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海面-地面系统中三维古地面反演计算的剥蚀算法研究
引用本文:王琳,钟鹤翔,谢志仁.海面-地面系统中三维古地面反演计算的剥蚀算法研究[J].地理与地理信息科学,2010,26(2).
作者姓名:王琳  钟鹤翔  谢志仁
作者单位:1. 中国科学院南京地理与湖泊研究所,江苏,南京,210008;中国科学院研究生院,北京,100039
2. 江苏省信息中心,江苏,南京,210013
3. 南京师范大学地理科学学院,江苏,南京,210097
基金项目:国家自然科学基金项目 
摘    要:三维古地面反演计算是海面-地面系统研究中的一个基础研究。该文在前人研究的基础上提出了三维古地面反演计算的剥蚀算法,并与传统的加积算法做了比较分析,得出剥蚀算法比加积算法有对时间序列离散判断简单、方便计算等优点。同时,在GIS平台下实现了该算法,并以长江三角洲地区为试验区,进行了古地面虚拟反演计算,取得了较好的效果。

关 键 词:地理信息系统  海面-地面系统  古地面反演计算

Research on Denudation Arithmetic of Three-Dimensional Paleosurface Inversion Algorithm in Sea Level-Land Surface System
WANG Lin,ZHONG He-xiang,XIE Zhi-ren.Research on Denudation Arithmetic of Three-Dimensional Paleosurface Inversion Algorithm in Sea Level-Land Surface System[J].Geography and Geo-Information Science,2010,26(2).
Authors:WANG Lin  ZHONG He-xiang  XIE Zhi-ren
Abstract:Three-dimensional paleosurface inversion algorithm is a basic study in sea level-land surface system research.Based on previous studies,a denudation arithmetic of three-dimensional paleosurface inversion calculation is proposed.The algorithm is to peel off the layers of increased height which was caused by crustal movement,sedimentation,and sedimentary compaction,etc.in a certain geological period of time,and inverse the height of ancient terrain.Then,a datum conversion of the inversed height is conducted using the ancient sea surface height at that time,and get the value of discrete points of the ancient elevation.The algorithm is independent with the raw data,and can be widely used in the calculation of the inversion process mainly caused by deposition of ancient terrain changes.The calculation accuracy of denudation arithmetic depends on the accuracy of the data in study areas,especially the accuracy of sedimentary thickness.Compared with traditional aggradation arithmetic,the denudation arithmetic is much more convenient in time sequence discrete judgments.In addition,the Yangtze River Delta region is selected as a case study area to perform the denudation arithmetic,and better results are obtained when an inversion calculation to simulate 10 thousand years terrain changes in this region processed.
Keywords:geographic information system  sea level-land surface system  paleosurface inversion algorithm
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