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瑞利波勘探中“之”形频散曲线的形成机理及反演研究
引用本文:张碧星,肖柏勋,杨文杰,曹思远,牟永光.瑞利波勘探中“之”形频散曲线的形成机理及反演研究[J].地球物理学报,2000,43(4):557-567.
作者姓名:张碧星  肖柏勋  杨文杰  曹思远  牟永光
作者单位:1. 中国科学院声学研究所,北京100080; 2. 长江水利委员会长江工程地球物理勘测研究院,武汉430010; 3. 北京印刷学院图像中心,北京102600; 4. 石油大学地球科学系,北京102200
基金项目:国家自然科学基金,19804019,
摘    要:对瑞利波勘探中“之”字形频散曲线形成的物理机理进行了理论分析,研究了诸波模的传播特性及相互关系.指出在地表下存在具有水平界面的软弱夹层和地层裂缝时,瑞利波频散曲线中的“之”字形结构是低速夹层或地层裂缝中出现多模现象的结果.利用阻尼最小二乘法和遗传算法对瑞利波频散曲线反演介质参数进行了研究和分析,发现最小二乘法不适合瑞利波“之”字形反演问题研究,而用遗传算法得到了较好的结果.

关 键 词:瑞利波  层状半空间  导波  低速软弱夹层和地层裂缝  
收稿时间:1999-08-09

MECHANISM OF ZIGZAG DISPERSION CURVES IN RAYLEIGH EXPLORATION AND ITS INVERSION STUDY
ZHANG BI-XING,XIAO BO-XUN,YANG WEN-JIE,CAO SI-YUAN,MOU YONG-GUANG.MECHANISM OF ZIGZAG DISPERSION CURVES IN RAYLEIGH EXPLORATION AND ITS INVERSION STUDY[J].Chinese Journal of Geophysics,2000,43(4):557-567.
Authors:ZHANG BI-XING  XIAO BO-XUN  YANG WEN-JIE  CAO SI-YUAN  MOU YONG-GUANG
Institution:1. Institute of Acoustics, Chinese Academy of Sciences, Beijing 100080, China; 2. Changjiang Engineering Geophysical Prospecting Instiute, Changjiang Water Resource Commillee, Wuhan 430010,China; 3. imaging Centre,Beijing Instlture of Printing,Beijing 102600,China; 4. Deparment of Geoscience, Petroleum University,Beijing 102200,China
Abstract:The mechanism of zigzag dispersion curves in the Rayleigh wave exploration is theoretically analyzed. The propagation characteristics and interrelation of the guided waves are studied thoroughly. It is presented that the zigzag stature of Rayleigh wave dispersion curves is the result of many modes generated by the low-velocity layers or fractures in multilayered. The inverse problems are also investigated on the formation structure with the dispersion curves of the Rayleigh wave by the damping method of least squares and the genetic algorithm. It is found that the damping method of least squares is not suitable to the inversion of zigzag dispersion problem of Rayleigh wave, while the genetic algorithm is a good method for this problem.
Keywords:Rayleigh wave  Stratified half-space  Guided wave  Low-velocity layer and fractures  
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