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Hydrogeological and geotechnical rock property characterization from geophysics

机译:地球物理学中的水文地质和岩土岩石特性描述

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摘要

Boreholes drilled at Sellafield penetrated a variety of rock units. Core samples and wireline logs indicate that rock mass properties and in situ fluid properties vary from one unit to another, but that properties are relatively uniform for each unit within a particular borehole. Variability is superimposed upon the bulk rock mass properties, however, where faults or zones of fractured rock intersect a borehole. Furthermore, lateral variability within a particular unit may be expected between boreholes and throughout the rock volume.ududThe primary objectives of the work were: to establish a means of determining the spatial heterogeneity and distribution of rock mass and fluid properties using measurements made on core samples and derived from wireline logs; to determine the spatial heterogeneity and distribution of rock mass properties away from boreholes and in three-dimensions, by extrapolating the detailed understanding gained from boreholes into the seismic survey volume; and to develop a visualization model of rock mass properties in three-dimensions.ududIt has been demonstrated that acoustic impedance is the principal property in common between surface seismic and borehole measurements, and that it provides a link between the various scales of measurement. Dynamic rock quality and hydrogeological indices have been developed which allow qualitative comparisons to be made between the boreholes. Empirical relationships have also been established between acoustic impedance and rock quality, and between acoustic impedance and hydrogeological properties. These relationships enable continuous profile quantitative estimations of Rock Mass Rating and hydraulic conductivity to be made from wireline logs, and have allowed these properties to be extrapolated into the seismic acoustic impedance volume, thereby providing three-dimensional visualizations of the spatial heterogeneity of rock mass properties.
机译:在塞拉菲尔德(Sellafield)钻的钻孔穿透了各种岩石单元。岩心样本和电缆测井表明,岩体特性和原位流体特性在一个单元之间会有所不同,但是对于特定井眼中的每个单元而言,这些属性相对均匀。可变性叠加在块岩质量特性上,但是,在这些区域中,裂隙岩石的断层或区域与井眼相交。此外,在钻孔之间以及整个岩石体积中,在特定单元内的横向变化可能是预期的。 ud ud工作的主要目标是:建立一种通过使用测量来确定岩石质量和流体性质的空间异质性和分布的方法取自电缆测井的核心样品;通过将从钻孔获得的详细信息外推到地震勘测体积中,来确定远离钻孔和三维的岩体特性的空间异质性和分布;并开发了三维质量的可视化模型。 ud ud已证明,声阻抗是表面地震和钻孔测量之间共同的主要属性,并且它提供了各种测量尺度之间的联系。已经开发了动态岩石质量和水文地质指标,可以在钻孔之间进行定性比较。还建立了声阻抗与岩石质量之间以及声阻抗与水文地质性质之间的经验关系。这些关系使得能够通过电缆测井对岩体额定值和水力传导率进行连续剖面定量估计,并允许将这些特性外推到地震声阻抗体中,从而提供岩体特性空间异质性的三维可视化。

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