يعرض 1 - 20 نتائج من 40 نتيجة بحث عن '"Meng, Fanchang"', وقت الاستعلام: 0.54s تنقيح النتائج
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    Conference

    المساهمون: Yang, Yue

    المصدر: Fourteenth International Conference on Information Optics and Photonics (CIOP 2023)

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    Academic Journal

    المصدر: Earth Sciences Research Journal; Vol. 22 No. 4 (2018); 327-334 ; Earth Sciences Research Journal; Vol. 22 Núm. 4 (2018); 327-334 ; 2339-3459 ; 1794-6190

    وصف الملف: application/pdf

    Relation: https://revistas.unal.edu.co/index.php/esrj/article/view/77362/pdf; Alkhalifah, T., & Fomel, S. (2001). Implementing the fast marching eikonal solver: spherical versus Cartesian coordinates. Geophysical Prospecting, 49(2), 165-178.; Asakawa, E., & Kawanaka, T. (1993). Seismic ray tracing using linear traveltime interpolation. Geophysical prospecting, 1993, 41(1): 99-111.; Bai, C., Greenhalgh, S., & Zhou, B. (2007). 3D ray tracing using a modified shortest-path method. Geophysics, 72(4), T27-T36.; Bai, C., Li, X., Tang, X (2011). Seismic wavefront evolution of multiply reflected, transmitted, and converted phases in 2D/3D triangular cell model. Journal of Seismology, 15(4), 637.; Cardarelli, E., & Cerreto, A. (2002). Ray tracing in elliptical anisotropic media using the linear traveltime interpolation (LTI) method applied to traveltime seismic tomography. Geophysical Prospecting, 50(1), 55-72.; Chambers, K., & Kendall, J. M. (2008). A practical implementation of wave front construction for 3-D isotropic media. Geophysical Journal International, 173(3), 1030-1038.; Coman, R., & Gajewski, D. (2005). Traveltime computation by wavefront‐orientated ray tracing. Geophysical Prospecting, 53(1), 23-36.; Han, F., Sun, J., & Sun, Z. (2009). Positioning of grid points in wave front construction. Applied Geophysics, 6(3), 248.; Hauser, J., Sambridge, M., & Rawlinson, N. (2008). Multiarrival wavefront tracking and its applications. Geochemistry, Geophysics, Geosystems, 2008, 9(11).; Huang, X. & Greenhalgh, S. (2018). Linearized formulations and approximate solutions for the complex eikonal equation in orthorhombic media and applications of complex seismic traveltime. Geophysics, 83(3), C115-C136.; Huang, X., & Sun, H. (2018). Numerical modeling of Gaussian beam propagation and diffraction in inhomogeneous media based on the complex eikonal equation. Acta Geophysica. DOI:10.1007/s11600-018-0154-x.; Huang, X., Sun, J., & Sun, Z. (2016). Local algorithm for computing complex travel time based on the complex eikonal equation. Physical Review E, 93(4), 043307.; Julian, B. R. (1977). Three-dimensional seismic ray tracing. Journal of Geophysics, 43, 95-113.; Lan, H., & Chen, L. (2018). An upwind fast sweeping scheme for calculating seismic wave first‐arrival travel times for models with an irregular free surface. Geophysical Prospecting, 66(2), 327-341.; Liang, S., Liang, X., & Yang, X. (2016). Development of seismic exploration technologies and its significance for the discovery of gas field clusters in the buried anticlines, Kuqa Foreland Basin. China Petroleum Exploration, 21(6), 98-109.; Liu, S., Wang, H., & Yang, Q. (2014). Traveltime computation and imaging from rugged topography in 3D TTI media. Journal of Geophysics and Engineering, 11(1), 015003.; Ma, T., & Zhang, Z. (2014). Calculating Ray Paths for First‐Arrival Travel Times Using a Topography‐Dependent Eikonal Equation Solver. Bulletin of the Seismological Society of America, 104(3), 1501-1517.; Moser, T. J. (1991). Shortest path calculation of seismic rays. Geophysics, 56(1), 59-67.; Nie, J., & Yang, H. (2003). Quadratic/linear travel time interpolation of seismic ray-tracing. Journal of Tsinghua University, 43(11), 1495-1498.; Rawlinson, N., & Sambridge, M. (2004). Wave front evolution in strongly heterogeneous layered media using the fast marching method. Geophysical Journal International, 156(3), 631-647.; Sethian, J. A. (1996). A fast marching level set method for monotonically advancing fronts. Proceedings of the National Academy of Sciences, 93(4), 1591-1595.; Sethian, J. A., & Popovici, M. A. (1999). Three dimensional traveltimes computation using the Fast Marching Method. Geophysics, 64(2), 516-523.; Sun, Y., & Fomel, S. (1998). Fast-marching eikonal solver in the tetragonal coordinates. Stanford Exploration Project Report, 97, 241-250.; Sun, Z. Q., Sun, J. G., & Han, F. X. (2009). Traveltimes computation using linear interpolation and narrow band technique under complex topographical conditions. Chinese Journal of Geophysics, 52(11), 2846-2853.; Sun, Z., Sun, J., & Han, F. (2010). Traveltime Computation Using Fast Marching Method Under Complex Topographical Conditions. Chinese Journal of Computational Physics, 27(2), 281-286.; Sun, J., Sun, Z., & Han, F. (2011). A finite difference scheme for solving the eikonal equation including surface topography. Geophysics, 76(4), T53-T63.; Sun, Z., Sun, J. & Han, F. (2012). Traveltime computation using the upwind finite difference method with nonumiform grid spacing in a 3D undulating surface condition. Chinese Journal of Geophysics, 55(7), 2441-2449.; Sun, H., Sun, J., & Han, F. (2016). Research into the effects of seawater velocity variation on migration imaging in deep-water geology. Earth Sciences Research Journal, 20(3), H1-H7.; Sun, Z., Sun, J., & Yue, Y. (2016). Ray tracing using GMM-ULTI method in the random media with complexity topography. Chinese Journal of Geophysics, 59(7), 2615-2627.; Sun, H., Sun, J. G., & Han, F. X. (2017). Synthetic analysis of model smoothing’s influence on ray path, traveltime and migration imaging. Applied ecology and environmental research, 2017, 15(3), 443-452.; Sun, Z., Sun, J., & Wang, X. (2017). Computation of multiple seismic traveltime in mountainous areas with complex 3D conditions using the multistage group marching upwind hybrid method. Chinese Journal of Geophysics, 60(5), 1861-1873.; Sun, H., Zhang, Z., & Hu, G. (2018). Kirchhoff Beam Migration Based on Compressive Sensing. IEEE Access, 6(1), 26520-26529.; Sussman, M., Smereka, P., & Osher, S. (1994). A level set approach for computing solutions to incompressible two-phase flow. Journal of Computational physics, 114(1), 146-159.; Vidale, J. (1988). Finite-difference calculation of travel times. Bulletin of the Seismological Society of America, 78(6), 2062-2076.; Vinje, V., Iversen, E., & Gjøystdal, H. (1993). Traveltime and amplitude estimation using wavefront construction. Geophysics, 58(8), 1157-1166.; Vinje, V. (1997). A new interpolation criterion for controlling accuracy in wavefront construction. 1997 SEG Annual Meeting. Society of Exploration Geophysicists.; Wang, X., Bradley, K. E, & Wei, S. (2018). Active backstop faults in the Mentawai region of Sumatra, Indonesia, revealed by teleseismic broadband waveform modeling. Earth and Planetary Science Letters, 483, 29-38.; Wang, X., Chen, Q. F., & Li, J. (2016). Seismic Sensor Misorientation Measurement Using P‐Wave Particle Motion: An Application to the NECsaids Array. Seismological Research Letters, 87(4), 901-911.; Wang, X., Li, J., & Chen, Q. F. (2017). Topography of the 410 km and 660 km discontinuities beneath the Japan Sea and adjacent regions by analysis of multiple‐ScS waves. Journal of Geophysical Research: Solid Earth, 122(2), 1264-1283.; Wang, X., Wei, S., & Wu, W. (2017). Double-ramp on the Main Himalayan Thrust revealed by broadband waveform modeling of the 2015 Gorkha earthquake sequence. Earth and Planetary Science Letters, 473, 83-93.; Yang, J., & Zhu, H. (2017). A practical data-driven optimization strategy for Gaussian beam migration. Geophysics, 83(1), S81-S92.; Yang, J., Zhu, H., McMechan, G. & Yue, Y. (2018). Time-domain least-squares migration using the Gaussian beam summation method. Geophysical Journal International, 214(1), 548-572. DOI: https://doi.org/10.1093/gji/ggy142; https://revistas.unal.edu.co/index.php/esrj/article/view/77362

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    Conference

    المساهمون: Liu, Dong, Luo, Xiangang, Jiang, Yadong, Lu, Jin

    المصدر: AOPC 2020: Optical Sensing and Imaging Technology

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    Academic Journal

    المساهمون: Chinese Academy of Sciences, Ministry of Science and Technology of the People's Republic of China, National Key Research and Development Program of China

    المصدر: Tectonophysics ; volume 818, page 229067 ; ISSN 0040-1951

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    Conference
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    Conference

    المساهمون: Gong, HaiMei, Greivenkamp, John E., Tanida, Jun, Jiang, Yadong, Lu, Jin, Liu, Dong

    المصدر: AOPC 2019: Optical Sensing and Imaging Technology

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    Academic Journal

    المساهمون: National Natural Science Foundation of China, Primary Research & Development Plan of Jiangsu Province, Joint Research Fund for Overseas Chinese, Hong Kong and Macao Young Scholars, Six talent peaks project in Jiangsu Province

    المصدر: Robotics and Autonomous Systems ; volume 128, page 103501 ; ISSN 0921-8890

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    Conference

    المصدر: Proceedings of SPIE; 6/21/2024, Vol. 12935, p1293536-1293536, 1p

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    Periodical

    المصدر: Proceedings of SPIE; October 2024, Vol. 13271 Issue: 1 p1327109-1327109-8

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