Optimization of light hydrocarbon recovery system in condensate gas field

During the middle and later stages of condensate gas field development, the flow rate and pressure of the light hydrocarbon recovery system gradually decrease, and there is a certain deviation between the design parameters and the actual operation parameters of the equipment, resulting in a decrease...

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Main Authors: Hongfang Lu, Guoguang Ma, Lianjin Cao, Mohammadamin Azimi
Format: Article
Language:English
Published: Elsevier 2019-11-01
Series:Energy Reports
Online Access:http://www.sciencedirect.com/science/article/pii/S2352484719300782
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spelling doaj-d73a143a28514636955b09851b88a06a2020-11-25T01:38:30ZengElsevierEnergy Reports2352-48472019-11-01512091221Optimization of light hydrocarbon recovery system in condensate gas fieldHongfang Lu0Guoguang Ma1Lianjin Cao2Mohammadamin Azimi3State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China; Trenchless Technology Center, Louisiana Tech University, Ruston LA 71270, United StatesState Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China; Correspondence to: State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, No. 8 Xindu road, Xindu District, Chengdu 610500, China.State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, ChinaTrenchless Technology Center, Louisiana Tech University, Ruston LA 71270, United StatesDuring the middle and later stages of condensate gas field development, the flow rate and pressure of the light hydrocarbon recovery system gradually decrease, and there is a certain deviation between the design parameters and the actual operation parameters of the equipment, resulting in a decrease in the recovery rates of propane (C3) and higher hydrocarbons (C3+). Therefore, it is necessary to optimize the system to obtain greater economic value. In order to solve this problem, the paper analyzes the sensitivity of the equipment operating parameters based on the sequential-modular method. The black box model is used to analyze the equipment and the whole system, and the subsystem with large exergy loss is found. Moreover, this paper optimizes the light hydrocarbon recovery system using parameter optimization and process optimization, and compares the results. According to the analysis, the main conclusions are drawn: (1) The outlet pressure of expander and the temperature of deethanizer bottom have great influence on the light hydrocarbon recovery system, the reduction of the expander outlet pressure from 2.3 MPa to 1.8 MPa can increase the recovery of C3by 5%. Decreasing the bottom temperature of the deethanizer from 80 ∘C by 20 ∘C can increase the recovery of C3by 9.2%. (2) Optimized process using direct heat exchange technology has a better optimization effect than the parameter optimization process, the C3recovery of the optimized system increased by 19.1% to 93%, the recovery of C3+increased by 14.4% to 95%. Keywords: Light hydrocarbon recovery, Condensate field, Sequential-modular method, Exergy loss, Black box model, Direct heat exchangehttp://www.sciencedirect.com/science/article/pii/S2352484719300782
collection DOAJ
language English
format Article
sources DOAJ
author Hongfang Lu
Guoguang Ma
Lianjin Cao
Mohammadamin Azimi
spellingShingle Hongfang Lu
Guoguang Ma
Lianjin Cao
Mohammadamin Azimi
Optimization of light hydrocarbon recovery system in condensate gas field
Energy Reports
author_facet Hongfang Lu
Guoguang Ma
Lianjin Cao
Mohammadamin Azimi
author_sort Hongfang Lu
title Optimization of light hydrocarbon recovery system in condensate gas field
title_short Optimization of light hydrocarbon recovery system in condensate gas field
title_full Optimization of light hydrocarbon recovery system in condensate gas field
title_fullStr Optimization of light hydrocarbon recovery system in condensate gas field
title_full_unstemmed Optimization of light hydrocarbon recovery system in condensate gas field
title_sort optimization of light hydrocarbon recovery system in condensate gas field
publisher Elsevier
series Energy Reports
issn 2352-4847
publishDate 2019-11-01
description During the middle and later stages of condensate gas field development, the flow rate and pressure of the light hydrocarbon recovery system gradually decrease, and there is a certain deviation between the design parameters and the actual operation parameters of the equipment, resulting in a decrease in the recovery rates of propane (C3) and higher hydrocarbons (C3+). Therefore, it is necessary to optimize the system to obtain greater economic value. In order to solve this problem, the paper analyzes the sensitivity of the equipment operating parameters based on the sequential-modular method. The black box model is used to analyze the equipment and the whole system, and the subsystem with large exergy loss is found. Moreover, this paper optimizes the light hydrocarbon recovery system using parameter optimization and process optimization, and compares the results. According to the analysis, the main conclusions are drawn: (1) The outlet pressure of expander and the temperature of deethanizer bottom have great influence on the light hydrocarbon recovery system, the reduction of the expander outlet pressure from 2.3 MPa to 1.8 MPa can increase the recovery of C3by 5%. Decreasing the bottom temperature of the deethanizer from 80 ∘C by 20 ∘C can increase the recovery of C3by 9.2%. (2) Optimized process using direct heat exchange technology has a better optimization effect than the parameter optimization process, the C3recovery of the optimized system increased by 19.1% to 93%, the recovery of C3+increased by 14.4% to 95%. Keywords: Light hydrocarbon recovery, Condensate field, Sequential-modular method, Exergy loss, Black box model, Direct heat exchange
url http://www.sciencedirect.com/science/article/pii/S2352484719300782
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