AeroSandbox
xflrpy
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AeroSandbox | xflrpy | |
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6 | 1 | |
651 | 44 | |
- | - | |
9.7 | 4.5 | |
18 days ago | 9 months ago | |
Jupyter Notebook | C++ | |
MIT License | GNU General Public License v3.0 only |
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AeroSandbox
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UAV DESIGN
this guy's Python library, validated against AVL and - XFLR5 https://peterdsharpe.github.io/AeroSandbox/
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Airfoil smoothing and/or point interpolation algorithms?
You can use the AeroSandbox Python package for this. pip install aerosandbox to install, and then:
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I gave a presentation on the use of Python in aerospace engineering
AeroSandbox - an optimization suite that combines the ease-of-use of NumPy syntax with the power of modern automatic differentiation. AeroSandbox contains dozens of end-to-end-differentiable aerospace physics models, allowing you to simultaneously optimize an aircraft's aerodynamics, structures, propulsion, mission trajectory, stability, and more. Best of all, it is designed to be run on a laptop, not a supercomputer.
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Looking free or opensource aerodynamics software
This might be the sort of thing you're looking for.
- AeroSandbox
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Run and visualise an aerodynamic simulation
I would like to use a library. I saw AeroSandbox who looks great but it seem that I can't load a custom file. Here's the GitHub : https://github.com/peterdsharpe/AeroSandbox
xflrpy
What are some alternatives?
AeroPython - Classical Aerodynamics of potential flow using Python and Jupyter Notebooks
jsbsim - An open source flight dynamics & control software library
CFDPython - A sequence of Jupyter notebooks featuring the "12 Steps to Navier-Stokes" http://lorenabarba.com/
symforce - Fast symbolic computation, code generation, and nonlinear optimization for robotics
PteraSoftware - Ptera Software is a fast, easy-to-use, and open-source software package for analyzing flapping-wing flight.
Heuristic_path_planners - Collection of classes and functions to allow 2D/3D path generation with heuristic algorithms such as A*, Theta* and LazyTheta* and ROS Interfaces
AlgorithmicTrading - This repository contains three ways to obtain arbitrage which are Dual Listing, Options and Statistical Arbitrage. These are projects in collaboration with Optiver and have been peer-reviewed by staff members of Optiver.
palanteer - Visual Python and C++ nanosecond profiler, logger, tests enabler
Zygote-Mutating-Arrays-WorkAround.jl - A tutorial on how to work around ‘Mutating arrays is not supported’ error while performing automatic differentiation (AD) using the Julia package Zygote.
ChaiScript - Embedded Scripting Language Designed for C++