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A crosswell seismic experiment for nickel sulphide exploration

机译:硫化镍勘探的井间地震实验

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A crosshole seismic tomography experiment was conducted in the Kambalda nickel district to image the space between two dipping exploration boreholes separated by 80 m. A downhole electromagnetic (EM) survey had disclosed a conductor (possible mineralisation) between the holes. Excellent data quality was obtained from explosive sources at 2-m increments and recorded on a hydrophone array at 2-m spacing. Over 3200 travel times were converted into a velocity tomogram. A velocity low was found to coincide with the EM anomaly. Laboratory measurements on rock and core from Kambalda suggested that the velocity low was massive nickel sulphide. A subsequent drillhole was targeted on the seismic and EM anomaly. Unfortunately, no mineralisation was found. However, the sonic log of the hole gave an almost identical velocity profile to that extracted from the tomogram, and an inductive log run in the hole revealed a high conductivity. The cause of the velocity and conductivity anomaly was found to be due to chemical alteration within the host ultramafics. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 26]
机译:在坎巴尔达镍矿区进行了井间地震层析成像实验,以成像两个相距80 m的浸入式勘探井眼之间的空间。井下电磁(EM)调查已揭示了孔之间的导体(可能矿化)。从爆炸源以2米的增量获得了出色的数据质量,并以2米的间隔记录在水听器阵列上。超过3200个行程时间被转换为速度断层图像。发现低速与EM异常一致。实验室对Kambalda的岩石和岩心进行的测量表明,低速运动是块状硫化镍。随后的钻孔针对地震和电磁异常。不幸的是,没有发现矿化。但是,孔的声波测井显示出与断层图所提取的速度曲线几乎相同的速度曲线,并且在孔中运行的感应测井曲线显示出高电导率。发现速度和电导率异常的原因是由于宿主超基体内部的化学变化。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:26]

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