An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms

Analysis of temporal variations helps identify the time when an air pollutant is more likely to exceed the air quality standards. This paper characterises the temporal variations of ground level ozone (O3) in Makkah. In addition to graphical presentations, like time variation plots, this paper appl...

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Main Authors: Said Munir, Turki M. Habeebullah, Atef M.F. Mohammed, Essam A. Morsy, Abdel Hameed A.H. Awad, Abdulaziz R. Seroji, Ibrahim A. Hassan
Format: Article
Language:English
Published: Thai Society of Higher Eduction Institutes on Environment 2015-01-01
Series:EnvironmentAsia
Subjects:
Online Access:http://www.tshe.org/ea/pdf/vol8no1-07.pdf
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spelling doaj-61f45d8f34c54a2eb7f44be00260f6112020-11-24T22:17:20ZengThai Society of Higher Eduction Institutes on EnvironmentEnvironmentAsia1906-17142015-01-01815360An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means AlgorithmsSaid Munir 0Turki M. Habeebullah1Atef M.F. Mohammed2Essam A. Morsy3Abdel Hameed A.H. Awad4Abdulaziz R. Seroji5Ibrahim A. Hassan6The Custodian of theTwo Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah, Saudi ArabiaThe Custodian of theTwo Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah, Saudi ArabiaThe Custodian of theTwo Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah, Saudi ArabiaThe Custodian of theTwo Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah, Saudi ArabiaThe Custodian of theTwo Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah, Saudi ArabiaThe Custodian of theTwo Holy Mosques Institute for Hajj and Umrah Research, Umm Al-Qura University, Makkah, Saudi ArabiaFaculty of Science, Environmental Studies, Centre of Excellence in Environmental Studies, Air Pollution, King Abdulaziz University, Jeddah, Saudi Arabia Analysis of temporal variations helps identify the time when an air pollutant is more likely to exceed the air quality standards. This paper characterises the temporal variations of ground level ozone (O3) in Makkah. In addition to graphical presentations, like time variation plots, this paper applies k-means algorithm to test its applicability for analysing the diurnal cycles of O3. Diurnal, weekly and seasonal variations in O3 concentrations are analysed using data for 2012. O3 data for 1997 - 2007 are used to investigate the annual cycle ofO3. The average annual cycle shows the highest concentration in September and lowest in December. O3 concentrations are lower in colder months probably due to lower solar radiation levels, whereas unexpectedly highest O3 concentrations are observed in September. O3 levels decline in the hottest months - June and July probably due to chemical and biophysical feedbacks. Furthermore, O3 diurnal cycles are clustered into 4 and 12 subgroups using k-means algorithm. The clusters are considerably different from the monthly and seasonal diurnal cycles, probably because of the anomalies found in various months or seasons that biases the average cycles. These anomalies are addressed by k-means algorithm putting them into a separate group.http://www.tshe.org/ea/pdf/vol8no1-07.pdfground level ozonetemporal variationsk-means algorithmMakkah
collection DOAJ
language English
format Article
sources DOAJ
author Said Munir
Turki M. Habeebullah
Atef M.F. Mohammed
Essam A. Morsy
Abdel Hameed A.H. Awad
Abdulaziz R. Seroji
Ibrahim A. Hassan
spellingShingle Said Munir
Turki M. Habeebullah
Atef M.F. Mohammed
Essam A. Morsy
Abdel Hameed A.H. Awad
Abdulaziz R. Seroji
Ibrahim A. Hassan
An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms
EnvironmentAsia
ground level ozone
temporal variations
k-means algorithm
Makkah
author_facet Said Munir
Turki M. Habeebullah
Atef M.F. Mohammed
Essam A. Morsy
Abdel Hameed A.H. Awad
Abdulaziz R. Seroji
Ibrahim A. Hassan
author_sort Said Munir
title An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms
title_short An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms
title_full An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms
title_fullStr An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms
title_full_unstemmed An Analysis into the Temporal Variations of Ground Level Ozone in the Arid Climate of Makkah Applying k-means Algorithms
title_sort analysis into the temporal variations of ground level ozone in the arid climate of makkah applying k-means algorithms
publisher Thai Society of Higher Eduction Institutes on Environment
series EnvironmentAsia
issn 1906-1714
publishDate 2015-01-01
description Analysis of temporal variations helps identify the time when an air pollutant is more likely to exceed the air quality standards. This paper characterises the temporal variations of ground level ozone (O3) in Makkah. In addition to graphical presentations, like time variation plots, this paper applies k-means algorithm to test its applicability for analysing the diurnal cycles of O3. Diurnal, weekly and seasonal variations in O3 concentrations are analysed using data for 2012. O3 data for 1997 - 2007 are used to investigate the annual cycle ofO3. The average annual cycle shows the highest concentration in September and lowest in December. O3 concentrations are lower in colder months probably due to lower solar radiation levels, whereas unexpectedly highest O3 concentrations are observed in September. O3 levels decline in the hottest months - June and July probably due to chemical and biophysical feedbacks. Furthermore, O3 diurnal cycles are clustered into 4 and 12 subgroups using k-means algorithm. The clusters are considerably different from the monthly and seasonal diurnal cycles, probably because of the anomalies found in various months or seasons that biases the average cycles. These anomalies are addressed by k-means algorithm putting them into a separate group.
topic ground level ozone
temporal variations
k-means algorithm
Makkah
url http://www.tshe.org/ea/pdf/vol8no1-07.pdf
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