Samuel Paolucci

Affiliations: 
University of Notre Dame, Notre Dame, IN, United States 
Area:
Mechanical Engineering, Computer Science
Website:
https://www3.nd.edu/~paolucci/
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"Samuel Paolucci"
Bio:

https://books.google.com/books?id=P1FUAAAAYAAJ

Parents

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Sidney Leibovich grad student 1979 Cornell (E-Tree)
 (Langmuir circulations as a convective instability mechanism and its effect on the ocean mixed layer)

Children

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Weiming Li grad student
Oleg V. Vasilyev grad student 1991-1996 Notre Dame (E-Tree)
Ward M. Judson grad student 2000 Notre Dame
Rouslan V. Krechetnikov grad student 2002 Notre Dame
Yevgenii A. Rastigejev grad student 2002 Notre Dame
Sergey V. Shepel grad student 2002 Notre Dame
John K. Kamel grad student 2007 Notre Dame
Zachary J. Zikoski grad student 2011 Notre Dame
Gianluca Puliti grad student 2012 Notre Dame
BETA: Related publications

Publications

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Paolucci S, Paolucci C. (2018) A second-order continuum theory of fluids Journal of Fluid Mechanics. 846: 686-710
Malpica Galassi R, Ciottoli PP, Sarathy SM, et al. (2018) Automated chemical kinetic mechanism simplification with minimal user expertise Combustion and Flame. 197: 439-448
Grenga T, Paolucci S, Valorani M. (2018) Sensitivity analysis and mechanism simplification using the G-Scheme framework Combustion and Flame. 189: 275-287
Valorani M, Ciottoli PP, Malpica Galassi R, et al. (2018) Enhancements of the G-Scheme Framework Flow, Turbulence and Combustion. 101: 1023-1033
Valorani M, Paolucci S, Ciottoli PP, et al. (2016) Entropy production and timescales Combustion Theory and Modelling. 21: 137-157
Salakij S, Yu N, Paolucci S, et al. (2016) Model-Based Predictive Control for building energy management. I: Energy modeling and optimal control Energy and Buildings. 133: 345-358
Valorani M, Paolucci S, Martelli E, et al. (2015) Dynamical system analysis of ignition phenomena using the Tangential Stretching Rate concept Combustion and Flame. 162: 2963-2990
Paolucci S, Zikoski ZJ, Grenga T. (2014) WAMR: An adaptive wavelet method for the simulation of compressible reacting flow. Part II. The parallel algorithm Journal of Computational Physics. 272: 842-864
Paolucci S, Zikoski ZJ, Wirasaet D. (2014) WAMR: An adaptive wavelet method for the simulation of compressible reacting flow. Part I. Accuracy and efficiency of algorithm Journal of Computational Physics. 272: 814-841
Quaglia CP, Yu N, Thrall AP, et al. (2014) Balancing energy efficiency and structural performance through multi-objective shape optimization: Case study of a rapidly deployable origami-inspired shelter Energy and Buildings. 82: 733-745
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