RES.12-001 Topics in Fluid Dynamics, Spring 2010

This collection of three essays was developed from the author's experience teaching the course Fluid Dynamics of the Atmosphere and Ocean, offered to graduate students entering the MIT/WHOI Joint Program in Oceanography. The essays are: 1. Dimensional Analysis of Models and Data Sets: Similarit...

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Main Author: Price, James F.
Language:en-US
Published: 2023
Subjects:
Online Access:https://hdl.handle.net/1721.1/150819
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author Price, James F.
author_facet Price, James F.
author_sort Price, James F.
collection MIT
description This collection of three essays was developed from the author's experience teaching the course Fluid Dynamics of the Atmosphere and Ocean, offered to graduate students entering the MIT/WHOI Joint Program in Oceanography. The essays are: 1. Dimensional Analysis of Models and Data Sets: Similarity Solutions and Scaling Analysis,2. A Coriolis Tutorial, and3. Lagrangian and Eulerian Representations of Fluid Flow: Kinematics and the Equations of Motion The goal of this resource is to help each student master the concepts and mathematical tools that make up the foundation of classical and geophysical fluid dynamics. These essays treat these topics in considerably greater depth than a comprehensive fluids textbook can afford, and they are accompanied by data files (MATLAB® and Fortan) that allows some application and experimentation. They should be suitable for self study.
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spelling mit-1721.1/1508192023-05-27T03:49:23Z RES.12-001 Topics in Fluid Dynamics, Spring 2010 Topics in Fluid Dynamics Price, James F. simple pendulum inviscid pendulum viscous pendulum Reynolds number decay rate nonlinear projectile problem Coriolis force inertial forces centrifugal force energy budget Lagrangian velocity Eulerian velocity Eulerian equations 141101 This collection of three essays was developed from the author's experience teaching the course Fluid Dynamics of the Atmosphere and Ocean, offered to graduate students entering the MIT/WHOI Joint Program in Oceanography. The essays are: 1. Dimensional Analysis of Models and Data Sets: Similarity Solutions and Scaling Analysis,2. A Coriolis Tutorial, and3. Lagrangian and Eulerian Representations of Fluid Flow: Kinematics and the Equations of Motion The goal of this resource is to help each student master the concepts and mathematical tools that make up the foundation of classical and geophysical fluid dynamics. These essays treat these topics in considerably greater depth than a comprehensive fluids textbook can afford, and they are accompanied by data files (MATLAB® and Fortan) that allows some application and experimentation. They should be suitable for self study. 2023-05-26T14:24:18Z 2023-05-26T14:24:18Z 2010-06 2023-05-26T14:24:27Z RES.12-001-Spring2010 RES.12-001 IMSCP-MD5-d68e251eddd603484361409d9184ba75 https://hdl.handle.net/1721.1/150819 en-US This site (c) Massachusetts Institute of Technology 2023. Content within individual courses is (c) by the individual authors unless otherwise noted. The Massachusetts Institute of Technology is providing this Work (as defined below) under the terms of this Creative Commons public license ("CCPL" or "license") unless otherwise noted. The Work is protected by copyright and/or other applicable law. Any use of the work other than as authorized under this license is prohibited. By exercising any of the rights to the Work provided here, You (as defined below) accept and agree to be bound by the terms of this license. The Licensor, the Massachusetts Institute of Technology, grants You the rights contained here in consideration of Your acceptance of such terms and conditions. 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spellingShingle simple pendulum
inviscid pendulum
viscous pendulum
Reynolds number
decay rate
nonlinear projectile problem
Coriolis force
inertial forces
centrifugal force
energy budget
Lagrangian velocity
Eulerian velocity
Eulerian equations
141101
Price, James F.
RES.12-001 Topics in Fluid Dynamics, Spring 2010
title RES.12-001 Topics in Fluid Dynamics, Spring 2010
title_full RES.12-001 Topics in Fluid Dynamics, Spring 2010
title_fullStr RES.12-001 Topics in Fluid Dynamics, Spring 2010
title_full_unstemmed RES.12-001 Topics in Fluid Dynamics, Spring 2010
title_short RES.12-001 Topics in Fluid Dynamics, Spring 2010
title_sort res 12 001 topics in fluid dynamics spring 2010
topic simple pendulum
inviscid pendulum
viscous pendulum
Reynolds number
decay rate
nonlinear projectile problem
Coriolis force
inertial forces
centrifugal force
energy budget
Lagrangian velocity
Eulerian velocity
Eulerian equations
141101
url https://hdl.handle.net/1721.1/150819
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