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Lifting-a-sessile-drop
This repository contains the codes used for simulating the cases discussed in the manuscript: Lifting a sessile oil drop with an impacting oneGuideBasilisk
Impact-forces-of-water-drops-falling-on-superhydrophobic-surfaces
This repository contains the codes used for simulating the cases discussed in the manuscript: Impact forces of water drops on superhydrophobic surfaces. The results presented here are currently under review in Physical Review Letters.gerris-fft-particles
The original gerris source code written by Prof. Popinet and modified by Tomar et al. We aim at modifying the code further to implement better Lagrangian model.Vatsal_CV
This is the LaTeX source code of my CVFluidChains
On collision of liquid jets, mesmerizing fluidic structures are formed. At low velocities of the jet, stable liquid sheets are formed bounded with thick rim. This repository contains the Gerris simulation scripts and some of the major post-processing codes used.PlanarCouetteFlow_PowerLaw
The code implements viscosity for non-Newtonian fluids in Basilisk C (http://basilisk.fr/). This uses the codes and algorithm discussed at http://basilisk.fr/sandbox/M1EMN/Exemples/bingham_simple.c and extends it for Generalized Newtonian fluid. The test case is for planar Couette flow. For further documentation contact [email protected]postProcessPython
This is a collection of post processing modules for Gerris and Basilisk CBasiliskPostProcessingMatlab
This repository contains various MATLAB scripts for visualization of Basilisk C (http://basilisk.fr/) simulation data.Vatsal-Thesis
This is the LaTeX source code for my PhD thesis available here: https://doi.org/10.3990/1.9789036554077IITR-ThesisTemplate
This is the template for thesis at Indian Institute of Technology Roorkee. Suggestions are welcome to make this thesis exhaustive.PlanarCouetteFlow_PowerLawV2
This repository has minor changes from the repository: [email protected]:VatsalSy/PlanarCouetteFlow_PowerLaw.gitIntegroDifferentialEquation
This repository contains some MATLAB files which can be used to numerically solve integro-differential equations.Drop-impact-on-viscous-liquid-films
Drop impact on viscous liquid filmsLaplacePoissonCylindrical
This is a Laplace-Poisson solver for Transient Heat Conduction. The library is written to specifically solve the Electro Chemical Discharge MachiningRotatingCouette
This repository contains implementation of Viscoplastic viscosity in Basilsik C. Trying to simulate the test case from Gerris: http://gerris.dalembert.upmc.fr/gerris/tests/tests/couette.htmlTaylor-Culick-retractions
This repository is under construction and will contain all the codes for reproducibility of the results in the paper: Taylor-Culick retraction at a liquid-air interface by Sanjay et al. (2021)Drop-impact-on-viscous-liquid-films_LaTeX_JFM
Drop impact on viscous liquid films_LaTeX_JFMViscoElasticDropImpact
CFD-PythonVatsal
This is practice codes for the course in CFD by Prof. Barba. https://github.com/barbagroup/CFDPythonNewtonian-Drop-in-VP-medium
When-does-a-drop-stop-bouncing
CFD-basics
Contains a few basic CFD codes.chainPaper
chain paper for POFLidDrivenFlowVP
This repository contains implementation of Viscoplastic viscosity in Basilsik C.Project-ideas-for-prospective-students
Project ideas for prespective studentsBursting-Bubble-in-a-Viscoplastic-Medium-arXiV-submission
This repository contains the latex source files for our submission of Bursting Bubble in a Viscoplastic Medium to arXiVVatsalSy
GromacsPostProcessing
This repository contains some scripts for post processing of Gromacs (http://www.gromacs.org/) data filesExperimentMatplotlibFont
Some experiments with font rendering in MatplotlibWhen-does-an-impacting-drop-stop-bouncing-_LaTeX_JFM
When does an impacting drop stop bouncing?_LaTeX_JFMBasiliskVisualization
These codes can be used to do on the fly (almost) visualisation during Basilisk C simulations (http://basilisk.fr/)DropSpreadingOnSolid
Simulate the spreading of a drop on a partially wetting surface.Love Open Source and this site? Check out how you can help us