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A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters

Yıl 2019, , 235 - 237, 15.08.2019
https://doi.org/10.19111/bulletinofmre.546153

Öz

When processing gravity data, the
filters are used in space and frequency environments. The filters allow more
selectable parameter estimations than raw data about the structure being
examined. Filtering in a broad sense means monitoring the data under the
constraints we want. While the filters allow some information to become more
noticeable, they allow some information to be lost or become less noticeable
from data. In this case, the losses in the data make the interpretation
difficult and can cause errors. Derivative and phase filters provide
quantitative information about the variation of data in different directions.
The display of the change results in a positive or negative manner proportional
to derivative sensitivity and phase sharpness, and this may be observed in this
data. In the structural boundary analysis, since the sudden changes in the
derivative cause oscillations, the boundaries become questionable. Limiting the
data neighborhoods with a window by controlling the deviation without using
derivative and the filters that allow boundary analysis non-derivative by floating
this limitation are used to illuminate the boundary relationships.

Kaynakça

  • Cordell, L., Grauch, V.J.S. 1985. Mapping basement magnetization zones from aeromagnetic data in the San Juan Basin, New Mexico, in Hinze, William J. (ed), The utility of regional gravity and magnetic anomaly maps: Society of Exploration Geophysicists, Tulsa, Oklahoma, (1985). Pp:181-197.
  • D’errico, J. 2016. Personel Web Page https://www. mathworks.com/matlabcentral/.../869215-john
  • Gravity Data from: Bureau Gravimetrique International (BGI). DOI:10.18168/BGI.
  • Toker, C. E., Çiftçi, Y., Ayva, A., Kürçer, A. 2014. Two examples for imaging buried geological boundaries: Sinkhole structure and Seyit Hacı fault, Karapınar, Konya. Bulletin of the Mineral Research and Exploration. 149, 189-199, Ankara.
  • Toker, C. E., Ulugergerli Emin. U., Kılıç, A.R. 2018. Naşa Sokulumu (Batı Anadolu) ve tektonik anlamı: gravite ve deprem verilerinin birlikte analizi. Maden Tetkik ve Arama Dergisi. 156:251-262
Yıl 2019, , 235 - 237, 15.08.2019
https://doi.org/10.19111/bulletinofmre.546153

Öz

 

Kaynakça

  • Cordell, L., Grauch, V.J.S. 1985. Mapping basement magnetization zones from aeromagnetic data in the San Juan Basin, New Mexico, in Hinze, William J. (ed), The utility of regional gravity and magnetic anomaly maps: Society of Exploration Geophysicists, Tulsa, Oklahoma, (1985). Pp:181-197.
  • D’errico, J. 2016. Personel Web Page https://www. mathworks.com/matlabcentral/.../869215-john
  • Gravity Data from: Bureau Gravimetrique International (BGI). DOI:10.18168/BGI.
  • Toker, C. E., Çiftçi, Y., Ayva, A., Kürçer, A. 2014. Two examples for imaging buried geological boundaries: Sinkhole structure and Seyit Hacı fault, Karapınar, Konya. Bulletin of the Mineral Research and Exploration. 149, 189-199, Ankara.
  • Toker, C. E., Ulugergerli Emin. U., Kılıç, A.R. 2018. Naşa Sokulumu (Batı Anadolu) ve tektonik anlamı: gravite ve deprem verilerinin birlikte analizi. Maden Tetkik ve Arama Dergisi. 156:251-262
Toplam 5 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Ceyhan Ertan Toker Bu kişi benim 0000-0002-4923-9835

Yayımlanma Tarihi 15 Ağustos 2019
Yayımlandığı Sayı Yıl 2019

Kaynak Göster

APA Toker, C. E. (2019). A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters. Bulletin of the Mineral Research and Exploration, 159(159), 235-237. https://doi.org/10.19111/bulletinofmre.546153
AMA Toker CE. A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters. Bull.Min.Res.Exp. Ağustos 2019;159(159):235-237. doi:10.19111/bulletinofmre.546153
Chicago Toker, Ceyhan Ertan. “A Brief Note on the Effects of Floating Standard Deviation (non- Derivative) and Horizontal Gradient (derivative) Filters”. Bulletin of the Mineral Research and Exploration 159, sy. 159 (Ağustos 2019): 235-37. https://doi.org/10.19111/bulletinofmre.546153.
EndNote Toker CE (01 Ağustos 2019) A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters. Bulletin of the Mineral Research and Exploration 159 159 235–237.
IEEE C. E. Toker, “A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters”, Bull.Min.Res.Exp., c. 159, sy. 159, ss. 235–237, 2019, doi: 10.19111/bulletinofmre.546153.
ISNAD Toker, Ceyhan Ertan. “A Brief Note on the Effects of Floating Standard Deviation (non- Derivative) and Horizontal Gradient (derivative) Filters”. Bulletin of the Mineral Research and Exploration 159/159 (Ağustos 2019), 235-237. https://doi.org/10.19111/bulletinofmre.546153.
JAMA Toker CE. A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters. Bull.Min.Res.Exp. 2019;159:235–237.
MLA Toker, Ceyhan Ertan. “A Brief Note on the Effects of Floating Standard Deviation (non- Derivative) and Horizontal Gradient (derivative) Filters”. Bulletin of the Mineral Research and Exploration, c. 159, sy. 159, 2019, ss. 235-7, doi:10.19111/bulletinofmre.546153.
Vancouver Toker CE. A brief note on the effects of floating standard deviation (non- derivative) and horizontal gradient (derivative) filters. Bull.Min.Res.Exp. 2019;159(159):235-7.

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