典型文献
Three-dimensional gravity inversion based on optimization processing from edge detection
文献摘要:
Gravity inversion requires much computation,and inversion results are often non-unique.The first problem is often due to the large number of grid cells.Edge detection method,i.e.,tilt angle method of analytical signal amplitude(TAS),helps to identify the boundaries of underground geological anomalies at different depths,which can be used to optimize the grid and reduce the number of grid cells.The requirement of smooth inversion is that the boundaries of the meshing area should be continuous rather than jagged.In this paper,the optimized meshing strategy is improved,and the optimized meshing region obtained by the TAS is changed to a regular region to facilitate the smooth inversion.For the second problem,certain constraints can be used to improve the accuracy of inversion.The results of analytic signal amplitude(ASA)are used to delineate the central distribution of geological bodies.We propose a new method using the results of ASA to perform local constraints to reduce the non-uniqueness of inversion.The guided fuzzy c-means(FCM)clustering algorithm combined with priori petrophysical information is also used to reduce the non-uniqueness of gravity inversion.The OpenAcc technology is carried out to speed up the computation for parallelizing the serial program on GPU.In general,the TAS is used to reduce the number of grid cells.The local weighting and priori petrophysical constraint are used in conjunction with the FCM algorithm during the inversion,which improves the accuracy of inversion.The inversion is accelerated by the OpenAcc technology on GPU.The proposed method is validated using synthetic data,and the results show that the efficiency and accuracy of gravity inversion are greatly improved by using the proposed method.
文献关键词:
中图分类号:
作者姓名:
Sheng Liu;Shuanggen Jin;Qiang Chen
作者机构:
Xinjiang Astronomical Observatory,Chinese Academy of Sciences,Urumqi 830011,China;University of Chinese Academy of Sciences,Beijing 100049,China;Shanghai Astronomical Observatory,Chinese Academy of Sciences,Shanghai 200030,China;School of Remote Sensing and Geomatics Engineering,Nanjing University of Information Science and Technology,Nanjing 210044,China
文献出处:
引用格式:
[1]Sheng Liu;Shuanggen Jin;Qiang Chen-.Three-dimensional gravity inversion based on optimization processing from edge detection)[J].大地测量与地球动力学(英文版),2022(05):503-524
A类:
jagged,OpenAcc,parallelizing
B类:
Three,dimensional,gravity,inversion,optimization,processing,from,edge,detection,Gravity,requires,much,computation,results,often,first,problem,due,large,number,grid,cells,Edge,method,tilt,angle,analytical,signal,amplitude,TAS,helps,identify,boundaries,underground,geological,anomalies,different,depths,which,can,used,reduce,requirement,smooth,that,meshing,area,should,continuous,rather,than,In,this,paper,optimized,strategy,improved,region,obtained,by,changed,regular,facilitate,For,second,certain,constraints,accuracy,ASA,delineate,central,distribution,bodies,We,new,using,perform,local,uniqueness,guided,fuzzy,means,FCM,clustering,algorithm,combined,priori,petrophysical,information,also,technology,carried,out,speed,up,serial,program,GPU,general,weighting,conjunction,during,improves,accelerated,proposed,validated,synthetic,data,show,efficiency,greatly
AB值:
0.440856
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