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Short description of portfolio item number 2
Published in Physics of Plasmas, 2017
Analytic calculations show that stable (damped) inviscid modes are nonlinear driven by unstable modes in an unstratified shear flow.
Recommended citation: Fraser, A.E., Terry, P.W., Zweibel, E.G., Pueschel, M.J. (2017), Physics of Plasmas 24, 062304. http://afraser3.github.io/files/Fraser2017.pdf
Published in Physics of Plasmas, 2018
Nonlinear excitation of stable modes are shown from simulations of shear-flow turbulence; inclusion of stable modes in reduced models explored.
Recommended citation: Fraser, A.E., Pueschel, M.J., Terry, P.W., and Zweibel, E.G. (2018), Physics of Plasmas 25, 122303. http://afraser3.github.io/files/Fraser2018.pdf
Published in , 2020
My Ph.D. thesis. Chapters 2-4 are essentially identical to my first three papers. The introduction and conclusions help tie everything together, though. Also, the appendices in Chapter 4 describe a neat, unpublished calculation.
Recommended citation: Fraser, A.E. (2020). "Role of stable eigenmodes in shear-flow instability saturation and turbulence." UW-Madison Ph.D Thesis. http://afraser3.github.io/files/Fraser_thesis.pdf
Published in Physics of Plasmas, 2021
Flow-aligned magnetic fields are shown to reduce stable mode activity, providing an interpretation for trends in turbulent transport.
Recommended citation: Fraser, A.E., Terry, P.W., Zweibel, E.G., Pueschel, M.J., Schroeder, J.M. (2021), Physics of Plasmas 28, 022309. http://afraser3.github.io/files/paper3.pdf
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Undergraduate course, University 1, Department, 2014
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Workshop, University 1, Department, 2015
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