ISSN: 2157-7617

Revista de Ciencias de la Tierra y Cambio Climático

Acceso abierto

Nuestro grupo organiza más de 3000 Series de conferencias Eventos cada año en EE. UU., Europa y América. Asia con el apoyo de 1.000 sociedades científicas más y publica más de 700 Acceso abierto Revistas que contienen más de 50.000 personalidades eminentes, científicos de renombre como miembros del consejo editorial.

Revistas de acceso abierto que ganan más lectores y citas
700 revistas y 15 000 000 de lectores Cada revista obtiene más de 25 000 lectores

Indexado en
  • Índice de fuentes CAS (CASSI)
  • Índice Copérnico
  • Google Académico
  • sherpa romeo
  • Acceso en Línea a la Investigación en Medio Ambiente (OARE)
  • Abrir puerta J
  • Revista GenámicaBuscar
  • TOC de revistas
  • Directorio de publicaciones periódicas de Ulrich
  • Acceso a la Investigación Global en Línea en Agricultura (AGORA)
  • Centro Internacional de Agricultura y Biociencias (CABI)
  • Búsqueda de referencia
  • Universidad Hamdard
  • EBSCO AZ
  • OCLC-WorldCat
  • Invocaciones de proquest
  • Catálogo en línea SWB
  • publones
  • Pub Europeo
  • ICMJE
Comparte esta página

Abstracto

A High Resolution Measurement of Foreshocks for the Prediction of Earthquakes

S. Javed Arif, M. S. Jamil Asghar and K. Farahim Khan

It has been recently reported that there is a very strong relationship and well defined similarities in the vibration pattern of foreshocks, main shock and aftershocks which can be used for the prediction of earthquake. It has also been established that foreshocks are the best accredited forecaster of earthquakes. However, the foreshocks consist of an adverse combination of extremely high contents of velocity and acceleration superimposed over a very low frequency wave. Therefore, the existing low resolution accelerometers and seismometers are incapable to get an insight of the signatures of these foreshocks. In the proposed method, a fast rotating magnetic field (RMF) is used to measure the velocity and acceleration of vibrations at high resolution and accuracy. To simulate the foreshocks, a microprocessor based rocking vibration arrangement is used which generates vibrations similar to the foreshocks. These vibrations are mechanically transmitted to the rotor of a synchro. According to the movement of the rotor of synchro, the RMF generates voltage signals at the rotor output and thereby a broad spectrum of square pulses is produced with the help of a logic circuit. Consequently, all possible values of instantaneous velocity and acceleration of foreshocks are obtained, in terms of pulse widths. Hence, it gives a deep insight to recognize the distinct features of signature of foreshocks. This would help in an accurate prediction of earthquakes. The measurement is also simultaneously communicated to a PC for monitoring and remote sensing. The proposed system is simply coupled with the conventional standard spring attachment system to measure the actual foreshocks. A number of such units may be placed at different earthquake prone areas for centralized monitoring.