An n-valued neutrosophic set method for the assessment of an offshore oil spill risk

With the development of maritime transportation, oil spill accidents occur frequently. In this paper, a scientific and reasonable assessment of ship oil spills, offshore oil platform oil spills, and subsea pipeline oil spills is carried out, and a risk assessment method of an offshore oil spill base...

Full description

Bibliographic Details
Main Authors: Minglei Han, Changxing Fan, Shan Huang, Keli Hu, En Fan
Format: Article
Language:English
Published: IWA Publishing 2023-04-01
Series:Water Science and Technology
Subjects:
Online Access:http://wst.iwaponline.com/content/87/7/1643
_version_ 1797830397790257152
author Minglei Han
Changxing Fan
Shan Huang
Keli Hu
En Fan
author_facet Minglei Han
Changxing Fan
Shan Huang
Keli Hu
En Fan
author_sort Minglei Han
collection DOAJ
description With the development of maritime transportation, oil spill accidents occur frequently. In this paper, a scientific and reasonable assessment of ship oil spills, offshore oil platform oil spills, and subsea pipeline oil spills is carried out, and a risk assessment method of an offshore oil spill based on an n-value neutrosophic set is proposed. First, the oil spill risk evaluation index systems of these three risk sources are constructed, respectively, and the entropy weight method is used to calculate the weight. Second, we establish a risk assessment model under the n-value neutrosophic environment. Furthermore, we use the n-value neutrosophic-weighted arithmetic average (NVNWAA) to calculate the risk levels of the following three risk sources: ship oil spills, offshore oil platform spills, and submarine pipeline spills. Finally, according to the results of the risk assessment, the countermeasures to strengthen the preventive measures of oil spill accidents are put forward. HIGHLIGHTS Establish risk assessment index systems for oil spills on ships, offshore oil platforms, and undersea pipelines.; Propose an n-value neutrosophic-weighted arithmetic average operator.; Propose the entropy weight method to calculate the weight of indexes.; Develop an oil spill risk assessment model based on an n-value neutrosophic.; Discuss the prevention measures related to an oil spill of three risk sources.;
first_indexed 2024-04-09T13:36:06Z
format Article
id doaj.art-712a7de4f4f74ecd844b5bf505f0cbdc
institution Directory Open Access Journal
issn 0273-1223
1996-9732
language English
last_indexed 2024-04-09T13:36:06Z
publishDate 2023-04-01
publisher IWA Publishing
record_format Article
series Water Science and Technology
spelling doaj.art-712a7de4f4f74ecd844b5bf505f0cbdc2023-05-09T10:16:59ZengIWA PublishingWater Science and Technology0273-12231996-97322023-04-018771643165910.2166/wst.2023.082082An n-valued neutrosophic set method for the assessment of an offshore oil spill riskMinglei Han0Changxing Fan1Shan Huang2Keli Hu3En Fan4 Department of Environmental Science and Engineering, School of Resources and Environment, Nanchang University, Nanchang, China Department of Computer Science, Shaoxing University, Shaoxing, China Department of Environmental Science and Engineering, School of Resources and Environment, Nanchang University, Nanchang, China Department of Computer Science, Shaoxing University, Shaoxing, China Department of Computer Science, Shaoxing University, Shaoxing, China With the development of maritime transportation, oil spill accidents occur frequently. In this paper, a scientific and reasonable assessment of ship oil spills, offshore oil platform oil spills, and subsea pipeline oil spills is carried out, and a risk assessment method of an offshore oil spill based on an n-value neutrosophic set is proposed. First, the oil spill risk evaluation index systems of these three risk sources are constructed, respectively, and the entropy weight method is used to calculate the weight. Second, we establish a risk assessment model under the n-value neutrosophic environment. Furthermore, we use the n-value neutrosophic-weighted arithmetic average (NVNWAA) to calculate the risk levels of the following three risk sources: ship oil spills, offshore oil platform spills, and submarine pipeline spills. Finally, according to the results of the risk assessment, the countermeasures to strengthen the preventive measures of oil spill accidents are put forward. HIGHLIGHTS Establish risk assessment index systems for oil spills on ships, offshore oil platforms, and undersea pipelines.; Propose an n-value neutrosophic-weighted arithmetic average operator.; Propose the entropy weight method to calculate the weight of indexes.; Develop an oil spill risk assessment model based on an n-value neutrosophic.; Discuss the prevention measures related to an oil spill of three risk sources.;http://wst.iwaponline.com/content/87/7/1643n-value neutrosophic setn-value neutrosophic-weighted arithmetic average operator (nvnwaa)oil spill
spellingShingle Minglei Han
Changxing Fan
Shan Huang
Keli Hu
En Fan
An n-valued neutrosophic set method for the assessment of an offshore oil spill risk
Water Science and Technology
n-value neutrosophic set
n-value neutrosophic-weighted arithmetic average operator (nvnwaa)
oil spill
title An n-valued neutrosophic set method for the assessment of an offshore oil spill risk
title_full An n-valued neutrosophic set method for the assessment of an offshore oil spill risk
title_fullStr An n-valued neutrosophic set method for the assessment of an offshore oil spill risk
title_full_unstemmed An n-valued neutrosophic set method for the assessment of an offshore oil spill risk
title_short An n-valued neutrosophic set method for the assessment of an offshore oil spill risk
title_sort n valued neutrosophic set method for the assessment of an offshore oil spill risk
topic n-value neutrosophic set
n-value neutrosophic-weighted arithmetic average operator (nvnwaa)
oil spill
url http://wst.iwaponline.com/content/87/7/1643
work_keys_str_mv AT mingleihan annvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT changxingfan annvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT shanhuang annvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT kelihu annvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT enfan annvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT mingleihan nvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT changxingfan nvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT shanhuang nvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT kelihu nvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk
AT enfan nvaluedneutrosophicsetmethodfortheassessmentofanoffshoreoilspillrisk