An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology

Traditional methodology for pile integrity evaluation usually adopts fuzzy qualitative indicators and the engineering experience of technicians to roughly estimate the integrity category of a pile, which includes many uncertainties and heavily subjective factors. Therefore, based on an analytical mo...

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Main Authors: Kun Meng, Chunyi Cui, Haijiang Li
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9058668/
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spelling doaj-4d0acb3e62494a93916bd1902787fd462021-03-30T03:00:46ZengIEEEIEEE Access2169-35362020-01-018721587216810.1109/ACCESS.2020.29862299058668An Ontology Framework for Pile Integrity Evaluation Based on Analytical MethodologyKun Meng0https://orcid.org/0000-0002-4239-0217Chunyi Cui1Haijiang Li2Department of Civil Engineering, Dalian Maritime University, Dalian, ChinaDepartment of Civil Engineering, Dalian Maritime University, Dalian, ChinaCardiff School of Engineering, Cardiff University, Cardiff, U.K.Traditional methodology for pile integrity evaluation usually adopts fuzzy qualitative indicators and the engineering experience of technicians to roughly estimate the integrity category of a pile, which includes many uncertainties and heavily subjective factors. Therefore, based on an analytical model for the vibration of pile and an ontology-based approach, this paper describes the development of an integrated evaluation system that can make reasonable evaluations of pile integrity where specific measured reflective wave curves are provided. First, a semi-analytical solution for the velocity response of pile with defects at the pile head was derived by analytical methodology, and then the intrinsic relationships between the quantitative indicators of pile defects and the characteristic parameters of velocity response curves were obtained according to the propagation law of elastic wave and the numerical fitting method. On this basis, a prototypical ontology-based evaluation system, ontology of pile integrity evaluation (OntoPIE), with a new ontology framework of leverage knowledge modelling was developed to create an easy-to-use tool for quantitative identification of pile defects and qualitative evaluation of pile integrity by combining ontology and semantic web rule language (SWRL) rules. A case study was also conducted to show how the developed framework can be used to demonstrate its practicability and scientific feasibility. The accuracy of the framework will be verified by comparing the quantitative indicators of pile defects inferred by OntoPIE with the preset defect indicators through designed examples.https://ieeexplore.ieee.org/document/9058668/Numerical fittingontologypile integrityquantitative analysis of pile defectssemi-analytical solution
collection DOAJ
language English
format Article
sources DOAJ
author Kun Meng
Chunyi Cui
Haijiang Li
spellingShingle Kun Meng
Chunyi Cui
Haijiang Li
An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology
IEEE Access
Numerical fitting
ontology
pile integrity
quantitative analysis of pile defects
semi-analytical solution
author_facet Kun Meng
Chunyi Cui
Haijiang Li
author_sort Kun Meng
title An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology
title_short An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology
title_full An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology
title_fullStr An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology
title_full_unstemmed An Ontology Framework for Pile Integrity Evaluation Based on Analytical Methodology
title_sort ontology framework for pile integrity evaluation based on analytical methodology
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description Traditional methodology for pile integrity evaluation usually adopts fuzzy qualitative indicators and the engineering experience of technicians to roughly estimate the integrity category of a pile, which includes many uncertainties and heavily subjective factors. Therefore, based on an analytical model for the vibration of pile and an ontology-based approach, this paper describes the development of an integrated evaluation system that can make reasonable evaluations of pile integrity where specific measured reflective wave curves are provided. First, a semi-analytical solution for the velocity response of pile with defects at the pile head was derived by analytical methodology, and then the intrinsic relationships between the quantitative indicators of pile defects and the characteristic parameters of velocity response curves were obtained according to the propagation law of elastic wave and the numerical fitting method. On this basis, a prototypical ontology-based evaluation system, ontology of pile integrity evaluation (OntoPIE), with a new ontology framework of leverage knowledge modelling was developed to create an easy-to-use tool for quantitative identification of pile defects and qualitative evaluation of pile integrity by combining ontology and semantic web rule language (SWRL) rules. A case study was also conducted to show how the developed framework can be used to demonstrate its practicability and scientific feasibility. The accuracy of the framework will be verified by comparing the quantitative indicators of pile defects inferred by OntoPIE with the preset defect indicators through designed examples.
topic Numerical fitting
ontology
pile integrity
quantitative analysis of pile defects
semi-analytical solution
url https://ieeexplore.ieee.org/document/9058668/
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