BibTex RIS Kaynak Göster

Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem

Yıl 2008, Cilt: 21 Sayı: 1, 37 - 45, 20.03.2012

Öz

The Resistivity Forward Modeling of Two-Dimensional Features Using the Finite Element Method 

Kaynakça

  • Bibby, H. M., 1978, Direct current resistivity modeling for axially symmetric bodies using the finite element method, Geophysics, 43, 3, 550-562.
  • Chandrupatla, T.R., and Belegundu, A.D., 1991, Introduction to finite elements in engineering, Prentice Hall, New Jersey, 414 p.
  • Coggon, J.H., 1971, Electromagnetic and electrical modeling by the finite element method, Geophysics, 36, 1, 132-155.
  • Chunduru, R.K., Nagendra, R., and Patangay, N.S., 1991, A Fortran program for computing apparent resistivity over an infinitely deep outcropping vertical dike, Computers & Geosciences, 17, 10, 1395-1408.
  • Dey, A. and Morrison, H.F., 1979, Resistivity modeling for arbitrary shaped two-dimensional structures, Geophysical Prospecting, 27, 1020-1036.
  • Dittmer, J.K., and Szymanski, J.E., 1993, The forward modeling of resistive two-dimensional features using the finite element method, Geophysical Exploration of Archaeological Sites, Edit by Andreas Vogel, Vieweg Publishing, 7, 103-122.
  • Griffiths, D.H., and Barker, R.D., 1993, Twodimensional resistivity imaging and modeling in areas of complex geology, Journal of Applied Geophysics, 29, 211-226.
  • Hohmann, G.W., 1975, Three-dimensional induced polarization and electromagnetic modeling, Geophysics, 40, 2, 309-324.
  • Lee, T., 1972, A general technique for the direct interpretation of resistivity data over twodimensional structures, Geophysical Prospecting, 20, 847-859.
  • Lee, T., 1975, An integral equation and its solution for some two- and three-dimensional problems in resistivity and induced polarization, Geophys. J. R. astr. Soc., 42, 81-95.
  • Loke, M.H., 2001, Two-dimensional and threedimensional electrical imaging surveys, http://www.geoelectrical.com.
  • Mufti, I.R., 1976, Finite-difference resistivity modeling for arbitrarily shaped two-dimensional structures, Geophysics, 41, 1, 62-78.
  • Mufti, I.R., 1978, A practical approach to finitedifference resistivity modeling, Geophysics, 43, 5, 930-942.
  • Mundry, E., 1984, Geoelectrical model calculations for two-dimensional resistivity distributions, Geophysical Prospecting, 32, 124-131.
  • Pelton, W.H., Rijo, L., Swift, C.M, 1978, Inversion of two-dimensional resistivity and induced polarization data, Geophysics, 43, 4, 788-803.
  • Pridmore, D.F., Hohmann, G.W., Ward, S.H., and Sill, W.R., 1981, An investigation of finite-element modeling for electrical and electromagnetic data in the three dimensions, Geophysics, 46, 7, 1009-1024.
  • Queralt, P., Pous, J., and Marcuello, A., 1991, 2-D resistivity modeling: an approach to arrays parallel to the strike direction, Geophysics, 56, 7, 941-950.
  • Rijo, L., 1977, Modeling of electric and electromagnetic data, Ph.D. Thesis, University of Utah, Salt Lake City, 242 p.
  • Sasaki, Y., 1982, Automatic interpretation of induced polarization data over two-dimensional structures, Memoirs of the Faculty of Engineering, Kyushu University, 42, 1, 59-74.
  • Sasaki, Y., 1994, 3-D resistivity inversion using the finite element method, Geophysics, 59, 11, 1839-1848.
  • Tripp, A.C., Hohmann, G.W., and Swift, C.M., Jr., 1984, Two-dimensional resistivity inversion, Geophysics, 49, 10, 1708-1717.
  • Sasaki, Y., 1994, 3-D resistivity inversion using the finite element method, Geophysics, 59, 11, 18391848. Tripp, A.C., Hohmann, G.W., and Swift, C.M., Jr., 1984, Two-dimensional resistivity inversion, Geophysics, 49, 10, 1708-1717.
  • Tsokas, G., Tsourlos, P., and Szymanski, J., 1997, Square array resistivity anomalies and inhomogeneity ratio calculated by the finite element method, Geophysics, 62, 2, 426-435.
  • Zang, J., Mackie, R., and Madden, T., 1995, 3-D resistivity forward modeling and inversion using conjugate gradients, Geophysics, 60, 1313-1325.
  • Zhao, S., and Yedlin, M.J., 1996, Some refinements of the finite-difference method for 3-D dc resistivity modeling, Geophysics, 61, 5, 1301-1307.
  • Zhou, B., and Greenhalgh, S.A., 2001, Finite element three-dimensional direct current resistivity modeling: accuracy and efficiency considerations, Geophys. J. Int., 145, 679-688.
Yıl 2008, Cilt: 21 Sayı: 1, 37 - 45, 20.03.2012

Öz

Kaynakça

  • Bibby, H. M., 1978, Direct current resistivity modeling for axially symmetric bodies using the finite element method, Geophysics, 43, 3, 550-562.
  • Chandrupatla, T.R., and Belegundu, A.D., 1991, Introduction to finite elements in engineering, Prentice Hall, New Jersey, 414 p.
  • Coggon, J.H., 1971, Electromagnetic and electrical modeling by the finite element method, Geophysics, 36, 1, 132-155.
  • Chunduru, R.K., Nagendra, R., and Patangay, N.S., 1991, A Fortran program for computing apparent resistivity over an infinitely deep outcropping vertical dike, Computers & Geosciences, 17, 10, 1395-1408.
  • Dey, A. and Morrison, H.F., 1979, Resistivity modeling for arbitrary shaped two-dimensional structures, Geophysical Prospecting, 27, 1020-1036.
  • Dittmer, J.K., and Szymanski, J.E., 1993, The forward modeling of resistive two-dimensional features using the finite element method, Geophysical Exploration of Archaeological Sites, Edit by Andreas Vogel, Vieweg Publishing, 7, 103-122.
  • Griffiths, D.H., and Barker, R.D., 1993, Twodimensional resistivity imaging and modeling in areas of complex geology, Journal of Applied Geophysics, 29, 211-226.
  • Hohmann, G.W., 1975, Three-dimensional induced polarization and electromagnetic modeling, Geophysics, 40, 2, 309-324.
  • Lee, T., 1972, A general technique for the direct interpretation of resistivity data over twodimensional structures, Geophysical Prospecting, 20, 847-859.
  • Lee, T., 1975, An integral equation and its solution for some two- and three-dimensional problems in resistivity and induced polarization, Geophys. J. R. astr. Soc., 42, 81-95.
  • Loke, M.H., 2001, Two-dimensional and threedimensional electrical imaging surveys, http://www.geoelectrical.com.
  • Mufti, I.R., 1976, Finite-difference resistivity modeling for arbitrarily shaped two-dimensional structures, Geophysics, 41, 1, 62-78.
  • Mufti, I.R., 1978, A practical approach to finitedifference resistivity modeling, Geophysics, 43, 5, 930-942.
  • Mundry, E., 1984, Geoelectrical model calculations for two-dimensional resistivity distributions, Geophysical Prospecting, 32, 124-131.
  • Pelton, W.H., Rijo, L., Swift, C.M, 1978, Inversion of two-dimensional resistivity and induced polarization data, Geophysics, 43, 4, 788-803.
  • Pridmore, D.F., Hohmann, G.W., Ward, S.H., and Sill, W.R., 1981, An investigation of finite-element modeling for electrical and electromagnetic data in the three dimensions, Geophysics, 46, 7, 1009-1024.
  • Queralt, P., Pous, J., and Marcuello, A., 1991, 2-D resistivity modeling: an approach to arrays parallel to the strike direction, Geophysics, 56, 7, 941-950.
  • Rijo, L., 1977, Modeling of electric and electromagnetic data, Ph.D. Thesis, University of Utah, Salt Lake City, 242 p.
  • Sasaki, Y., 1982, Automatic interpretation of induced polarization data over two-dimensional structures, Memoirs of the Faculty of Engineering, Kyushu University, 42, 1, 59-74.
  • Sasaki, Y., 1994, 3-D resistivity inversion using the finite element method, Geophysics, 59, 11, 1839-1848.
  • Tripp, A.C., Hohmann, G.W., and Swift, C.M., Jr., 1984, Two-dimensional resistivity inversion, Geophysics, 49, 10, 1708-1717.
  • Sasaki, Y., 1994, 3-D resistivity inversion using the finite element method, Geophysics, 59, 11, 18391848. Tripp, A.C., Hohmann, G.W., and Swift, C.M., Jr., 1984, Two-dimensional resistivity inversion, Geophysics, 49, 10, 1708-1717.
  • Tsokas, G., Tsourlos, P., and Szymanski, J., 1997, Square array resistivity anomalies and inhomogeneity ratio calculated by the finite element method, Geophysics, 62, 2, 426-435.
  • Zang, J., Mackie, R., and Madden, T., 1995, 3-D resistivity forward modeling and inversion using conjugate gradients, Geophysics, 60, 1313-1325.
  • Zhao, S., and Yedlin, M.J., 1996, Some refinements of the finite-difference method for 3-D dc resistivity modeling, Geophysics, 61, 5, 1301-1307.
  • Zhou, B., and Greenhalgh, S.A., 2001, Finite element three-dimensional direct current resistivity modeling: accuracy and efficiency considerations, Geophys. J. Int., 145, 679-688.
Toplam 26 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Bölüm Makaleler
Yazarlar

Sedat Yılmaz Bu kişi benim

Yayımlanma Tarihi 20 Mart 2012
Yayımlandığı Sayı Yıl 2008 Cilt: 21 Sayı: 1

Kaynak Göster

APA Yılmaz, S. (2012). Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem. İstanbul Yerbilimleri Dergisi, 21(1), 37-45.
AMA Yılmaz S. Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem. İstanbul Yerbilimleri Dergisi. Mart 2012;21(1):37-45.
Chicago Yılmaz, Sedat. “Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem”. İstanbul Yerbilimleri Dergisi 21, sy. 1 (Mart 2012): 37-45.
EndNote Yılmaz S (01 Mart 2012) Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem. İstanbul Yerbilimleri Dergisi 21 1 37–45.
IEEE S. Yılmaz, “Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem”, İstanbul Yerbilimleri Dergisi, c. 21, sy. 1, ss. 37–45, 2012.
ISNAD Yılmaz, Sedat. “Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem”. İstanbul Yerbilimleri Dergisi 21/1 (Mart 2012), 37-45.
JAMA Yılmaz S. Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem. İstanbul Yerbilimleri Dergisi. 2012;21:37–45.
MLA Yılmaz, Sedat. “Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem”. İstanbul Yerbilimleri Dergisi, c. 21, sy. 1, 2012, ss. 37-45.
Vancouver Yılmaz S. Sonlu Elemanlar Yöntemini Kullanarak İki-Boyutlu Yapıların Özdirenç İleri Modellem. İstanbul Yerbilimleri Dergisi. 2012;21(1):37-45.