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Mao-Lin Shen's Projects

2d-navier-stokes-solver icon 2d-navier-stokes-solver

As the field of Computational Fluid Dynamics (CFD) progresses, the fluid flows are more and more analysed by using simulations with the help of high speed computers. In order to solve and analyse these fluid flows we require intensive simulation involving mathematical equations which governs the fluid flow, these are Navier Stokes (NS) equation. Solving these equations has become a necessity as almost every problem which is related to fluid flow analysis call for solving of Navier Stokes equation. These NS equations are partial differential equations so different numerical methods are used to solve these equations. Solving these partial differential equations so different numerical methods requires large amount of computing power and huge amount of memory is in play. Only practical feasible way to solve these equation is write a parallel program to solve them, which can then be run on powerful hardware capable of parallel processing to get the desired results High speed supercomputer will provide us very good performance in terms of reduction in execution time. In paper focus will be on finite volume as a numerical method. We will also see what GPGPU (General-Purpose computing on Graphics Processing Units) is and how we are taking its advantages to solve CFD problems.

cdeps icon cdeps

Community Data Models for Earth Prediction Systems

cfdpython icon cfdpython

A sequence of Jupyter notebooks featuring the "12 Steps to Navier-Stokes" http://lorenabarba.com/

cime icon cime

Common Infrastructure for Modeling the Earth

climate icon climate

Ruby helper files to read GIobal Circulation Climate Change Model output netCDF (.nc) outputs available from data aggregators at IPCC.

cmeps icon cmeps

NUOPC Community Mediator for Earth Prediction Systems

cmip5_esv_historicalpfts icon cmip5_esv_historicalpfts

This set of code was developed to analyze differences between the CMIP5 piControl (pre-industrial control) modeled distributions of PFTs and the Euro-American settlement vegetation dataset for the upper Midwest through the northeastern United States.

cmip6_cvs icon cmip6_cvs

Controlled Vocabularies (CVs) for use in CMIP6

docker-tutorial icon docker-tutorial

Docker 基本教學 - 從無到有 Docker-Beginners-Guide 教你用 Docker 建立 Django + PostgreSQL 📝

eddytracking icon eddytracking

Code for the detection and tracking of eddies, following Chelton et al. (Prog. Ocean., 2011) given a series of sea level maps.

electron-ssr-backup icon electron-ssr-backup

electron-ssr原作者删除了这个伟大的项目,故备份了下来,不继续开发,且用且珍惜

firacode icon firacode

Monospaced font with programming ligatures

fluid2d icon fluid2d

A versatile Python-Fortran CFD code that solves a large class of 2D flows

hugo icon hugo

The world’s fastest framework for building websites.

icar icon icar

The Intermediate Complexity Atmospheric Research model (ICAR)

iris icon iris

A powerful, easy to use, and community-driven Python library for analysing and visualising meteorological and oceanographic data sets.

learn-git-in-30-days icon learn-git-in-30-days

這是 Will 保哥在 2013 第 6 屆 iT 邦幫忙鐵人賽年度大獎的得獎著作【30 天精通 Git 版本控管】,歡迎大家 fork 我,如果有看見任何文字勘誤,也歡迎利用 pull request 來通知我修正,謝謝!

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