A thermoporoelastoplastic analysis of a one-dimensional column consolidation is presented to identify the critical parameters that may in#uence the processes involved in coupled #uid #ow, heat #ow, and rock deformation. In comparing with the usual thermoporoelastic approach, the present study shows
An analysis of non-isothermal plug-flow electrolyzers
β Scribed by Thomas Z. Fahidy
- Publisher
- Elsevier Science
- Year
- 1987
- Tongue
- English
- Weight
- 397 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0013-4686
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β¦ Synopsis
The variation of electrolytic concentration and temperature along the principal dimension of an electrolyzer is demonstrated via simultaneous computer solution of the constituent balance equations of the PFER model. Control of thermal transport by various process variables is shown by a numerical illustration.
NOMENCLATURE
Symbols not found in this list are defined in Tables 1 and2. electrolyte concentration Faraday's constant integration stepsize of the independent variable current density subscript denoting position in the integration procedure electrolyte volumetric flow rate electrolyte temperature overall heat transfer coefficient electrolyte velocity axial coordinate fractional concentration parameter
π SIMILAR VOLUMES
An analysis is presented of the steady-state deposition of carbon from a pyrolyzing gas in an isothermal flow system. It is assumed that the parent material is decomposing in the gas phase by first-order kinetics. Three system geometries are examined: an infinite slit, an annulus, and a cylindrical
## Background: The tools for high throughput flow cytometry have been limited in part because of the requirement that the samples must flow under pressure. We describe a simple system for sampling repetitively from an open vessel. Methods: Under computer control, the sample is loaded into a sample