{"title":"Multiple and Coherent Noise Removal from X-Profile 2D Seismic Data of Southern Iraq Using Normal Move Out-Frequency Wavenumber Technique","authors":"Ahmed Al-Rahim, Lamees Abdulkareem","doi":"10.46717/igj.56.2e.24ms-2023-11-29","DOIUrl":null,"url":null,"abstract":"Multiple eliminations (de-multiple) are one of seismic processing steps to remove their effects and delineate the correct primary refractors. Using normal move out to flatten primaries is the way to eliminate multiples through transforming these data to frequency-wavenumber domain. The flatten primaries are aligned with zero axis of the frequency-wavenumber domain and any other reflection types (multiples and random noise) are distributed elsewhere. Dip-filter is applied to pass the aligned data and reject others will separate primaries from multiple after transforming the data back from frequency-wavenumber domain to time-distance domain. For that, a suggested name for this technique as normal move out- frequency-wavenumber domain method for multiple eliminations. The method is tested on a fake reflection event to authorize their validity, and applied to a real field X-profile 2D seismic data from southern Iraq. The results ensure the possibility of internal multiple types existing in the deep reflection data in Iraq and have to remove. So that the interpretation for the true reflectors be valid. The final processed stacked seismic data using normal move out- frequency-wavenumber domain technique shows good, clear, and sharp reflectors in comparison with the conventional normal move out stack data. Open-source Madagascar reproducible package is used for processing all steps of this study and the package is very efficient, accurate, and easy to implement normal move out, frequency-wavenumber domain, Dip-filter programs. The aim of the current study is to separate internal multiples and noise from the real 2D seismic data.","PeriodicalId":14847,"journal":{"name":"Iraqi Geological Journal","volume":"660 ","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2023-11-30","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Iraqi Geological Journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.46717/igj.56.2e.24ms-2023-11-29","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"Earth and Planetary Sciences","Score":null,"Total":0}
引用次数: 0
Abstract
Multiple eliminations (de-multiple) are one of seismic processing steps to remove their effects and delineate the correct primary refractors. Using normal move out to flatten primaries is the way to eliminate multiples through transforming these data to frequency-wavenumber domain. The flatten primaries are aligned with zero axis of the frequency-wavenumber domain and any other reflection types (multiples and random noise) are distributed elsewhere. Dip-filter is applied to pass the aligned data and reject others will separate primaries from multiple after transforming the data back from frequency-wavenumber domain to time-distance domain. For that, a suggested name for this technique as normal move out- frequency-wavenumber domain method for multiple eliminations. The method is tested on a fake reflection event to authorize their validity, and applied to a real field X-profile 2D seismic data from southern Iraq. The results ensure the possibility of internal multiple types existing in the deep reflection data in Iraq and have to remove. So that the interpretation for the true reflectors be valid. The final processed stacked seismic data using normal move out- frequency-wavenumber domain technique shows good, clear, and sharp reflectors in comparison with the conventional normal move out stack data. Open-source Madagascar reproducible package is used for processing all steps of this study and the package is very efficient, accurate, and easy to implement normal move out, frequency-wavenumber domain, Dip-filter programs. The aim of the current study is to separate internal multiples and noise from the real 2D seismic data.
多重消除(de-multiple)是地震处理步骤之一,目的是消除多重影响,划定正确的原初折射。通过将这些数据转换到频率-波数域,使用法线移出平移初至是消除多重的方法。压平后的原边与频率-波数域的零轴对齐,而其他任何反射类型(多重和随机噪声)则分布在其他地方。在将数据从频率-波数域转换回时间-距离域之后,应用浸透滤波器通过对齐的数据,并剔除其他数据,从而将基波和多波分离开。因此,建议将这种技术命名为正常移出--频率-波数域多重消除方法。该方法在假反射事件上进行了测试,以验证其有效性,并应用于伊拉克南部的真实野外 X 剖面二维地震数据。结果证明,伊拉克深层反射数据中可能存在内部多重类型,必须予以消除。因此,对真实反射体的解释是有效的。与传统的正常移出叠加数据相比,使用正常移出-频率-波数域技术处理的最终叠加地震数据显示出良好、清晰和锐利的反射体。本研究的所有步骤都使用了开放源码的马达加斯加可重现软件包进行处理,该软件包非常高效、准确,且易于实施正则移出、频率-文波数域、Dip-滤波程序。当前研究的目的是从真实的二维地震数据中分离出内部倍频和噪声。