Repository logo
Log In(current)
  1. Home
  2. Colleges & Schools
  3. Graduate School
  4. Masters Theses
  5. An investigation of feedwater control and non-linear effects for a U-tube steam generator model
Details

An investigation of feedwater control and non-linear effects for a U-tube steam generator model

Date Issued
March 1, 1979
Author(s)
Cherng, Jeng-Chang.
Advisor(s)
Thomas W. Kerlin
Additional Advisor(s)
P. F. Pasqua
E. M. Katz
Laurence F. Miller
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/53805
Abstract

The kinetic mechanisms of adsorptive drying were studied. The gas temperature and concentration expiration curves were determined for moist air and the two desiccants, activated alumina (Alcoa F-1) and Linde molecular sieve 4-A under adiabatic fixed bed conditions. Three different granule sizes, two different flow rates, one bed diameter, two different bed lengths, and two different feed gas concentrations were studied.

Models of kinetic mechanisms were devised and incorporated into a computerized numerical analysis program along with previously determined sorption therms, diffusivity relations, and heat transfer coefficient correlations. The models included the bipore concept and surface/ internal release of heat of adsorption among others. The program was repeatedly executed with parameter adjustments in between until coincidence was obtained between theorectical and experimental results.

During the course of parameter adjustments, it was found that the total diffusivity, D, the heat of adsorption, λ, the mass transfer film coefficient, kG, and the coefficient of heat transfer by radiation, hR, had to be multiplied by 2.4, 1.27, 3.0, and 0.5 for Linde molecular sieve 4-A, and 3.0, 1.4, 3.0, and 0.5 for activated alumina, respectively. These multiplications are justified in the thesis.

In the computer program, the diffusion equations were expressed in terms of partial pressure and temperature instead of concentration and temperature which gave a remarkable advantage in the finite difference

calculation of mass transfer at the interface. The finite difference scheme of Crank and Nicolson was used due to the shortcomings of the Douglas method discussed in the thesis. A variable increment size was used in the granule to increase the speed of calculation. The explicit nature speeded calculations because iterative loops were eliminated.

Degree
Master of Science
Major
Nuclear Engineering
File(s)
Thumbnail Image
Name

Thesis79C45.pdf

Size

32.28 MB

Format

Adobe PDF

Checksum (MD5)

d1d4d65bc0da5526892818841439b0d2


University Libraries

1015 Volunteer Boulevard
Knoxville, TN 37996
865-974-4351

Map & Directions
Donate to the Libraries
  • About
  • John C. Hodges Society
  • Speaking Volumes magazine
  • Outreach
  • Directory
  • Employment
  • Policies
  • Library Intranet
University of Tennessee power T logo

The University of Tennessee, Knoxville
Knoxville, Tennessee 37996
865-974-1000

Events
A-Z
Apply
Privacy
Map
Directory
Give to UT
Accessibility

Built with DSpace-CRIS software - Extension maintained and optimized by 4Science