排序方式: 共有27条查询结果,搜索用时 25 毫秒
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针对三维地震数据插值,提出采用Laplacian算子进行光滑约束的插值方法,并借鉴Mallet研究的离散光滑插值思路,采用预条件共轭梯度法,直接生成网格节点上的值,从而回避寻求满足插值方程的函数. 为了实现其中Laplacian算子的快速求逆,文中引入Claerbout螺旋坐标系谱因式分解理论. 在螺旋坐标系下,Laplacian算子的表示矩阵具有Toeplitz结构,其快速求逆可由谱法LU分解实现. 基于二维离散光滑插值,文中还给出共轭梯度法与NMO相结合的沿时间切片逐层处理的离散光滑插值流程. 最后,应用该方法对模型数据和实际三维地震数据进行了处理. 相似文献
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多次波干扰是地震勘探中最重要的问题之一,其衰减技术也是地震数据处理的难题之一。本文主要介绍了多次波的形成、分类及其特征,并在ProMax系统上对合成地震记录的多次波进行了压制:首先采用合适的速度对时-空域的地震记录进行NMO校正;然后,分别用F-K变换和Radon变换方法将其变换到F-K域和Radon域,对多次波所占据的主要区域进行充零衰减;最后,通过对应的反变换将其变换到时-空域,从而达到多次波衰减的目的。通过在ProMax系统中的应用表明:不同方法对多次波的衰减效果各有优劣,组合滤波方法能达到更好的效果。 相似文献
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采用启发式共轭梯度法,即随机爬山法 + 共轭梯度法,利用单斜介质中P波方位NMO速度椭圆轴向偏转角度接近于零这一特性,简化P波方位NMO速度公式,并利用多方位P波NMO速度,反演出某一初始CMP观测线与自然坐标系之间的夹角,作为进一步进行Thomsen各向异性参数反演的基础. 根据各向异性介质中方位NMO速度与Thomsen参数之间的关系,建立了利用三种波的多方位NMO速度及垂直传播速度反演单层单斜各向异性介质Thomsen各向异性参数的目标函数. 对计算的理论值添加具有一定标准差的正态分布的随机噪声,用以模拟实际观测存在的误差,通过对加噪后的数据进行多次反演的误差分析,表明了所建立的目标函数及选用的反演方法是有效可行的,而且相对稳定. 相似文献
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Zhang Liyan Liu Yang 《应用地球物理》2006,3(1):18-26
Pseudo-offset migration (POM) is a new method for prestack time migration of converted waves that improves on equivalent-offset migration (EOM). The mapping of POM is different than EOM but the purpose of the two methods is to map the input samples to the common conversion scatter point (CCSP) gathers. This paper introduces the principles of the two migration methods and model parameter sensitivity tests for both POM and EOM. At large offset-to-depth ratios the hyperbolic approximation, the three-term approximation and the double square root (DSR) equation are used to NMO-correct the mapped POM gathers to obtain more accurate migration velocities. These equations were derived and calculated by small pseudo offset. POM is then used to image complex structure and prestack time migration. 相似文献
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随着南黄海海相碳酸盐岩油气地震调查的展开,提高海相碳酸盐岩目标层低信噪比地震资料的成像品质,已成为地震处理工作的主要任务。在充分分析了地震地质条件和原始资料特征的基础上,总结了成像处理存在的主要问题,探索了针对性处理技术流程并进行了攻关试验工作,建立了以叠前综合多域噪声压制、多次波联合衰减、大偏移距各向异性动校正、各向异性叠前时间偏移等关键技术方法组成的处理流程。资料处理结果表明,地震剖面的成像精度显著提高,各种地质现象反射特征突出,有效地提高资料解释的准确性。 相似文献
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Seismic attenuation,normal moveout stretch,and low‐frequency shadows underlying bottom simulating reflector events 下载免费PDF全文
José M. Carcione Ayman N. Qadrouh Hervé Perroud Davide Gei Jing Ba Stefano Picotti 《Geophysical Prospecting》2018,66(5):857-871
In many cases, the seismic response of bottom‐simulating reflectors is characterised by low frequencies called “low‐frequency shadow”. Generally, this phenomenon is interpreted as attenuation due to partial saturation with free gas. Actually, this frequency loss may have multiple causes, with a normal moveout stretch as a possible candidate. To analyse this phenomenon, we compute synthetic seismograms by assuming a lossy bottom‐simulating layer, with varying quality factor and thickness, bounded by the upper hydrate‐brine/gas‐brine and lower gas‐brine/brine interfaces. First, we estimate the shift of the centroid frequency of the power spectrum as a function of the travelled distance of the seismic pulse. Then, we perform one‐dimensional numerical experiments to quantify the loss of frequency of the seismic event below the bottom‐simulating reflector as a function of the quality factor of the bottom‐simulating layer and its thickness (due to wave interference). Then, we compute shot gathers to obtain the stacked section, with and without the normal moveout stretch correction and with and without the presence of wave attenuation in the bottom‐simulating layer. The results indicate that the low‐frequency shadow due to the normal moveout stretch is stronger than that due to attenuation and may constitute a false indicator of the presence of gas. In fact, often, the low‐frequency shadow overlies events with higher frequencies, in contradiction with the physics of wave propagation. This is particularly evident when the low‐frequency shadow is so extensive that the presence of high frequencies below cannot be justified by the acquisition geometry. 相似文献
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多次波的存在会降低地震资料的信噪比,影响地震资料处理效果和后续的地质解释精度,压制多次波干扰是地震资料处理中的一个重要环节。利用有限差分方法正演模拟几个典型地质模型的地震波场,之后进行动校正,再通过抛物线Radon变换方法把t-x域一次反射波和多次波变换到τ-q域,由于存在速度的差异,Radon域记录中的一次反射波和多次波的能量互相分开,在Radon域对多次波的能量切除,保留反射波的有效信息,达到压制多次波的效果,提高资料的信噪比。通过对实际地震数据进行抛物线Radon变换结果也进一步验证了该方法在压制多次波中的应用效果。 相似文献