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Graduate ResearcherMay 2012
Developed methodology for validating multiphysics simulation of Acoustically Tensioned Metastable Fluid Detector system, optimized system with design of a sealing lid, and supported Centrifugally Tensioned Metastable Fluid Detector research group with design and machine drawings
Undergraduate Laboratory InternMay 2011 - Aug 2011 (3 months)
Validated NEAMES project multiphysics fission reactor simulation against pre-existing neutronics codes (VARIANT, DIFF3D) and experimental data.
Undergraduate ResearcherOct 2010 - May 2012 (1 year)
Developed multiphysics simulation of Acoustically Tensioned Metastable Fluid Detector system, evaulated gamma detection capabilities in Centrifugally Tensioned Metastable Fluid Detector system, supported lab groups with machine drawings and design
Industrial Design AssistantJan 2009 - Dec 2010 (1 year)
Performed development from concept and CAD design of over 10 products in the science education field as main designer. Helped revise and interate on design of over 100 additional products. Created production reports for quality assurance of manufacturing for these products. Main portfolio products include a Van De Graff generator, an Electrophoresis Chamber, and a Centripetal Motion Testing appa- ratus.
Bachelor of Science in Nuclear Engineering2009 - 2012 (3 years)
Master of Science in Nuclear Engineering2012 - 2014 (2 years)
Characterization and Optimization of a Tensioned Metastable Fluid Nuclear Particle Sensor Using...
Article describing spatial profiling using laser induced cavitation, finite element acoustic modeling, and optimization of a neutron detector based on metastable fluids. Alexander R. Hagen, Thomas F. Grimes, Brian C. Archambault, Trevor N. Harris, and Rusi P. Taleyarkhan. Characterization and Optimization of a Tensioned Metastable Fluid Nuclear Particle Sensor Using Laser-Based Profilometry. Journal of Nuclear Engineering and Radiation Science, 1(4):041004, Sep 2015.
Multiphysics Modeling in Optimization of Acoustically Tensioned Metastable Fluid Neutron Detectors
Thesis describing two years of experiments, simulations, and designs for optimization of a neutron detector based on metastable fluids and its uses in homeland security. A. Hagen. Multiphysics Modeling in Optimization of Acoustically Tensioned Metastable Fluid Neutron Detectors. Master of science, Purdue University, 2014.
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