A bed expansion model is presented for bubbling fluidized beds without tubes and for beds with staggered horizontal heat exchanger tubes. There are indications that the model also works for inline tube configurations. The bed expansion ratio is modelled as a function of a dimensionless drag force an
Modeling multistream heat exchangers with and without phase changes for simultaneous optimization and heat integration
✍ Scribed by Ravindra S. Kamath; Lorenz T. Biegler; Ignacio E. Grossmann
- Publisher
- American Institute of Chemical Engineers
- Year
- 2011
- Tongue
- English
- Weight
- 796 KB
- Volume
- 58
- Category
- Article
- ISSN
- 0001-1541
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✦ Synopsis
Abstract
A new equation‐oriented process model for multistream heat exchangers (MHEX) is presented with a special emphasis on handling phase changes. The model internally uses the pinch concept to ensure the minimum driving force criteria. Streams capable of phase change are split into substreams corresponding to each of the phases. A novel disjunctive representation is proposed that identifies the phases traversed by a stream during heat exchange and assigns appropriate heat loads and temperatures for heat integration. The disjunctive model can be reformulated to avoid Boolean (or integer) variables using inner minimization and complementarity constraints. The model is suitable for optimization studies, particularly when the phases of the streams at the entry and exit of the MHEX are not known a priori. The capability of the model is illustrated using two case studies based on cryogenic applications. © 2011 American Institute of Chemical Engineers AIChE J, 2012
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