CHE 313 CASE STUDY ASSIGNMENT (Spring 99)

CHE 313 CASE STUDY ASSIGNMENT (Spring 99)

CHE 313 CASE STUDY ASSIGNMENT (Spring 2012)

Due: Friday May 25 2012 at 10:00 AM

Transport Phenomena Modeling (Optional)

This is a case study that you must select based on any topics related to the applications of Transport Phenomena. A list of acceptable topic is available so you can pick a topic from the list, the first person signing the name next to the topic will be responsible for it. You can also choose your own topic with approval from the instructor. You must read at least 2 references beside the reference given to you and turn in a copy of these two referencesin electronic form if possible. Your case study must be quantitative. There must be an equation or set of equations presented to describe the transport phenomena. The solutions to the equation(s) must also be presented and discussed.

Grading criteria:

Presentation of relevant information (20%)

- You must present your case study with a typed-written title page and an executive summary. The format for the title page is given in the opposite page. You need to assign a title to your case study.

- You must write an introduction (backgrounds materials) for the topic before you describe the transport model, its significances and applications. You must provide all the necessary information toward the solution of the model. You should include picture(s) to illustrate the description.

Model development (25%)

- Make a sketch of the system

- List all the assumptions, physical properties, and parameters.

- Derive the equations for your system in details.

Solution (25%)

- Solve the transport model analytically or by using any software package (You can use COMSOL MULTIPHYSICS, MATLAB, EXCEL...).

- Verify and present the results in graphical form. You should plot the dependent variable(s) versus the independent variable(s) with a realistic set of parameters. You are to plot the effect of perturbations (+/- 50%) of these parameters on the dependent variable(s).

Discussion of results (20%)

-Discuss the assumptions and the solutions and possible applications of the solution.

General completeness and neatness (10%)

- Your report should contain: (A sample report is available in the distribution folder in the CHE 313 course)

1. Title page.

2. Executive summary: This should succinctly summarize your problem, your results, and your conclusions. This summary should not exceed two typed written pages.

3. Transport Model: This should contain an introduction and detailed description of the model.

4. Model Solution: This should contain solution, and results in graphical form.

5. Discussion. This should contain your analysis of the results and the application.

6. Appendices: This should contain any relevant materials (EX: Derivation of equation(s), your computer program, computer output, copies of reference literatures,...)

Put your report and references in a folder created with your last name. Copy this folder into the Homework & Exam folder of CHE 313 by May 27 2011 at 11 AM.

Lists of acceptable topics: Name

(1)1 Numerical solution for the oxygen concentrations

within the blood and tissue regions ______

(2)1 Diffusion of urea in both stagnant and flowing

blood (Colton and Lowrie 1981)_____Vo Quynh______

(3)1 The sieving coefficient for the case of concentration

polarization (Mochizuki and Zydney 1992)_____Alex______

(4)1 Hindered transport of large molecules in

liquid-filled pores (Deen 1987)______

(5)1 Modeling of oxygen uptake in perfluorocarbon

emulsions (Shah 1996)______

(6)1 Reaction and Diffusion in Immobilized Enzyme______

Systems.

(7)1 A Two-Compartment Model for an Intravenous

Injection ______

(8)1 A Two-Compartment Model for First Order

Absorption______

(9)1 Analysis of a Membrane Oxygenator, Oxygen

Transfer______

(10)1 Analysis of a Membrane Oxygenator, Carbon

Dioxide Transfer______

(11)1 Reactor Design Equation: Packed-Bed Reactor,

Well-Mixed Reactor______

(12)1 Pharmacokinetic Modeling of Inulin Transport

in a Polymeric Support Structure_____Linh______

(13)1 Islet Insulin Release Model______

(14)1 Pharmacokinetic Modeling of Glucose and

Insulin Interactions____ThanhBinh______

(15)1 Using the Pharmacokinetic Model to Evaluate

the Performance of a Bioartificial Pancreas_____Shaun______

(16)* Oscillating Flow in a Cylindrical Tube______

(17)* Model of Diffusion of a Solute into a Sphere ____Scott______

(18)* Transport Effects Upon Enzymatic Reactions______

(19)* Receptor-Ligand Binding Kinetics______

(20)* A Kinetic Model for LDL Receptor-Mediated

Endocytosis______

(21)* Receptor Regulation during Receptor-Mediated

Endocytosis______

(22)* Simplified Model for Gene Induction and Expression______

(23)* Biophysics of Leukocyte Rolling and Adhesion______

(24)* Stochastic Effects on Chemical Interactions______

(25)* Dynamics of Oxygenation of Blood in Lung Capillaries______

(26)* Nitric Oxide Production and Transport in Tissues______

(27)* Unidirectional Transport in a Solid Tumor______

(28)* Pharmacokinetic Analysis of Methotrexate______

(29)*Allometric Scaling Law in Pharmacokinetic Analysis______

1Basic Transport Phenomena in Biomedical Engineering by Fournier, Taylor & Francis, 2007

*Transport Phenomena in Biological Systems by Truskey, Yuan, and Katz, Prentice Hall, 2004

California State Polytechnic University, Pomona

Chemical&Materials Engineering Department

CHE 313: Mass Tranfer

CASE STUDY

The Performance of a Bioartificial Pancreas

Date: May 27 2011

by

Last name, first

This case study is given under the Honor System and by typing my name here

______

I have agreed that the work submitted is my work alone and that I neither sought nor received help from others.

Presentation20%______

Model development25%______

Solution 25%______

Discussion 20% ______

Completeness and Neatness10%______