From steffe@msu.edu Mon Nov 4 15:47:32 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 04 Nov 2002 10:47:32 -0500 Subject: [FECLASS]learning objectives Message-ID: <5.1.0.14.2.20021104104717.026e3e20@mailhost.egr.msu.edu> --=====================_324454443==_.ALT Content-Type: text/plain; charset="us-ascii"; format=flowed Steam Injection Heating Be able to: 1. Describe the principle of steam injection heating. 2. Describe the equipment involved in steam injection heating. 3. Calculate the steam requirements for a steam injection heating process 4. Determine the proper parameters for operating a flash cooling system so the amount of water added during steam injection is removed in the cooling process. Evaporation (applied to MSU Falling Film Evaporator) Be able to: 1. Describe the mass and energy balance equations that describe the performance of a single-effect evaporator. 2. Determine process performance parameters (such and amount of steam required for heating) based on the mass and energy balance equations. 3. Identify the mechanical components, identify the control components, and describe the overall operation (including all inputs and outputs) of a single-effect falling film evaporator. 4. Calculate the rate of heat transfer, area, overall heat transfer coefficient, and steam requirements for evaporation. 5. Determine convection heat losses from the outside of the evaporator. --=====================_324454443==_.ALT Content-Type: text/html; charset="us-ascii"
Steam Injection Heating
Be able to:
1.      Describe the principle of steam injection heating.
2.      Describe the equipment involved in steam injection heating.
3.      Calculate the steam requirements for a steam injection heating process
4.      Determine the proper parameters for operating a flash cooling system so the amount of water added during steam injection is removed in the cooling process.


Evaporation (applied to MSU Falling Film Evaporator)
Be able to:
1.      Describe the mass and energy balance equations that describe the performance of a single-effect evaporator. 
2.      Determine process performance parameters (such and amount of steam required for heating) based on the mass and energy balance equations.
3.      Identify the mechanical components, identify the control components, and describe the overall operation (including all inputs and outputs) of a single-effect falling film evaporator.
4.      Calculate the rate of heat transfer, area, overall heat transfer coefficient, and steam requirements for evaporation.
5.      Determine convection heat losses from the outside of the evaporator.
--=====================_324454443==_.ALT-- From steffe@msu.edu Mon Nov 4 15:48:45 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 04 Nov 2002 10:48:45 -0500 Subject: [FECLASS]Assignment Message-ID: <5.1.0.14.2.20021104104735.026e5090@mailhost.egr.msu.edu> --=====================_324527478==_.ALT Content-Type: text/plain; charset="us-ascii"; format=flowed Pasteurized Milk Ordinance: http://vm.cfsan.fda.gov/~ear/p-nci.html (Tanks) Section 8 at http://www.egr.msu.edu/~steffe/dairyplant/dairy.htm --=====================_324527478==_.ALT Content-Type: text/html; charset="us-ascii" Pasteurized Milk Ordinance: http://vm.cfsan.fda.gov/~ear/p-nci.html
(Tanks) Section 8 at http://www.egr.msu.edu/~steffe/dairyplant/dairy.htm
--=====================_324527478==_.ALT-- From steffe@msu.edu Mon Nov 11 16:59:57 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 11 Nov 2002 11:59:57 -0500 Subject: [FECLASS]Web assignment Message-ID: <5.1.0.14.2.20021111115942.027f60a0@mailhost.egr.msu.edu> Section 10 at http://www.egr.msu.edu/~steffe/dairyplant/dairy.htm From steffe@msu.edu Mon Nov 11 18:39:41 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 11 Nov 2002 13:39:41 -0500 Subject: [FECLASS]More homogenization figures Message-ID: <5.1.0.14.2.20021111133923.01d7f010@mailhost.egr.msu.edu> http://www.egr.msu.edu/~steffe/handbook/homog.html From steffe@msu.edu Mon Nov 11 22:03:30 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 11 Nov 2002 17:03:30 -0500 Subject: [FECLASS]Learning Objectives Message-ID: <5.1.0.14.2.20021111170312.027faa00@mailhost.egr.msu.edu> --=====================_32222576==_.ALT Content-Type: text/plain; charset="us-ascii"; format=flowed Tanks: Power and Heat Transfer Be able to: 1. Describe and calculate the impeller Reynolds number for Newtonina and non-Newtonian fluids. 2. Describe and calculate the average shear rate for non-Newtonian fluids in tanks. 3. Describe and calculate the power number. 4. Calculate power numbers for tanks. 5. Apply the lumped parameter equation to the heating and cooling of well mixer fluids in tanks. 6. Evaluate overall heat transfer coefficients describing heat transfer in mixer tanks. 7. Homogenization Be able to: 1. Describe the purpose and mechanism of homogenization. 2. Describe what happens to fat globules during the homogenization of milk. 3. Describe the mechanical means of achieving homogenization. 4. Calculate the power consumption and temperature increase during homogenization. 5. Provide typical homogenization pressures for two-stage homogenization of dairy products. Describe (in detail) a two-stage homogenization valve. --=====================_32222576==_.ALT Content-Type: text/html; charset="us-ascii"
Tanks: Power and Heat Transfer
Be able to:
1.      Describe and calculate the impeller Reynolds number for Newtonina and non-Newtonian fluids.
2.      Describe and calculate the average shear rate for non-Newtonian fluids in tanks.
3.      Describe and calculate the power number.
4.      Calculate power numbers for tanks.
5.      Apply the lumped parameter equation to the heating and cooling of well mixer fluids in tanks.
6.      Evaluate overall heat transfer coefficients describing heat transfer in mixer tanks.
7.      
Homogenization
Be able to:
1.      Describe the purpose and mechanism of homogenization.
2.      Describe what happens to fat globules during the homogenization of milk.
3.      Describe the mechanical means of achieving homogenization.
4.      Calculate the power consumption and temperature increase during homogenization.
5.      Provide typical homogenization pressures for two-stage homogenization of dairy products.
Describe (in detail) a two-stage homogenization valve.
--=====================_32222576==_.ALT-- From steffe@msu.edu Wed Nov 13 13:26:58 2002 From: steffe@msu.edu (Jim Steffe) Date: Wed, 13 Nov 2002 08:26:58 -0500 Subject: [FECLASS]International Food Laws--Europe Message-ID: <5.1.0.14.2.20021113082511.024bd7e0@mailhost.egr.msu.edu> --=====================_82634381==_.ALT Content-Type: text/plain; charset="us-ascii"; format=flowed This is a great program and many engineering students have taken advantage of this opportunity in the past. JS >INFORMATION MEETING FOR STUDY ABROAD > >There will be an information meeting for the International Food >Laws--Europe program as follows: > >Tuesday, Nov. 19 >5:15-6:30 p.m. >1135 Anthony Hall (near the ice cream store) > >(If you attended the meeting in October, there is no need to attend this one.) > >Dr. Hegarty and I will be there so this will be a good opportunity to meet >us both if you have not yet. Additionally, we hope to have former student >participants on hand to tell a bit about their experiences and to answer >your questions. > >The Office of Study Abroad will supply information about applications, >financial aid, scholarships, etc. For specific information about the >program, please see our website at > >www.msu.edu/course/fsc/490 > >Please come prepared with any questions you might have--we will be happy to >answer them and provide you with the most current information on the program. > >We look forward to seeing you next week. > >Mrs. Rhonda Crackel --=====================_82634381==_.ALT Content-Type: text/html; charset="us-ascii" This is a great program and many engineering students have taken advantage of this opportunity in the past.  JS


INFORMATION MEETING FOR STUDY ABROAD

There will be an information meeting for the International Food
Laws--Europe program as follows:

Tuesday, Nov. 19
5:15-6:30 p.m.
1135 Anthony Hall (near the ice cream store)

(If you attended the meeting in October, there is no need to attend this one.)

Dr. Hegarty and I will be there so this will be a good opportunity to meet
us both if you have not yet.  Additionally, we hope to have former student
participants on hand to tell a bit about their experiences and to answer
your questions.

The Office of Study Abroad will supply information about applications,
financial aid, scholarships, etc.  For specific information about the
program, please see our website at

www.msu.edu/course/fsc/490

Please come prepared with any questions you might have--we will be happy to
answer them and provide you with the most current information on the program.

We look forward to seeing you next week.

Mrs. Rhonda Crackel
--=====================_82634381==_.ALT-- From steffe@msu.edu Mon Nov 18 16:36:34 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 18 Nov 2002 11:36:34 -0500 Subject: [FECLASS]208 Farrall Today Message-ID: <5.1.0.14.2.20021118113559.01b502a0@mailhost.egr.msu.edu> Class will meet in Room 208 today. JS From steffe@msu.edu Mon Nov 18 16:49:47 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 18 Nov 2002 11:49:47 -0500 Subject: [FECLASS]Web Assignment Message-ID: <5.1.0.14.2.20021118114935.024c4310@mailhost.egr.msu.edu> --=====================_526870749==_.ALT Content-Type: text/plain; charset="us-ascii"; format=flowed Section 4 at http://www.egr.msu.edu/~steffe/dairyplant/dairy.htm --=====================_526870749==_.ALT Content-Type: text/html; charset="us-ascii" Section 4 at http://www.egr.msu.edu/~steffe/dairyplant/dairy.htm --=====================_526870749==_.ALT-- From steffe@msu.edu Mon Nov 25 19:46:04 2002 From: steffe@msu.edu (Jim Steffe) Date: Mon, 25 Nov 2002 14:46:04 -0500 Subject: [FECLASS]Flow rates for CIP Lab Message-ID: <5.1.0.14.2.20021125144501.01b531b0@mailhost.egr.msu.edu> The flow rate in both circuit #6 and #16 is 52 gal/min. 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