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Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation

Soil contamination remains a global problem. Among the different kinds of remediation technologies, in situ soil thermal remediation has attracted great attention in the environmental field, representing a potential remedial alternative for contaminated soils. Soils need to be heated to a high tempe...

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Autores principales: Zhai, Zhuang-Zhuang, Yang, Li-Man, Li, Yun-Ze, Jiang, Hai-Feng, Ye, Yuan, Li, Tian-Tian, Li, En-Hui, Li, Tong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7514302/
http://dx.doi.org/10.3390/e21100971
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author Zhai, Zhuang-Zhuang
Yang, Li-Man
Li, Yun-Ze
Jiang, Hai-Feng
Ye, Yuan
Li, Tian-Tian
Li, En-Hui
Li, Tong
author_facet Zhai, Zhuang-Zhuang
Yang, Li-Man
Li, Yun-Ze
Jiang, Hai-Feng
Ye, Yuan
Li, Tian-Tian
Li, En-Hui
Li, Tong
author_sort Zhai, Zhuang-Zhuang
collection PubMed
description Soil contamination remains a global problem. Among the different kinds of remediation technologies, in situ soil thermal remediation has attracted great attention in the environmental field, representing a potential remedial alternative for contaminated soils. Soils need to be heated to a high temperature in thermal remediation, which requires a large amount of energy. For the natural gas heating system in thermal remediation, a fuzzy coordination control strategy and thermohydraulic dynamics model have been proposed in this paper. In order to demonstrate the superiority of the strategy, the other three traditional control strategies are introduced. Analysis of the temperature rise and energy consumption of soils under different control strategies were conducted. The results showed that the energy consumption of fuzzy coordination control strategy is reduced by 33.9% compared to that of the traditional control strategy I, constant natural gas flow and excess air ratio. Further, compared to the traditional control strategy II, constant excess air ratio and desired outlet temperature of wells, the strategy proposed can reduce energy consumption by 48.7%. The results illustrate the superiority of the fuzzy coordination control strategy, and the strategy can greatly reduce energy consumption, thereby reducing the cost of in situ soil thermal remediation.
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spelling pubmed-75143022020-11-09 Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation Zhai, Zhuang-Zhuang Yang, Li-Man Li, Yun-Ze Jiang, Hai-Feng Ye, Yuan Li, Tian-Tian Li, En-Hui Li, Tong Entropy (Basel) Article Soil contamination remains a global problem. Among the different kinds of remediation technologies, in situ soil thermal remediation has attracted great attention in the environmental field, representing a potential remedial alternative for contaminated soils. Soils need to be heated to a high temperature in thermal remediation, which requires a large amount of energy. For the natural gas heating system in thermal remediation, a fuzzy coordination control strategy and thermohydraulic dynamics model have been proposed in this paper. In order to demonstrate the superiority of the strategy, the other three traditional control strategies are introduced. Analysis of the temperature rise and energy consumption of soils under different control strategies were conducted. The results showed that the energy consumption of fuzzy coordination control strategy is reduced by 33.9% compared to that of the traditional control strategy I, constant natural gas flow and excess air ratio. Further, compared to the traditional control strategy II, constant excess air ratio and desired outlet temperature of wells, the strategy proposed can reduce energy consumption by 48.7%. The results illustrate the superiority of the fuzzy coordination control strategy, and the strategy can greatly reduce energy consumption, thereby reducing the cost of in situ soil thermal remediation. MDPI 2019-10-05 /pmc/articles/PMC7514302/ http://dx.doi.org/10.3390/e21100971 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhai, Zhuang-Zhuang
Yang, Li-Man
Li, Yun-Ze
Jiang, Hai-Feng
Ye, Yuan
Li, Tian-Tian
Li, En-Hui
Li, Tong
Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation
title Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation
title_full Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation
title_fullStr Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation
title_full_unstemmed Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation
title_short Fuzzy Coordination Control Strategy and Thermohydraulic Dynamics Modeling of a Natural Gas Heating System for In Situ Soil Thermal Remediation
title_sort fuzzy coordination control strategy and thermohydraulic dynamics modeling of a natural gas heating system for in situ soil thermal remediation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7514302/
http://dx.doi.org/10.3390/e21100971
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