Study on the Improved Method for Calculating Traveltime and Raypath of Multistage Fast Marching Method

被引:0
|
作者
Wu, Qiong [1 ,2 ]
Mi, Hong-Ze [1 ,2 ]
Li, Yong-Bo [1 ,2 ]
Li, Yan-Gui [1 ,2 ]
机构
[1] Chinese Acad Geol Sci CAGS, Inst Geophys & Geochem Explorat, Langfang 065000, Peoples R China
[2] Minist Nat Resources MNR, Key Lab Geophys Electromagnet Probing Technol, Langfang 065000, Peoples R China
关键词
fast marching method; finite-difference; linear interpolation; multistage approach; ray tracing; FINITE-DIFFERENCE CALCULATION; LEVEL SET METHOD; EIKONAL EQUATION; COMPUTATION;
D O I
10.3390/min12121624
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The traditional Fast Marching Method (FMM) based on the finite-difference scheme can solve the traveltime of first arrivals; however, the accuracy and efficiency of FMM are usually affected by the finite-difference schemes and grid size. The Vidale finite-difference scheme and double-grid technology are adopted to replace the traditional first-order and second-order finite-difference schemes in this paper to improve the computation accuracy and efficiency. The traditional FMM does not provide the corresponding raypath calculation methods, and in view of the interoperability of FMM and the linear travel time interpolation (LTI) method, we introduce the linear interpolation method into FMM ray tracing to compute the raypath and take into consideration the secondary source located inside the grid cell to improve the accuracy and stability of the raypath calculation. With these measures and the application of the multistage approach, we successfully completed the improved Multistage FMM (MFMM) ray tracing, which can track first arrivals and any type of primary and multiple reflection waves. Through the theoretical and actual field model tests, the computation accuracy and efficiency of the improved MFMM are proven to be higher than that under traditional first-order and second-order finite-difference schemes, the correctness and effectiveness of the interpolation method for raypath calculation are verified, and the improved MFMM has demonstrated good adaptability and stability for complex models. The improvements for the MFMM in this paper are successfully applied in two-dimensional cases and need to be extended to three-dimensional situations.
引用
收藏
页数:16
相关论文
共 50 条
  • [31] Comparative Evaluation of the Fast Marching Method and the Fast Evacuation Method for Heterogeneous Media
    Galan, Severino F.
    APPLIED ARTIFICIAL INTELLIGENCE, 2021, 35 (13) : 1056 - 1080
  • [32] Novel permeability upscaling method using Fast Marching Method
    Sharifi, Mohammad
    Kelkar, Mohan
    FUEL, 2014, 117 : 568 - 578
  • [33] Rapid multistage hydraulic fracture design and optimization in unconventional reservoirs using a novel Fast Marching Method
    Yang, Changdong
    Vyas, Aditya
    Datta-Gupta, Akhil
    Ley, Shreya B.
    Biswas, Partha
    JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2017, 156 : 91 - 101
  • [34] Curve matching using the fast Marching Method
    Frenkel, M
    Basri, R
    ENERGY MINIMIZATION METHODS IN COMPUTER VISION AND PATTERN RECOGNITION, PROCEEDINGS, 2003, 2683 : 35 - 51
  • [35] Redundancy in all pairs fast marching method
    Bertelli, Luca
    Sumengen, Baris
    Manjunath, B. S.
    2006 IEEE INTERNATIONAL CONFERENCE ON IMAGE PROCESSING, ICIP 2006, PROCEEDINGS, 2006, : 3033 - +
  • [36] A GENERALIZED FAST MARCHING METHOD FOR DISLOCATION DYNAMICS
    Carlini, Elisabetta
    Forcadel, Nicolas
    Monneau, Regis
    SIAM JOURNAL ON NUMERICAL ANALYSIS, 2011, 49 (06) : 2470 - 2500
  • [37] Computation of multiple seismic traveltime in mountainous areas with complex 3D conditions using the multistage group marching upwind hybrid method
    Sun Zhang-Qing
    Sun Jian-Guo
    Wang Xue-Qiu
    Gao Zheng-Hui
    Jiang Zhao-Nan
    CHINESE JOURNAL OF GEOPHYSICS-CHINESE EDITION, 2017, 60 (05): : 1861 - 1873
  • [38] Application of Fibonacci heap to fast marching method
    Meng, Fanchang
    Liu, Mingchen
    Zhang, Ping
    Yang, Junjie
    Li, Meng
    Dong, Jiguo
    OPEN PHYSICS, 2021, 19 (01): : 281 - 284
  • [39] Application of topography fast marching method in landslide
    YANG Junjie
    SUN Hui
    WEI Chengwu
    JIANG Zhenghong
    LI Meng
    GlobalGeology, 2021, 24 (03) : 160 - 168
  • [40] COMPARISON PRINCIPLE FOR A GENERALIZED FAST MARCHING METHOD
    Forcadel, Nicolas
    SIAM JOURNAL ON NUMERICAL ANALYSIS, 2009, 47 (03) : 1923 - 1951