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Detailed Modeling of Distillation Technologies for Closed-Loop Water Recovery Systems.
Author(s) -
Rama Kumar Allada,
Kevin Lange,
Molly Anderson
Publication year - 2011
Publication title -
41st international conference on environmental systems
Language(s) - English
Resource type - Conference proceedings
DOI - 10.2514/6.2011-5102
Subject(s) - distillation , loop (graph theory) , closed loop , computer science , control theory (sociology) , control engineering , process engineering , environmental science , engineering , chemistry , chromatography , control (management) , mathematics , artificial intelligence , combinatorics
Detailed chemical process simulations are a useful tool in designing and optimizing complex systems and architectures for human life support. Dynamic and steady-state models of these systems help contrast the interactions of various operating parameters and hardware designs, which become extremely useful in trade-study analyses. NASA?s Exploration Life Support technology development project recently made use of such models to compliment a series of tests on different waste water distillation systems. This paper presents efforts to develop chemical process simulations for three technologies: the Cascade Distillation System (CDS), the Vapor Compression Distillation (VCD) system and the Wiped-Film Rotating Disk (WFRD) using the Aspen Custom Modeler and Aspen Plus process simulation tools. The paper discusses system design, modeling details, and modeling results for each technology and presents some comparisons between the model results and recent test data. Following these initial comparisons, some general conclusions and forward work are discussed.

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