A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes
Earthquakebehaviors are, in general, among the non-linear topics of physics. Unfortunatelyresearches up to now could not yet propose a complete mathematical model forearthquake behavior prediction possibilities. The main reason for not beingable to establish such a model is due to the non-linear beh...
| 發表在: | Cumhuriyet Science Journal |
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| 主要作者: | |
| 格式: | Article |
| 語言: | 英语 |
| 出版: |
Sivas Cumhuriyet Üniversitesi
2018-03-01
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| 主題: | |
| 在線閱讀: | https://dergipark.org.tr/en/download/article-file/444986 |
| _version_ | 1849028218359644160 |
|---|---|
| author | Miraç Kamışlıoğlu |
| author_facet | Miraç Kamışlıoğlu |
| author_sort | Miraç Kamışlıoğlu |
| collection | DOAJ |
| container_title | Cumhuriyet Science Journal |
| description | Earthquakebehaviors are, in general, among the non-linear topics of physics. Unfortunatelyresearches up to now could not yet propose a complete mathematical model forearthquake behavior prediction possibilities. The main reason for not beingable to establish such a model is due to the non-linear behavior of theearthquake and its generation is dependent on a variety of indigenous factors.Mathematical expressions and modeling of the non-linear systems iscomparatively difficult and sometimes requires high speed and memory computers.For this reason, the expert systems as Fuzzy Logic (FL) are now commonly usedfor such modelling. Model is suggested a system to examine thespace-time behavior of any physical phenomena through a set of convenientmathematical expressions, which describe linear or non-linear aspects. Fuzzylogic applications have a fast increase in past few years. Fuzzy logicmodelling can be a very powerful explains about internal structure of dynamicsystem. The most commonly used indicator in earthquake prediction studies issoil radon gas (222Rn). In this study, we have tried to explainrelationships between 222Rn and earthquakes using fuzzy logic. Theapplication region is performed for 222Rn data of Mersin region nearthe East Anatolian Fault System, Turkey. |
| format | Article |
| id | doaj-art-c42e104f662d4bd380ff3d17cb659021 |
| institution | Directory of Open Access Journals |
| issn | 2587-2680 |
| language | English |
| publishDate | 2018-03-01 |
| publisher | Sivas Cumhuriyet Üniversitesi |
| record_format | Article |
| spelling | doaj-art-c42e104f662d4bd380ff3d17cb6590212025-09-17T08:49:54ZengSivas Cumhuriyet ÜniversitesiCumhuriyet Science Journal2587-26802018-03-0139121121710.17776/csj.3603202057A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and EarthquakesMiraç Kamışlıoğlu0ÜSKÜDAR ÜNİVERSİTESİEarthquakebehaviors are, in general, among the non-linear topics of physics. Unfortunatelyresearches up to now could not yet propose a complete mathematical model forearthquake behavior prediction possibilities. The main reason for not beingable to establish such a model is due to the non-linear behavior of theearthquake and its generation is dependent on a variety of indigenous factors.Mathematical expressions and modeling of the non-linear systems iscomparatively difficult and sometimes requires high speed and memory computers.For this reason, the expert systems as Fuzzy Logic (FL) are now commonly usedfor such modelling. Model is suggested a system to examine thespace-time behavior of any physical phenomena through a set of convenientmathematical expressions, which describe linear or non-linear aspects. Fuzzylogic applications have a fast increase in past few years. Fuzzy logicmodelling can be a very powerful explains about internal structure of dynamicsystem. The most commonly used indicator in earthquake prediction studies issoil radon gas (222Rn). In this study, we have tried to explainrelationships between 222Rn and earthquakes using fuzzy logic. Theapplication region is performed for 222Rn data of Mersin region nearthe East Anatolian Fault System, Turkey.https://dergipark.org.tr/en/download/article-file/444986depremmodellemeradonbulanık mantıkuzman sistemlerearthquakemodellingradonfuzzy logic |
| spellingShingle | Miraç Kamışlıoğlu A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes deprem modelleme radon bulanık mantık uzman sistemler earthquake modelling radon fuzzy logic |
| title | A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes |
| title_full | A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes |
| title_fullStr | A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes |
| title_full_unstemmed | A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes |
| title_short | A Fuzzy Logic Application for Explain Relationships Between 222Rn Concentration and Earthquakes |
| title_sort | fuzzy logic application for explain relationships between 222rn concentration and earthquakes |
| topic | deprem modelleme radon bulanık mantık uzman sistemler earthquake modelling radon fuzzy logic |
| url | https://dergipark.org.tr/en/download/article-file/444986 |
| work_keys_str_mv | AT mirackamıslıoglu afuzzylogicapplicationforexplainrelationshipsbetween222rnconcentrationandearthquakes AT mirackamıslıoglu fuzzylogicapplicationforexplainrelationshipsbetween222rnconcentrationandearthquakes |
