V. Spandan
R. Verzicco

Joint POF group publications (13)

2022

FSEI-GPU: GPU accelerated simulations of the fluid-structure-electrophysiology interaction in the left heart[arΧiv]
F. Viola, V. Spandan, V. Meschini, J. Romero, M. Fatica, M. de Tullio, and R. Verzicco
Comp. Phys. Comm. 273, 108248 (2022)BibTeΧ

2020

Non-monotonic transport mechanisms in vertical natural convection with dispersed light droplets[arΧiv]
C.S. Ng, V. Spandan, R. Verzicco, and D. Lohse
J. Fluid Mech. 900, A34 (2020)BibTeΧ

2018

Growth dynamics of microbubbles on microcavity arrays by solvent exchange: Experiments and numerical simulations[Open Access]
S. Peng, V. Spandan, R. Verzicco, D. Lohse, and X. Zhang
J. Colloid Interface Sci. 532, 103 – 111 (2018)BibTeΧ
A fast moving least squares approximation with adaptive Lagrangian mesh refinement for large scale immersed boundary simulations[Open Access]
V. Spandan, D. Lohse, M. de Tullio, and R. Verzicco
J. Comput. Phys. 375, 228 – 239 (2018)BibTeΧ
Physical mechanisms governing drag reduction in turbulent Taylor–Couette flow with finite-size deformable bubbles[Open Access]
V. Spandan, R. Verzicco, and D. Lohse
J. Fluid Mech. 849, R3 (2018)BibTeΧ
AFiD-GPU: A versatile Navier–Stokes solver for wall-bounded turbulent flows on GPU clusters[arΧiv]
X. Zhu, E. Phillips, V. Spandan, J. Donners, G. Ruetsch, J. Romero, R. Ostilla Mónico, Y. Yang, D. Lohse, R. Verzicco, M. Fatica, and R.J.A.M. Stevens
Comp. Phys. Comm. 229, 199–210 (2018)BibTeΧ
Flow-induced dissolution of femtoliter surface droplet arrays[arΧiv]
L. Bao, V. Spandan, Y. Yang, B. Dyett, R. Verzicco, D. Lohse, and X. Zhang
Lab Chip 18, 1066–1074 (2018)BibTeΧ

2017

Life stages of wall-bounded decay of Taylor-Couette turbulence[arΧiv]
R. Ostilla Mónico, X. Zhu, V. Spandan, R. Verzicco, and D. Lohse
Phys. Rev. Fluids 2, 114601 (2017)BibTeΧ
Deformable ellipsoidal bubbles in Taylor-Couette flow with enhanced Euler-Lagrangian tracking[arΧiv]
V. Spandan, R. Verzicco, and D. Lohse
Phys. Rev. Fluids 2, 104304 (2017)BibTeΧ
A parallel interaction potential approach coupled with the immersed boundary method for fully resolved simulations of deformable interfaces and membranes[arΧiv]
V. Spandan, V. Meschini, R. Ostilla Mónico, D. Lohse, G. Querzoli, M. de Tullio, and R. Verzicco
J. Comput. Phys. 348, 567 – 590 (2017)BibTeΧ

2016

Deformation and orientation statistics of neutrally buoyant sub-Kolmogorov ellipsoidal droplets in turbulent Taylor–Couette flow[arΧiv]
V. Spandan, D. Lohse, and R. Verzicco
J. Fluid Mech. 809, 480–501 (2016)BibTeΧ
Drag reduction in numerical two-phase Taylor–Couette turbulence using an Euler–Lagrange approach[arΧiv]
V. Spandan, R. Ostilla Mónico, R. Verzicco, and D. Lohse
J. Fluid Mech. 798, 411–435 (2016)BibTeΧ
Identifying coherent structures and vortex clusters in Taylor-Couette turbulence[Open Access]
V. Spandan, R. Ostilla Mónico, D. Lohse, and R. Verzicco
J. Phys. Conf. Ser. 708, 012006 (2016)BibTeΧ