Kara Aerodynamics Research Laboratory
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Updated
Oct 17, 2024 - TeX
Kara Aerodynamics Research Laboratory
Software and Data Associated with "Understanding Fast Adsorption in Single-Solute Breakthrough Curves"
A compressible, flat-plate, laminar boundary layer solver in Julia! This routine computes the velocity and temperature profiles with variable viscosity and thermal conductivity. The numerical results are validated against wind-tunnel measurements.
This project aims to replicate and extend the experiments on the dynamical adjustment problem presented by Shubert et al. (1995). We are working to recreate the experiments and conduct further experiments to explore the problem based on the dynamical model.
MATLAB code that solves the Boundary Layer equations for a rotating sphere
MATLAB code that solves the Stewartson (1958) system for the equatorial flow around a rotating sphere.
MATLAB code that solves and compiles the steady flow around a rotating sphere with variable viscosity
MATLAB code that solves and compiles the steady flow around a rotating sphere
Analyse data & 2D flux footprints from Scintec's BLS scintillometers.
A suite of tools for computing sensible heat fluxes from the BLS450 scintillometer and working with 2D flux footprints.
Repository of methods to assess boundary layer transition
A simple Numerical solution to the Blasius Similarity Boundary Layer equation.
Robust solver for the compressible Blasius equations for laminar, high-speed flow, boundary layers over a flat plate.
Grad Course (2020-2021), CE 200B – Environmental Fluid Mechanics II
Numerical heat transfer code for external flows
Assigned Project for "Simulating Ocean, Atmosphere and Climate" course of Climate Physics at University Utrecht: An investigation of the dynamics governing the water mass properties in the Nordic Seas
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