Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method

Reverse osmosis (RO) technique is one of the most efficient ways for seawater desalination to solve the shortage of freshwater. For prediction and analysis of the performance of seawater reverse osmosis (SWRO) process, an accurate and detailed model based on the solution-diffusion and mass transfer...

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Main Authors: Aipeng Jiang, Qiang Ding, Jian Wang, Shu Jiangzhou, Wen Cheng, Changxin Xing
Format: Article
Language:English
Published: Hindawi Limited 2014-01-01
Series:Journal of Applied Mathematics
Online Access:http://dx.doi.org/10.1155/2014/908569
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spelling doaj-2c4195646f55436cb1345bcc32d7659d2020-11-24T20:53:05ZengHindawi LimitedJournal of Applied Mathematics1110-757X1687-00422014-01-01201410.1155/2014/908569908569Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous MethodAipeng Jiang0Qiang Ding1Jian Wang2Shu Jiangzhou3Wen Cheng4Changxin Xing5School of Automation, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, ChinaSchool of Automation, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, ChinaSchool of Automation, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, ChinaSchool of Automation, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, ChinaSchool of Automation, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, ChinaSchool of Automation, Hangzhou Dianzi University, Hangzhou, Zhejiang 310018, ChinaReverse osmosis (RO) technique is one of the most efficient ways for seawater desalination to solve the shortage of freshwater. For prediction and analysis of the performance of seawater reverse osmosis (SWRO) process, an accurate and detailed model based on the solution-diffusion and mass transfer theory is established. Since the accurate formulation of the model includes many differential equations and strong nonlinear equations (differential and algebraic equations, DAEs), to solve the problem efficiently, the simultaneous method through orthogonal collocation on finite elements and large scale solver were used to obtain the solutions. The model was fully discretized into NLP (nonlinear programming) with large scale variables and equations, and then the NLP was solved by large scale solver of IPOPT. Validation of the formulated model and solution method is verified by case study on a SWRO plant. Then simulation and analysis are carried out to demonstrate the performance of reverse osmosis process; operational conditions such as feed pressure and feed flow rate as well as feed temperature are also analyzed. This work is of significant meaning for the detailed understanding of RO process and future energy saving through operational optimization.http://dx.doi.org/10.1155/2014/908569
collection DOAJ
language English
format Article
sources DOAJ
author Aipeng Jiang
Qiang Ding
Jian Wang
Shu Jiangzhou
Wen Cheng
Changxin Xing
spellingShingle Aipeng Jiang
Qiang Ding
Jian Wang
Shu Jiangzhou
Wen Cheng
Changxin Xing
Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method
Journal of Applied Mathematics
author_facet Aipeng Jiang
Qiang Ding
Jian Wang
Shu Jiangzhou
Wen Cheng
Changxin Xing
author_sort Aipeng Jiang
title Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method
title_short Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method
title_full Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method
title_fullStr Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method
title_full_unstemmed Mathematical Modeling and Simulation of SWRO Process Based on Simultaneous Method
title_sort mathematical modeling and simulation of swro process based on simultaneous method
publisher Hindawi Limited
series Journal of Applied Mathematics
issn 1110-757X
1687-0042
publishDate 2014-01-01
description Reverse osmosis (RO) technique is one of the most efficient ways for seawater desalination to solve the shortage of freshwater. For prediction and analysis of the performance of seawater reverse osmosis (SWRO) process, an accurate and detailed model based on the solution-diffusion and mass transfer theory is established. Since the accurate formulation of the model includes many differential equations and strong nonlinear equations (differential and algebraic equations, DAEs), to solve the problem efficiently, the simultaneous method through orthogonal collocation on finite elements and large scale solver were used to obtain the solutions. The model was fully discretized into NLP (nonlinear programming) with large scale variables and equations, and then the NLP was solved by large scale solver of IPOPT. Validation of the formulated model and solution method is verified by case study on a SWRO plant. Then simulation and analysis are carried out to demonstrate the performance of reverse osmosis process; operational conditions such as feed pressure and feed flow rate as well as feed temperature are also analyzed. This work is of significant meaning for the detailed understanding of RO process and future energy saving through operational optimization.
url http://dx.doi.org/10.1155/2014/908569
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AT shujiangzhou mathematicalmodelingandsimulationofswroprocessbasedonsimultaneousmethod
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