首页> 外文期刊>Journal of Volcanology and Geothermal Research2012V243-244NOCT,15 >Seismic imaging in the Krafla high-temperature geothermal field, NE Iceland, using zero- and far-offset vertical seismic profiling (VSP) data
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Seismic imaging in the Krafla high-temperature geothermal field, NE Iceland, using zero- and far-offset vertical seismic profiling (VSP) data

机译:冰岛东北部克拉夫拉高温地热田的地震成像,使用零偏移和远偏移垂直地震剖面(VSP)数据

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Among geothermal exploration methods, active surface seismic methods have played only a minor role to date. Especially in high-temperature volcanic systems, reflection seismic data often reveal poor delineation of volcanic features, due to the internal heterogeneity of volcanic sequences. To enhance the vertical resolution, one possibility is the application of downhole seismic methods like vertical seismic profiling (VSP). A test experiment was carried out in the Krafla high-temperature geothermal field, NE-Iceland, to assess the ability of VSP to image subsurface structures, such as fractures, zones of high permeability, magmatic bodies, and zones of supercritical fluids and steam. Logging in such hostile environments is technical challenging in many aspects, but mainly due to the high temperature impact on the downhole electronic components of the measuring equipment. This requires a thorough pre-examination and implementation of the measurement, especially to avoid delays and tool failures. This paper presents results of zero- and far-offset VSP data from the K-18 borehole from within the Krafla caldera, which reveal good correlation with the surrounding lithology. The raw three-component seismic data display a good signal-to-noise ratio and dominant signal frequencies between 20 and 40 Hz, down to c. 2200 m depth, for air gun and explosive sources, respectively. A zero-offset source comparison was also conducted to assess the use of different impulsive sources for future VSP surveys in similar settings. By applying a standard VSP processing, we identified stratigraphic boundaries between lavas, hyalodastites, and intrusions, which are in good agreement with existing well data. For the zero-offset VSP, both P- and S-wave velocity models were calculated and a depth-converted corridor stack was determined. In addition, multicomponent Kirchhoff depth migration and Fresnel volume migration were tested around the borehole. The 3D results are promising, but the specific shape and lateral extent of the reflectors could not be determined due to the restriction to only two sources and the insufficient spatial coverage (aperture). Our study demonstrates that vertical seismic profiles can clearly detect variations in the subsurface volcanic stratigraphy in high-temperature geothermal fields. A more detailed reservoir characterization can be achieved by further data integration, enhanced survey design including more source positions, and improved processing and imaging techniques, such as full-waveform inversion. (C) 2018 Elsevier B.V. All rights reserved.
机译:迄今为止,在地热勘探方法中,主动地表地震方法仅起了很小的作用。尤其是在高温火山岩系统中,由于火山岩层的内部非均质性,反射地震数据通常显示出不良的火山岩特征描述。为了提高垂直分辨率,一种可能性是应用井下地震方法,例如垂直地震剖面(VSP)。在东北冰岛克拉夫拉高温地热田中进行了一项测试实验,以评估VSP对地下结构成像的能力,例如裂缝,高渗透率区域,岩浆体以及超临界流体和蒸汽区域。在这样的恶劣环境中进行测井在许多方面都是技术难题,但主要是由于高温对测量设备的井下电子组件的影响。这就要求对测量进行彻底的预检查和实施,尤其是要避免延迟和工具故障。本文介绍了克拉夫拉火山口内来自K-18钻孔的零偏移和远偏移VSP数据的结果,揭示了与周围岩性的良好相关性。原始的三分量地震数据显示出良好的信噪比,并且主信号频率在20至40 Hz之间,低至c。深度为2200 m,分别用于气枪和爆炸物。还进行了零偏移量源比较,以评估在类似环境下未来VSP调查中使用不同的脉冲源。通过应用标准的VSP处理,我们确定了熔岩,透明质岩和侵入岩之间的地层边界,这些边界与现有的油井数据非常吻合。对于零偏移VSP,计算了P波和S波速度模型,并确定了深度转换的走廊堆栈。此外,还对钻孔周围的多组分基尔霍夫深度迁移和菲涅耳体积迁移进行了测试。 3D结果令人鼓舞,但由于仅对两个光源的限制以及空间覆盖率(孔径)不足,无法确定反射器的具体形状和横向范围。我们的研究表明,垂直地震剖面可以清楚地检测出高温地热田中地下火山岩地层的变化。可以通过进一步的数据集成,增强的勘测设计(包括更多的震源位置)以及改进的处理和成像技术(例如全波形反演)来实现更详细的储层表征。 (C)2018 Elsevier B.V.保留所有权利。

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    ISOR Iceland GeoSurvey Grensasvegur 9 IS-108 Reykjavik Iceland|German Res Ctr Geosci GFZ Helmholtz Ctr Potsdam 6-4 Ctr Sci Drilling D-14473 Potsdam Germany;

    German Res Ctr Geosci GFZ Helmholtz Ctr Potsdam 6-4 Ctr Sci Drilling D-14473 Potsdam Germany;

    Forskningsparken VBPR N-0349 Oslo Norway|Univ Oslo CEED Oslo Norway;

    Forskningsparken VBPR N-0349 Oslo Norway|Univ Aberdeen Dept Geol & Petr Geol Aberdeen Scotland;

    ISOR Iceland GeoSurvey Grensasvegur 9 IS-108 Reykjavik Iceland;

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  • 正文语种 eng
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  • 关键词

    Vertical seismic profiling; High-temperature; Geothermal; Iceland; Krafla; IMAGE;

    机译:垂直地震剖面;高温;地热冰岛;克拉夫拉图片;

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