首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >3D seismic survey at the Millennium uranium deposit, Saskatchewan, Canada: Mapping depth to basement and imaging post-Athabasca structure near the orebody
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3D seismic survey at the Millennium uranium deposit, Saskatchewan, Canada: Mapping depth to basement and imaging post-Athabasca structure near the orebody

机译:加拿大萨斯喀彻温省千年铀矿床的3D地震勘测:绘制地下室的深度并成像矿体附近的Athabasca后构造

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摘要

Three-dimensional seismic reflection measurements have been used to assist mine planning at the Millennium uranium deposit, Canada. The deposit is located within the crystalline basement, separated from the overlying Athabasca Basin sediments by an unconformity potentially associated with significant fluid flow. The primary objective of the ~6.5 km ~2 survey was to image the unconformity and possible post-Athabasca deformation structures in and around the deposit. Clear unconformity reflections are observed within most of the survey area, although there are amplitude variations due to complex geology, including intense hydrothermal clay alteration around the deposit. Finite-difference modeling indicates that the wide-angle character of the unconformity reflections is due to a gradual velocity increase at the unconformity. The reflections are obscured by large time delays, due to Quaternary sediments covering the area, making refraction static corrections crucial. The seismic interpretation shows large variations in the unconformity depth (from approximately 430 to 650 m), indicating a pronounced basement depression that coincides with a gravity low. Reflections from the unconformity are vague within the depression, especially in the vicinity of the deposit. Although the orebody is not directly visible in the seismic image, there is a lack of reflectivity coincident with the alteration surrounding the mineralization. We also observed reflections which likely originate at the contact between the altered and fresh basement rock located beneath the deposit. The seismic data further indicate post-Athabasca faults in the vicinity of the orebody. Based on the initial seismic interpretation, the depth of the crown pillar was adjusted and the mine infrastructure moved away from areas interpreted to be affected by the intense hydrothermal alteration surrounding the deposit. The capability to image the unconformity, post-Athabasca structure, and hydrothermal alteration also highlights the potential use of seismic surveys in uranium exploration.
机译:三维地震反射测量已用于协助加拿大千年铀矿床的矿山规划。该沉积物位于结晶基底内,与上覆的阿萨巴斯卡盆地沉积物之间存在不整合,可能与大量流体流动有关。 〜6.5 km〜2勘测的主要目的是成像沉积物中和周围的不整合面和可能的阿萨巴斯卡后变形结构。尽管由于复杂的地质(包括矿床周围强烈的热液黏土变化)而导致振幅变化,但在大多数调查区域内都观察到了明显的不整合面反射。有限差分建模表明,不整合面反射的广角特征是由于不整合面处的速度逐渐增大所致。由于第四纪沉积物覆盖了该区域,因此由于较大的时间延迟而使反射模糊不清,因此折射静态校正至关重要。地震解释表明,不整合面深度变化很大(从大约430到650 m),表明明显的基底凹陷与重力低重合。凹陷内部,尤其是矿床附近,从不整合面引起的反射模糊不清。尽管在地震图像中不能直接看到矿体,但缺乏与矿化周围的变化同时发生的反射率。我们还观察到了反射,这些反射可能起源于位于沉积物下方的蚀变和新鲜的地下岩石之间的接触。地震数据还指示了矿体附近的阿萨巴斯卡后期断裂。根据最初的地震解释,调整了冠顶柱的深度,并且将矿山基础设施从据认为受沉积物周围强烈的热液蚀变影响的区域移开。对不整合面,Athabasca后构造和热液蚀变进行成像的能力也凸显了地震勘探在铀勘探中的潜在用途。

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