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Dynamic Operability Analysis for Process Design and Control of Modular Natural Gas Utilization Systems

San Dinh, Fernando V. Lima

2023Industrial & Engineering Chemistry Research20 citationsDOIOpen Access PDF

Abstract

High Resolution Image Download MS PowerPoint Slide Process modularization is an alternative process design and construction framework, in which modular units are independent and replaceable blocks of a process system. While modular plants have higher efficiency and are safer to construct than conventional stick-built plants (Roy, S. Chem. Eng. Prog . 2017, 113, 28–31), they are significantly more challenging to operate because of the loss in the control degrees of freedom that comes with process integration and intensification (Bishop, B. A.; Lima, F. V. Processes 2021, 9, 2165). To address this challenge, in this work, operability analyses are performed to consider the design and operation of modular units. Initially, a steady-state operability analysis is employed to find a set of feasible modular designs that are able to operate considering different modular plant conditions. A dynamic operability analysis is then applied to the feasible designs to identify the operable designs that are capable of rejecting the operational disturbances. Lastly, a closed-loop control measure is introduced to compare the performances of the different operable designs. The proposed approach is implemented in a modular membrane reactor to find a set of operable designs considering different natural gas wells, and the respective closed-loop nonlinear model predictive control performance of these units is evaluated.

Topics & Concepts

OperabilityModular designProcess (computing)Modular programmingComputer scienceSet (abstract data type)Control engineeringEngineeringControl theory (sociology)Reliability engineeringControl (management)Programming languageOperating systemArtificial intelligenceProcess Optimization and IntegrationAdvanced Control Systems OptimizationFault Detection and Control Systems
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