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«EDUCATION Massachusetts Institute of Technology 2002–2007 Ph. D. Mathematics Advisor: Professor Martin Z. Bazant Thesis title: Multiscale Modeling ...»

CURRICULUM VITAE: CHRIS H. RYCROFT

Room 305, Pierce Hall Tel. 510-207-0172

Paulson School of Engineering and Applied Sciences Fax. 617-495-9837

Harvard University chr@seas.harvard.edu

Cambridge, MA 02138 http://seas.harvard.edu/∼chr/

EDUCATION

Massachusetts Institute of Technology 2002–2007 Ph. D. Mathematics Advisor: Professor Martin Z. Bazant Thesis title: Multiscale Modeling in Granular Flow Pembroke College, University of Cambridge 2001–2002 Certificate of Advanced Study in Mathematics, Grade of Distinction Pembroke College, University of Cambridge 1998–2001 Bachelor’s in Mathematics, First Class Honours

POSITIONS

Paulson School of Engineering and Applied Sciences, Harvard University 2014–present Assistant Professor Department of Mathematics, Lawrence Berkeley Laboratory 2010–present Visiting Faculty Scientist Department of Mathematics, University of California, Berkeley 2010–2013 Morrey Assistant Professor Department of Mathematics, Lawrence Berkeley Laboratory 2007–2010 Visiting Postdoctoral Scholar Idaho National Laboratory Summer 2006 Research Assistant Westlakes Research Institute Summer 1999 Research Assistant

RESEARCH INTERESTS

Broadly: interdisciplinary mathematical modeling, mechanics of complex materials, numerical methods Specifically: numerical methods for elasto-plasticity: bulk metallic glasses, fluid–structure interaction;

mechanical modeling of biological systems: biomaterials, simulation of multiple interfaces;

the Voronoi tessellation: computational techniques, analysis of particle systems;

material porosity: high-throughput screening, mathematical modeling of fluid flow;

dense granular materials: rheology, mixing, stochastic methods, industrial applications;

multigrid methods, spectral methods, conformal methods, adaptive grids, parallel computation Curriculum Vitae: Chris H. Rycroft 2

JOURNAL PUBLICATIONS

C. H. Rycroft, Y. Sui, and E. Bouchbinder, An Eulerian projection method for quasi-static elastoplasticity, J. Comput. Phys. 300, 136–166 (2015).

B. Valkov, C. H. Rycroft, and K. Kamrin, Eulerian method for multiphase interactions of soft solid bodies in fluids, J. Appl. Mech. 84, 041011 (2015).

G. Venugopalan, D. Camarillo, K. D. Webster, C. D. Reber, J. A. Sethian, V. M. Weaver, D. A. Fletcher, and C. H. Rycroft, Multicellular architecture of malignant breast epithelia influences mechanics, PLOS ONE 9, e101955 (2014).

C. M. Freeman, K. L. Boyle, M. Reagan, J. Johnson, C. H. Rycroft, and G. J. Moridis, MeshVoro: A three-dimensional Voronoi mesh building tool for the TOUGH family of codes, Computers & Geosciences 70, 26–34 (2014).

Q. Shi, R. P. Ghosh, H. Engelke, C. H. Rycroft, L. Cassereau, J. A. Sethian, V. M. Weaver, and J. T. Liphardt, Rapid disorganization of mechanically interacting systems of mammary acini, Proc. Natl. Acad. Sci. 111, 658–663 (2014).

G. I. Barenblatt, P. J. M. Monteiro, and C. H. Rycroft, On a boundary layer problem related to the gas flow in shales, J. Eng. Math. 84, 11–18 (2014).

C. H. Rycroft, A. Dehbi, T. Lind, and S. G¨ ntay, Granular flow in pebble-bed nuclear reactors: scaling, dust u generation, and stress, Nucl. Eng. Design. 265, 69–84 (2013).

C. H. Rycroft and J. Wilkening, Computation of three-dimensional standing water waves, J. Comput. Phys.

255, 612–638 (2013).

M. Pinheiro, R. L. Martin, C. H. Rycroft, and M. Haranczyk, High accuracy geometric analysis of crystalline porous materials, CrystEngComm 37, 7531–7538 (2013).

M. Pinheiro, R. L. Martin, C. H. Rycroft, A. Jones, E. Iglesia, and M. Haranczyk, Characterization and comparison of pore landscapes in crystalline porous materials, J. Mol. Graph. Model. 44, 208–219 (2013).

M. Theillard, C. H. Rycroft, and F. Gibou, A multigrid method on non-graded adaptive octree and quadtree cartesian grids, J. Sci. Comput. 55, 1–15 (2013).

P. J. M. Monteiro, C. H. Rycroft, and G. I. Barenblatt, A mathematical model of fluid and gas flow in nanoporous media, Proc. Natl. Acad. Sci. 109, 20309–20313 (2012).

C. H. Rycroft and E. Bouchbinder, Fracture toughness of metallic glasses: annealing-induced embrittlement, Phys. Rev. Lett. 109, 194301 (2012).

K. Kamrin, C. H. Rycroft, J.-C. Nave, Reference map technique for finite-strain elasticity and fluid–solid interaction, J. Mech. Phys. Solids 60, 1952–1969 (2012).

L.-C. Lin, A. H. Berger, R. L. Martin, J. Kim, J. A. Swisher, K. Jariwala, C. H. Rycroft, A. S. Bhown, M. W. Deem, M. Haranczyk, and B. Smit, In silico screening of carbon capture materials, Nature Materials 11, 633–641 (2012).

C. H. Rycroft and F. Gibou, Simulations of a stretching bar using a plasticity model from the shear transformation zone theory, J. Comput. Phys. 231, 2155–2179 (2012).

Curriculum Vitae: Chris H. Rycroft 3

JOURNAL PUBLICATIONS (CONTINUED)

T. F. Willems, C. H. Rycroft, M. Kazi, J. C. Meza, and M. Haranczyk, Algorithms and tools for highthroughput geometry-based analysis of crystalline porous materials, Microporous and Mesoporous Materials 149, 134–141 (2012).

C. H. Rycroft, Y. Wong, and M. Z. Bazant, Fast spot-based multiscale simulations of granular flow, Powder Technol. 200, 1–11 (2010).





C. H. Rycroft, Voro++: a three-dimensional Voronoi cell library in C++, Chaos 19, 041111 (2009).

C. H. Rycroft, A. V. Orpe, and A. Kudrolli, Physical test of a particle simulation model in a sheared granular system, Phys. Rev. E 80, 031305 (2009).

C. H. Rycroft, K. Kamrin, and M. Z. Bazant, Assessing continuum relationships in simulations of granular flow, J. Mech. Phys. Solids. 57, 828–839 (2009).

K. Kamrin, C. H. Rycroft, and M. Z. Bazant, The stochastic flow rule: a multi-scale model for granular plasticity, Modelling Simul. Mater. Sci. Eng. 15, S449–S464 (2007).

C. H. Rycroft, G. S. Grest, J. W. Landry, and M. Z. Bazant, Analysis of granular flow in a pebble-bed nuclear reactor, Phys. Rev. E 74, 021306 (2006).

C. H. Rycroft, M. Z. Bazant, J. W. Landry, and G. S. Grest, Dynamics of random packings in granular flow, Phys. Rev. E 73, 051306 (2006).

JOURNAL MANUSCRIPTS IN REVIEW

C. H. Rycroft and M. Z. Bazant, Asymmetric collapse by dissolution or melting in a uniform flow, submitted to Proc. Roy. Soc. A.

M. M. Gaglia, C. H. Rycroft, and B. A. Glaunsinger, A degenerate element underlies sequence-specific cleavage by the viral RNase SOX, submitted to PLOS Pathogens.

–  –  –

SELECTED CONFERENCE PRESENTATIONS

High-throughput screening of crystalline porous materials, PICS Symposium – D3 : Deformation, Defects, Diagnosis, University of Pennsylvania, Philadelphia, May 28–29, 2015.

An Eulerian projection method for quasi-static elastoplasticity, SIAM Computational Science and Engineering 2015, Salt Lake City, March 14–18, 2015.

Modeling the toughness of metallic glasses, APS March Meeting, San Antonio, March 2–6, 2015.

Modeling nonlinear elastic interactions between mammary acini, Joint ICBP/PSOC Mathematical Modeling Meeting, Tampa, February 26–28, 2015.

Interfacial dynamics of dissolving objects in fluid flow, BIRS Workshop on Modern Applications of Complex Variables, Banff, Canada, January 11–16, 2014.

Modeling the toughness of metallic glasses, 112th Statistical Mechanics Conference, Rutgers University, New Brunswick, December 14–16, 2014.

Extending the fluid projection method to quasi-static elastoplasticity, APS Division of Fluid Dynamics Annual Meeting, San Francisco, November 23–25, 2014.

Interfacial dynamics of dissolving objects in fluid flow, APS Division of Fluid Dynamics Annual Meeting, Pittsburgh, November 24–26, 2013.

Mechanical simulation of mammalian acini, SIAM Computational Science and Engineering 2013, Boston, February 26, 2013.

Granular flows in pebble-bed nuclear reactors: scaling and dust generation, International Congress on Advances in Nuclear Power Plants, Chicago, June 24–28, 2012.

Application of the Voronoi tessellation for high-throughput analysis of crystalline porous materials, Applied Mathematics Principal Investigators Meeting, Washington DC, October 17–19, 2011.

A mechanical model of mammalian acinus growth, ICIAM 2011 – 7th International Congress on Industrial and Applied Mathematics, Vancouver, July 18–22, 2011.

Computation of three-dimensional standing water waves, SIAM Computational Science and Engineering 2011, Reno, February 28–March 4, 2011.

Real-time control of mixing in dense granular flow, Bay Area Scientific Computing Day, Lawrence Berkeley National Laboratory, Berkeley, May 9, 2009.

Anisotropies in granular temperature in a dense sheared granular flow, APS March Meeting, Pittsburgh, March 16–20, 2009.

A multiscale simulation technique for granular flow, IMA Conference on Dense Granular Flows, Isaac Newton Institute, University of Cambridge, January 5–9, 2009.

A multiscale simulation technique for granular flow, Canadian Mathematical Society Winter Meeting, Ottawa, December 6–8, 2008.

A multiscale simulation technique for optimization of granular mixing, Applied Mathematics Principal Investigators Meeting, Argonne National Laboratory, October 15–17, 2008.

A coupled continuum/discrete model of dense granular flow, Bay Area Scientific Computing Day, MSRI, Berkeley, March 29, 2008.

Curriculum Vitae: Chris H. Rycroft 6

SELECTED CONFERENCE PRESENTATIONS (CONTINUED)

Stress, strain rate, and packing fraction in granular flow, APS March Meeting, Denver, March 2007.

Voronoi volumes in dense granular flow, APS March Meeting, Baltimore, March 2006.

Dynamics of random packings in granular flow, APS March Meeting, Los Angeles, March 2005.

Toward a theory of diffusion in dense granular flow, APS March Meeting, Montreal, March 2004.

–  –  –

FELLOWSHIPS AND AWARDS Robert M. Rose Presidential Fellowship 2002–2003 Massachusetts Institute of Technology Foundress Prize 2001 Pembroke College, University of Cambridge Foundation Scholarship 2000–2001 Pembroke College, University of Cambridge Legg Prize 1999 Pembroke College, University of Cambridge



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