Elliptic Partial Differential Equations Direct Method http numericalmethods

  • Slides: 16
Download presentation
Elliptic Partial Differential Equations – Direct Method http: //numericalmethods. eng. usf. edu Transforming Numerical

Elliptic Partial Differential Equations – Direct Method http: //numericalmethods. eng. usf. edu Transforming Numerical Methods Education for STEM Undergraduates 9/17/2020 http: //numericalmethods. eng. usf. edu 1

For more details on this topic Ø Go to http: //numericalmethods. eng. usf. edu

For more details on this topic Ø Go to http: //numericalmethods. eng. usf. edu Ø Click on Keyword Ø Click on Elliptic Partial Differential Equations

You are free to Share – to copy, distribute, display and perform the work

You are free to Share – to copy, distribute, display and perform the work to Remix – to make derivative works

Under the following conditions Attribution — You must attribute the work in the manner

Under the following conditions Attribution — You must attribute the work in the manner specified by the author or licensor (but not in any way that suggests that they endorse you or your use of the work). Noncommercial — You may not use this work for commercial purposes. Share Alike — If you alter, transform, or build upon this work, you may distribute the resulting work only under the same or similar license to this one.

Physical Example of an Elliptic PDE

Physical Example of an Elliptic PDE

Discretizing the Elliptic PDE

Discretizing the Elliptic PDE

Example: Direct Method Consider a plate that is subjected to the boundary conditions shown

Example: Direct Method Consider a plate that is subjected to the boundary conditions shown below. Find the temperature at the interior nodes using a square grid with a length of by using the direct method.

Example: Direct Method We can discretize the plate by taking,

Example: Direct Method We can discretize the plate by taking,

Example: Direct Method The nodal temperatures at the boundary nodes are given by:

Example: Direct Method The nodal temperatures at the boundary nodes are given by:

Example: Direct Method Here we develop the equation for the temperature at the node

Example: Direct Method Here we develop the equation for the temperature at the node (2, 3) i=2 and j=3

Example: Direct Method We can develop similar equations for every interior node leaving us

Example: Direct Method We can develop similar equations for every interior node leaving us with an equal number of equations and unknowns. Question: How many equations would this generate?

Example: Direct Method We can develop similar equations for every interior node leaving us

Example: Direct Method We can develop similar equations for every interior node leaving us with an equal number of equations and unknowns. Question: How many equations would this generate? Solving yields: Answer: 12

THE END http: //numericalmethods. eng. usf. edu

THE END http: //numericalmethods. eng. usf. edu

Acknowledgement This instructional power point brought to you by Numerical Methods for STEM undergraduate

Acknowledgement This instructional power point brought to you by Numerical Methods for STEM undergraduate http: //numericalmethods. eng. usf. edu Committed to bringing numerical methods to the undergraduate

For instructional videos on other topics, go to http: //numericalmethods. eng. usf. edu/videos/ This

For instructional videos on other topics, go to http: //numericalmethods. eng. usf. edu/videos/ This material is based upon work supported by the National Science Foundation under Grant # 0717624. Any opinions, findings, and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of the National Science Foundation.

The End - Really

The End - Really