METADATA
IN ENGLISH
About the journal
SEISMICHESKIE
PRIBORY, ISSN: 0131-6230, eISSN: 2312-6965,
DOI: 10.21455/si, http://elibrary.ru/title_about.asp?id=25597)
English
Translation: Seismic Instruments, ISSN: 0747-9239 (Print) 1934-7871 (Online),
https://link.springer.com/journal/11990
Using
four-component geophones – effect
on quality and reliability of multicomponent seismic recording, analysis of
processing methods
P.S. Plotnitskii1,2, S.V. Yaskevich1,2, A.A. Duchkov1,2
1 Trofimuk Institute of Petroleum Geology and
Geophysics, Siberian Branch of
2
Corresponding
author: S.V. Yaskevich, e-mail: yaskevichsv@gmail.com
Highlights
·
Signal-to-noise ratio increases when
transformation of
·
We show the approach of correcting
sensitivity of
·
Abstract. For seismic observations
in mines or wells, along with three-component seismic sensors, four-component
geophones with sensors located along the tetrahedron axes are used. When the geophones are placed in a
hard-to-reach place for a long period, the requirements for the sensor
reliability increase, and there is a need to control its operation. From this
point of view, the four-component geophone has some advantages over the
conventional three-component one. Of these advantages, three main ones are
distinguished: the suppression of instrumental noise when recalculating the
four-component recording into a three-component one, retaining the informative
value of the polarization analysis of the data in a case of failure of one of
the components of the seismic receiver, and monitoring the sensitivity of individual
components of the seismic receivers. To suppress instrumental noise in the case
of a four-component geophone, it is necessary to perform a number of
procedures: first, the covariance matrix of the recording components is
calculated, next, the eigenvalues and eigenvectors of the covariance matrix.
Then a parameter is calculated that allows us to assess the ratio of
instrumental noise to the useful signal. On the next step, we calculate an
operator which converts the four-component record into a three-dimensional
subspace projection. This operator is applied to the data to suppress
interference (movements that do not correspond to motion in three-dimensional
space). At the output of the procedure,
we get the data, partially separated from the instrumental noise. In this
paper, the data processing features of four-component geophones are studied
using model examples. The capability of suppressing instrumental noise and
controlling the sensitivity of individual components of seismic receivers is
demonstrated. We also show and analyze the effect of polarization analysis on
the results obtained.
Keywords: borehole geophone,
components, recording, tetrahedron, multiwave seismology, polarization
analysis, microseismic monitoring, noise suppression, VSP.
About the authors
PLOTNITSKII Pavel Sergeevich – laboratory assistant, Federal State
Budgetary Scientific Institution Trofimuk Institute of Petroleum Geology and
Geophysics of Siberian Branch of Russian Academy of Sciences (IPGG SB RAS),
630090, Novosibirsk, av. Koptyug, b, 3; MSc student, Novosibirsk State
University, 630090, Novosibirsk, st. Pirogova, 2. Tel.: +7 (383) 3309016.
E-mail: pplotnitskiy@bk.ru
YASKEVICH Sergey Vladimirovich – PhD, Researcher, Federal State Budgetary Scientific Institution
Trofimuk Institute of Petroleum Geology and Geophysics of Siberian Branch of
Russian Academy of Sciences (IPGG SB RAS), 630090, Novosibirsk, av. Koptyug, b.
3; Senior Lecturer, Novosibirsk State University, 630090, Novosibirsk, st.
Pirogova, 2. Tel.: +7 (923) 1338719. E-mail: yaskevichsv@gmail.com
DUCHKOV Anton
Albertovich – PhD, Researcher, Federal
State Budgetary Scientific Institution Trofimuk Institute of Petroleum Geology
and Geophysics of Siberian Branch of Russian Academy of Sciences (IPGG SB RAS),
630090, Novosibirsk, av. Koptyug, b. 3; Associate professor, Novosibirsk State
University, 630090, Novosibirsk, st. Pirogova, 2. Tel.: +7 (383) 3309016.
E-mail: DuchkovAA@ipgg.sbras.ru
Cite this
article as: Plotnitskii P.S., Yaskevich S.V.,
Duchkov A.A. The use of four-component geophones – impact on the quality and
reliability of multicomponent seismic recording, analysis of processing
methods, Seismicheskie Pribory, 2017,
vol. 53, no. 4, pp.26–36. DOI: 10.21455/si2017.4-2 (in Russ.).
English translation of the article
will be published in Seismic Instruments,
ISSN: 0747-9239 (Print) 1934-7871 (Online),
https://link.springer.com/journal/11990), 2018, Volume 54, Issue 4.