Distributed fibre optic inclinometer with cloud-based monitoring system

Geotechnical instrumentation and monitoring are important aspect of controlling subsurface ground movement, particularly in deep excavations and forewarning of geological disasters such as landslides, land subsidence, ground fissure, and surface collapse. A borehole inclinometer is an example of the...

Full description

Bibliographic Details
Main Authors: Hisham Mohamad, Aizat Akmal A.M. Beddelee, Muhammad Farid Ghazali, Hsiu Eik Lee, Krisada Chaiyasarn, Muhammad Yusoff M. Nasir
Format: Article
Language:English
Published: Elsevier 2023-05-01
Series:Engineering Science and Technology, an International Journal
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2215098623000836
_version_ 1797829572963598336
author Hisham Mohamad
Aizat Akmal A.M. Beddelee
Muhammad Farid Ghazali
Hsiu Eik Lee
Krisada Chaiyasarn
Muhammad Yusoff M. Nasir
author_facet Hisham Mohamad
Aizat Akmal A.M. Beddelee
Muhammad Farid Ghazali
Hsiu Eik Lee
Krisada Chaiyasarn
Muhammad Yusoff M. Nasir
author_sort Hisham Mohamad
collection DOAJ
description Geotechnical instrumentation and monitoring are important aspect of controlling subsurface ground movement, particularly in deep excavations and forewarning of geological disasters such as landslides, land subsidence, ground fissure, and surface collapse. A borehole inclinometer is an example of the established method to monitor such ground movements. For real-time data, a series of in-placed inclinometer probes are installed inside the borehole casing to provide the lateral displacement response over time. The limitation of the conventional system is the high cost and the practicality of inserting a high number of sensing probes into the casing for better measurement accuracy. Recent advancement in Distributed Optical Fibre Strain Sensing (DOFS) enables the incorporation of DOFS as a fibre optic (FO) inclinometer with lateral displacements to be plotted at centimetres spacing and is unaffected by the gauge lengths between the probes. This study enhances the FO inclinometer by developing a web-based application (SmartGeopipe©) to automate data acquisition which also includes complex data processing for the final pipe deflection profile visualisation. The FO inclinometer comprised of optical cables attached externally onto a remodified inclinometer casing and connected to a Brillouin Optical Time Domain Analysis (BOTDA) strain analyser. A standard installation procedure was established to safely secure the sensors during the casing installation process inside the borehole. SmartGeopipe© software is written using a predominantly monolithic Python / Cython backend and a multi-page frontend built with HTML, CSS, and JavaScript ES5 languages. All the computation work and data storing are done in a cloud server and SQL database, respectively. A case study of a station box excavation as part of the Mass Rapid Transit (MRT) tunnelling project was chosen to validate the performance of the FO inclinometer and the web application. Data from the FO inclinometer corroborated well with the manual measurements of the inclinometer probe. This ability supports the realization of an early warning system as an engineering control for hazard management in civil engineering infrastructure projects.
first_indexed 2024-04-09T13:22:19Z
format Article
id doaj.art-b61aa8379e2e4191add38dffa64f6de6
institution Directory Open Access Journal
issn 2215-0986
language English
last_indexed 2024-04-09T13:22:19Z
publishDate 2023-05-01
publisher Elsevier
record_format Article
series Engineering Science and Technology, an International Journal
spelling doaj.art-b61aa8379e2e4191add38dffa64f6de62023-05-11T04:24:07ZengElsevierEngineering Science and Technology, an International Journal2215-09862023-05-0141101406Distributed fibre optic inclinometer with cloud-based monitoring systemHisham Mohamad0Aizat Akmal A.M. Beddelee1Muhammad Farid Ghazali2Hsiu Eik Lee3Krisada Chaiyasarn4Muhammad Yusoff M. Nasir5Civil & Environmental Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, Malaysia; Corresponding author.Civil & Environmental Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, MalaysiaCivil & Environmental Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, MalaysiaNumerical Competence Centre, Ørsted Services Malaysia Sdn Bhd, Kuala Lumpur 59200, MalaysiaDepartment of Civil Engineering, Thammasat University, Bangkok 10200, ThailandCivil & Environmental Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar 32610, MalaysiaGeotechnical instrumentation and monitoring are important aspect of controlling subsurface ground movement, particularly in deep excavations and forewarning of geological disasters such as landslides, land subsidence, ground fissure, and surface collapse. A borehole inclinometer is an example of the established method to monitor such ground movements. For real-time data, a series of in-placed inclinometer probes are installed inside the borehole casing to provide the lateral displacement response over time. The limitation of the conventional system is the high cost and the practicality of inserting a high number of sensing probes into the casing for better measurement accuracy. Recent advancement in Distributed Optical Fibre Strain Sensing (DOFS) enables the incorporation of DOFS as a fibre optic (FO) inclinometer with lateral displacements to be plotted at centimetres spacing and is unaffected by the gauge lengths between the probes. This study enhances the FO inclinometer by developing a web-based application (SmartGeopipe©) to automate data acquisition which also includes complex data processing for the final pipe deflection profile visualisation. The FO inclinometer comprised of optical cables attached externally onto a remodified inclinometer casing and connected to a Brillouin Optical Time Domain Analysis (BOTDA) strain analyser. A standard installation procedure was established to safely secure the sensors during the casing installation process inside the borehole. SmartGeopipe© software is written using a predominantly monolithic Python / Cython backend and a multi-page frontend built with HTML, CSS, and JavaScript ES5 languages. All the computation work and data storing are done in a cloud server and SQL database, respectively. A case study of a station box excavation as part of the Mass Rapid Transit (MRT) tunnelling project was chosen to validate the performance of the FO inclinometer and the web application. Data from the FO inclinometer corroborated well with the manual measurements of the inclinometer probe. This ability supports the realization of an early warning system as an engineering control for hazard management in civil engineering infrastructure projects.http://www.sciencedirect.com/science/article/pii/S2215098623000836Slope stabilityBOTDALandslideGeotechnical instrumentationMonitoringCloud
spellingShingle Hisham Mohamad
Aizat Akmal A.M. Beddelee
Muhammad Farid Ghazali
Hsiu Eik Lee
Krisada Chaiyasarn
Muhammad Yusoff M. Nasir
Distributed fibre optic inclinometer with cloud-based monitoring system
Engineering Science and Technology, an International Journal
Slope stability
BOTDA
Landslide
Geotechnical instrumentation
Monitoring
Cloud
title Distributed fibre optic inclinometer with cloud-based monitoring system
title_full Distributed fibre optic inclinometer with cloud-based monitoring system
title_fullStr Distributed fibre optic inclinometer with cloud-based monitoring system
title_full_unstemmed Distributed fibre optic inclinometer with cloud-based monitoring system
title_short Distributed fibre optic inclinometer with cloud-based monitoring system
title_sort distributed fibre optic inclinometer with cloud based monitoring system
topic Slope stability
BOTDA
Landslide
Geotechnical instrumentation
Monitoring
Cloud
url http://www.sciencedirect.com/science/article/pii/S2215098623000836
work_keys_str_mv AT hishammohamad distributedfibreopticinclinometerwithcloudbasedmonitoringsystem
AT aizatakmalambeddelee distributedfibreopticinclinometerwithcloudbasedmonitoringsystem
AT muhammadfaridghazali distributedfibreopticinclinometerwithcloudbasedmonitoringsystem
AT hsiueiklee distributedfibreopticinclinometerwithcloudbasedmonitoringsystem
AT krisadachaiyasarn distributedfibreopticinclinometerwithcloudbasedmonitoringsystem
AT muhammadyusoffmnasir distributedfibreopticinclinometerwithcloudbasedmonitoringsystem