Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics

Offshore oil multi-platform interconnected power system is developing rapidly. The proposal of an effective economic evaluation method that fits the actual production situation of offshore oilfields is very meaningful for the planning and construction of multi-platform interconnected power systems....

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Main Authors: Yuming Liu, Qingguang Yu, Gaoxiang Long, Zhicheng Jiang
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/20/5521
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author Yuming Liu
Qingguang Yu
Gaoxiang Long
Zhicheng Jiang
author_facet Yuming Liu
Qingguang Yu
Gaoxiang Long
Zhicheng Jiang
author_sort Yuming Liu
collection DOAJ
description Offshore oil multi-platform interconnected power system is developing rapidly. The proposal of an effective economic evaluation method that fits the actual production situation of offshore oilfields is very meaningful for the planning and construction of multi-platform interconnected power systems. This article proposes the electric depreciation, depletion, and amortization (DD&A) barrel oil cost S and maximum expected benefit per unit power generation I<sub>e</sub> as economic indicators, considering the actual production characteristics and life cycle of the oil field. In order to build a complete economic evaluation system, this article also introduces the N−1 pass rate <inline-formula><math display="inline"><semantics><mrow><msub><mi mathvariant="sans-serif">η</mi><mrow><mi mathvariant="normal">N</mi><mo>−</mo><mn>1</mn></mrow></msub></mrow></semantics></math></inline-formula>, voltage qualification rate γ, power supply reliability ASAI (Average Service Availability Index), and other reliability indicators to evaluate the offshore power system. When calculating the weight of the indicators, analytic hierarchy method (AHP) was applied to calculate subjective weights, and an entropy method was applied to calculate objective weights. To unify the two weights, the ideal point method is proposed to obtain compound weights. Finally, this article selects an offshore oil field in Bohai Bay, China as example, and analyses short-term small-scale, long-term large-scale, and actual power system as calculation examples in different planning periods. The analysis result verifies the effectiveness of the economic evaluation method.
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spelling doaj.art-57a4cc64cc9248a594406a66cc56c2dc2023-11-20T17:57:51ZengMDPI AGEnergies1996-10732020-10-011320552110.3390/en13205521Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production CharacteristicsYuming Liu0Qingguang Yu1Gaoxiang Long2Zhicheng Jiang3State Key Laboratory of Power System, Department of Electrical Engineering, Tsinghua University, Beijing 100080, ChinaState Key Laboratory of Power System, Department of Electrical Engineering, Tsinghua University, Beijing 100080, ChinaState Key Laboratory of Power System, Department of Electrical Engineering, Tsinghua University, Beijing 100080, ChinaState Key Laboratory of Power System, Department of Electrical Engineering, Tsinghua University, Beijing 100080, ChinaOffshore oil multi-platform interconnected power system is developing rapidly. The proposal of an effective economic evaluation method that fits the actual production situation of offshore oilfields is very meaningful for the planning and construction of multi-platform interconnected power systems. This article proposes the electric depreciation, depletion, and amortization (DD&A) barrel oil cost S and maximum expected benefit per unit power generation I<sub>e</sub> as economic indicators, considering the actual production characteristics and life cycle of the oil field. In order to build a complete economic evaluation system, this article also introduces the N−1 pass rate <inline-formula><math display="inline"><semantics><mrow><msub><mi mathvariant="sans-serif">η</mi><mrow><mi mathvariant="normal">N</mi><mo>−</mo><mn>1</mn></mrow></msub></mrow></semantics></math></inline-formula>, voltage qualification rate γ, power supply reliability ASAI (Average Service Availability Index), and other reliability indicators to evaluate the offshore power system. When calculating the weight of the indicators, analytic hierarchy method (AHP) was applied to calculate subjective weights, and an entropy method was applied to calculate objective weights. To unify the two weights, the ideal point method is proposed to obtain compound weights. Finally, this article selects an offshore oil field in Bohai Bay, China as example, and analyses short-term small-scale, long-term large-scale, and actual power system as calculation examples in different planning periods. The analysis result verifies the effectiveness of the economic evaluation method.https://www.mdpi.com/1996-1073/13/20/5521multi-platform interconnected power systemoffshore oil fieldelectric DD&ampA barrel oil costcompound weight
spellingShingle Yuming Liu
Qingguang Yu
Gaoxiang Long
Zhicheng Jiang
Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics
Energies
multi-platform interconnected power system
offshore oil field
electric DD&amp
A barrel oil cost
compound weight
title Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics
title_full Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics
title_fullStr Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics
title_full_unstemmed Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics
title_short Research on Economic Evaluation Methods of Offshore Oil Multi-Platform Interconnected Power System Considering Petroleum Production Characteristics
title_sort research on economic evaluation methods of offshore oil multi platform interconnected power system considering petroleum production characteristics
topic multi-platform interconnected power system
offshore oil field
electric DD&amp
A barrel oil cost
compound weight
url https://www.mdpi.com/1996-1073/13/20/5521
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AT qingguangyu researchoneconomicevaluationmethodsofoffshoreoilmultiplatforminterconnectedpowersystemconsideringpetroleumproductioncharacteristics
AT gaoxianglong researchoneconomicevaluationmethodsofoffshoreoilmultiplatforminterconnectedpowersystemconsideringpetroleumproductioncharacteristics
AT zhichengjiang researchoneconomicevaluationmethodsofoffshoreoilmultiplatforminterconnectedpowersystemconsideringpetroleumproductioncharacteristics