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Terrain effects on geoid determination.
~
Bajracharya, Sujan.
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Terrain effects on geoid determination.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Terrain effects on geoid determination./
作者:
Bajracharya, Sujan.
面頁冊數:
114 p.
附註:
Adviser: M. G. Sideris.
Contained By:
Masters Abstracts International42-05.
標題:
Geodesy. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=MQ89293
ISBN:
9780612892934
Terrain effects on geoid determination.
Bajracharya, Sujan.
Terrain effects on geoid determination.
- 114 p.
Adviser: M. G. Sideris.
Thesis (M.Sc.)--University of Calgary (Canada), 2003.
Gravimetric reduction schemes play an important role on precise geoid determination, especially in rugged areas. The main theme of this research is to explore different gravimetric reduction schemes in the context of precise geoid determination, in addition to the usual Helmert's second method of condensation and residual terrain model (RTM). A numerical investigation is carried out in the rugged area of the Canadian Rockies to study gravimetric geoid solutions based on the Rudzki inversion scheme, Helmert's second method of condensation, RTM, and the topographic-isostatic reduction methods of Airy-Heiskanen (AH) and Pratt-Hayford (PH). The mathematical formulations of each of these techniques are presented.
ISBN: 9780612892934Subjects--Topical Terms:
550741
Geodesy.
Terrain effects on geoid determination.
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Gravimetric reduction schemes play an important role on precise geoid determination, especially in rugged areas. The main theme of this research is to explore different gravimetric reduction schemes in the context of precise geoid determination, in addition to the usual Helmert's second method of condensation and residual terrain model (RTM). A numerical investigation is carried out in the rugged area of the Canadian Rockies to study gravimetric geoid solutions based on the Rudzki inversion scheme, Helmert's second method of condensation, RTM, and the topographic-isostatic reduction methods of Airy-Heiskanen (AH) and Pratt-Hayford (PH). The mathematical formulations of each of these techniques are presented.
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In addition, this thesis investigated two important topics for precise geoid determination; the density and gravity interpolation effects on Helmert geoid determination and the terrain aliasing effects on geoid determination using different mass reduction schemes. (Abstract shortened by UMI.)
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