Neural Network Algorithms for using Radon Emanations as an Earthquake Precursor

Gupta Dhawal
Gupta Dhawal
Shahani D. T
Shahani D. T

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Neural Network Algorithms for using Radon Emanations as an Earthquake Precursor

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Abstract

The investigation throughout the world in past two decades provides evidence which indicates that significance variation of radon and other soil gases may occur in association with major geophysical events such as earthquake events. The traditional statistical algorithm which included regression to remove the effect of the meteorological parameters from the as is measured radon along with additional variation that periodicity in seasonal variations is computed using Fast Fourier Transform has shown to improve reliability of prediction of earthquake The present paper deals with the use of neural network algorithms which can learn the behavior of radon with respect to known meteorological parameters. This method has potential of tracking “changing patterns” in dependence of radon on meteorological parameters and it may adapt to such changes on its own in due course of time. Another neural network algorithm using Probabilistic Neural Networks that requires neither an explicit step of regression nor use of any specific period is also presented.

References

18 Cites in Article
  1. Gupta Dhawal,D Shahani,Khan Shakeb (2007). Fast Fourier Transform based Earthquake Precursor Analysis of Radon in N-W Himalayas.
  2. D Gupta,D Shahani (2011). Estimation of Radon as an Earthquake Precursor: A neural network approach.
  3. H Gupta,H Singh (1986). Seismicity of the North-Eastern Region.
  4. H Gupta,P Mandal,H Satyanarayana,B Shashidhar,M Shekhar,A Singh,U Devi,P Rao,V Dimri (2005). An Earthquake of M~5 may occur at Koyna.
  5. H Virk,Baljinder (1993). Radon anomalies in soil gas and ground water as Earthquake Precursor phenomena.
  6. G Igarashi,S Saeki,N Takahata,K Sumikawa,S Tasaka,Y Sasaki,M Takahashi,Y Sano (1995). Ground-Water Radon Anomaly Before the Kobe Earthquake in Japan.
  7. J Planinic,V Radolic,B Vukovic (2004). Radon as an Earthquake Precursor.
  8. Anshu Jin,Keiiti Aki (1986). Temporal change in coda <i>Q</i> before the Tangshan Earthquake of 1976 and the Haicheng Earthquake of 1975.
  9. K Khattri,M Wyss (1978). Precursory variations of seismicity rate in Assam Area, India.
  10. C Lomnitz,L Lomnitz,Tangshan (1978). A case history in earthquake prediction. Nature 171, aftershocks.
  11. H Srivastava (1973). The crustal seismicity and nature of faulting near India, Nepal and Tibet trijunction.
  12. H Srivastava,P Rao (1990). SPATIO TEMPORAL SEISMICITY PATTERNS PRECEDING BIHAR – NEPAL ANDMANIPUR – BURMA BORDER EARTHQUAKE OF 1988.
  13. Ragnar Stefansson,M Bonafede,G Gudmundsson (2011). Earthquake-Prediction Research and the Earthquakes of 2000 in the South Iceland Seismic Zone.
  14. V Ulamov,B Mavashev (1967). On forerunners of strong tectonic earthquakes.
  15. P Varotsos,K Alexopoulos (1984). Physical properties of the variations of the electric field of the earth preceding earthquakes, I.
  16. K Wattananikorn,M Kanaree,S Wiboolsake (1988). Soil gas radon as an earthquake precursor some consideration on data improvement.
  17. B Zmazek,L Todorovski,S Dzeroski,J Vaupotic,I Kobal (2003). Application of decision trees to the analysis of soil radon for earthquake precursor.
  18. B. Zmazek,M Živčić,L Todorovski,S Džeroski,J Vaupotič,I Kobal (2005). Radon in soil gas: How to identify anomalies caused by earthquakes.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

How to Cite This Article

. 2013. \u201cNeural Network Algorithms for using Radon Emanations as an Earthquake Precursor\u201d. Global Journal of Computer Science and Technology - D: Neural & AI GJCST-D Volume 13 (GJCST Volume 13 Issue D2).

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Journal Specifications

Crossref Journal DOI 10.17406/gjcst

Print ISSN 0975-4350

e-ISSN 0975-4172

Version of record

v1.2

Issue date
May 19, 2013

Language
en
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Neural Network Algorithms for using Radon Emanations as an Earthquake Precursor

Gupta Dhawal
Gupta Dhawal
Shahani D. T
Shahani D. T

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