Flows Containing Particles and Chemically Designed Additives
by Twist, Christina P., Ph.D.  Northwestern University. 2013: 167 pages; 3595756.
8.
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.
9.
Interactions between large scale atmospheric flows and moist convection
by Faus da Silva Dias, Juliana, Ph.D.  New York University. 2010: 182 pages; 3428038.
10.
Methods Enabling Portability of Scientific Workflows
by Hazekamp, Nicholas, Ph.D.  University of Notre Dame. 2019: 184 pages; 28187462.
11.
Numerical simulation of particle-laden turbulent flows-Environmental applications
by Tavakoli, Behtash, Ph.D.  Clarkson University. 2015: 149 pages; 3700373.
13.
Turbulent combustion in high Mach number flows
by Liu, Qili, Ph.D.  University of Notre Dame. 2015: 142 pages; 3733909.
14.
Asymptotic and Numerical Methods for Rapidly Rotating Buoyant Flow
by Grooms, Ian G., Ph.D.  University of Colorado at Boulder. 2011: 154 pages; 3453719.
17.
Effects of Target Properties on the Formation of Lunar Impact Craters in the Simple-to-Complex Transition
by Chandnani, Mitali, Ph.D.  University of Alaska Fairbanks. 2020: 233 pages; 27664033.
18.
Transport of heat and momentum in non-equilibrium wall-bounded flows
by Ebadi, Alireza, Ph.D.  University of New Hampshire. 2016: 237 pages; 10241615.
19.
A methodology for the integration of design teams for the development of complex systems
by Zummo, Kevin J., Ph.D.  Southern Methodist University. 2010: 141 pages; 3453864.
20.
Graph theoretic approaches to understand resilience of complex systems
by Chopra, Shauhrat S., Ph.D.  University of Pittsburgh. 2015: 204 pages; 3735255.
21.
Marangoni Flows: Computation and Experiments
by Temprano-Coleto, Fernando, M.S.  University of California, Santa Barbara. 2018: 67 pages; 13423647.
22.
Smartphones, Apps, and Digital Flows: Platform Competition in the Mobile Industry
by Pon, Bryan, Ph.D.  University of California, Davis. 2015: 148 pages; 3723703.
23.
A sharp interface Cartesian grid hydrocode
by Sambasivan, Shiv Kumar, Ph.D.  The University of Iowa. 2010: 388 pages; 3409504.
24.
Health Information Infrastructure: Flows and Frictions
by Chung, Dahee, Ph.D.  Indiana University. 2017: 205 pages; 10606136.
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.
Diagnosing performance changes in distributed sytems by comparing requesting request flows
by Sambasivan, Raja Raman, Ph.D.  Carnegie Mellon University. 2013: 137 pages; 3573456.
27.
Using conceptual flows to design and implement high school genetics content
by Wiley, Brett G., M.S.Ed.  California State University, Long Beach. 2011: 211 pages; 1504553.
28.
Modelling Transport and Deposition of Coarse Particles in Viscoplastic Tailings Beach Flows
by Treinen, J.M., Ph.D.  University of Colorado at Boulder. 2017: 159 pages; 10267449.
29.
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