Geoid Determination in Central Spain from Gravity and Height data
dc.contributor.author | Gil, A.J. | |
dc.contributor.author | Sevilla de Lerma, Miguel Jesús | |
dc.contributor.author | Rodríguez Caderot, Gracia | |
dc.date.accessioned | 2023-06-20T18:41:17Z | |
dc.date.available | 2023-06-20T18:41:17Z | |
dc.date.issued | 1993 | |
dc.description.abstract | The least-squares collocation method has been used for the computation of a geoid solution in central Spain, combining a geopotential model complete to degree and order 360, gravity anomalies and topographic information. The area has been divided in two 1-degrees x 1-degrees blocks and predictions have been done in each block with gravity data spacing about 5' x 5' within each block, extended 1/2-degrees. Topographic effects have been calculated from 6'' x 9'' heights using an RTM reduction with a reference terrain model of 30' x 30' mean heights. | |
dc.description.department | Unidad Deptal. de Astronomía y Geodesia | |
dc.description.faculty | Fac. de Ciencias Matemáticas | |
dc.description.refereed | TRUE | |
dc.description.status | pub | |
dc.eprint.id | https://eprints.ucm.es/id/eprint/20059 | |
dc.identifier.doi | 10.1007/BF00807296 | |
dc.identifier.issn | 0007-4632 | |
dc.identifier.officialurl | http://link.springer.com/article/10.1007%2FBF00807296?LI=true | |
dc.identifier.relatedurl | http://link.springer.com/ | |
dc.identifier.uri | https://hdl.handle.net/20.500.14352/58309 | |
dc.issue.number | 1 | |
dc.journal.title | Bulletin Geodesique | |
dc.page.final | 50 | |
dc.page.initial | 41 | |
dc.publisher | Springer | |
dc.rights.accessRights | metadata only access | |
dc.subject.cdu | 528 | |
dc.subject.ucm | Geodesia | |
dc.subject.unesco | 2504 Geodesia | |
dc.title | Geoid Determination in Central Spain from Gravity and Height data | |
dc.type | journal article | |
dc.volume.number | 67 | |
dcterms.references | Arabelos, D. (1989) Gravity field approximation in the area of Greece with enphasis on local characteristics, Bull. Geod. vol. 63, pp. 69–84. Basic, T., H. Denker, P. Knudsen, D. Solheim and W. Torge (1990) A New Geopotential Model Tailored to Gravity Data in Europe, In Gravity, Gradiometry and Gravimetry, Ed. by R.Rummel and R.G. Hipkin, IAG Symp. 103, pp. 109–118, Springer-Verlag. Benciolini, B., L. Mussio, F. Sanso, P. Gasperini, Y S. Zerbini (1984)Geoid Computation in the Italian Area, Bolletino di Geodesia e Scienze affini, n. 3, pp. 213–243. Forsberg, R. (1984) A study of terrain reductions, density anomalies and geophysical inversion methods in gravity field modelling, Dept. of Geodetic Science and Surveying Report n. 355. The Ohio State University, Columbus, Ohio. Forsberg, R. and C.C. Tscherning (1981) The use of height data in gravity field approximation by collocation, Journal of Geophysical Research, Vol 86, B9, pp. 7843–7854. Heiskanen, W. A. y H. Moritz (1967) Physical Geodesy, W.H. Freeman and Co., San Francisco. IGN (1983)Base de datos de anomalías gravimétricas, Instituto Geográfico Nacional. Knudsen, P. (1987) Estimation and modelling of the local empirical covariance function using gravity and satellite altimeter data, Bull. Géod. Vol 61, pp. 145–160. Moritz, H. (1980) Advanced physical Geodesy, Herbert Wichmann Verlag, Karlsruhe. Rapp, R. H. (1981) The Earth's Gravity Field to Degree and Order 180 using Seasat Altimeter Data, Terrestrial Data and other Data, Dept. of Geodetic Science and Surveying Report n. 322, The Ohio State University, Columbus, Ohio. 11.Rapp, R. H. and N. K. Pavlis (1990) The Development and Analysis of Geopotential Coefficient Models to Spherical Harmonic Degree 360, Journal of Geophysical Research, Vol 95, B13, pp. 21885–21911. Sevilla, M. J., A. J. Gil, and F. Sanso (1991) The Gravimetric Geoid in Spain: First Results, In Determination of the Geoid. Present and Future, Ed. by R.H.Rapp and F.Sanso, IAG Symp. 106, pp. 276–285, Springer Verlag. Schwarz, K.P., M.G. Sideris and R. Forsberg (1990) The use of FFT in physical geodesy, Geoph. J. Int., vol 100, pp. 485–514. Tscherning, C. C. (1979) Gravity prediction using Collocation and taking known mass density anomalies into account. Geophys. J. R. Astr. Soc., vol. 59, pp. 147–153. Tscherning, C. C. (1982) Geoid determination for the Nordic countries using collocation, Proceedings of the General Meeting of the IAG, Tokyo, May 7–15, pp. 472–483. Tscherning, C. C. (1985) GEOCOL-A FORTRAN-program for gravity field approximation by collocation. Technical Note, Geodaetisk Institut, 3rd ed. Tscherning, C. C. and R. H. Rapp (1974) Closed covariance expressions for gravity anomalies, geoid undulations, and deflections of the vertical implied by anomaly degree-variance models, Dept. of Geodetic Science, report 208, The Ohio State University. Wenzel, G. (1985) Hochaufloessende, Kugelfunktionsmodelle fuer das Gravitationspotential der Erde, Wiss. Arb. Fachrichtung Vermessung- swesen der Universitaet Hannover. | |
dspace.entity.type | Publication |