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首页> 外文期刊>Journal of Hydrology >Borehole cylindrical noise during hole-surface and hole-hole resistivity measurements
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Borehole cylindrical noise during hole-surface and hole-hole resistivity measurements

机译:测量孔表面和孔电阻率时的钻孔圆柱噪声

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Drilled boreholes generally are the only feasible means to access the subsurface for the emplacement of downhole electrodes for most hole-hole and hole-surface resistivity experiments. However, the very existence of the borehole itself creates the potential for significant noise due to the inevitable conductivity contrast that develops between the borehole walls and the formation. Borehole cylindrical noise develops whenever a Current source is placed in a drilled borehole. Borehole geometries may range from nearly perfect cylinders to highly, irregular, rugose holes in consolidated rock, to relatively minor, collapsed, disturbed zones in caving sediments. Boreholes in non-caving formations generally are filled with artificial, conductive materials to afford crucial, electrical continuity between downhole electrodes and the borehole walls. Filled boreholes form cylindrically shaped heterogeneities that create significant noise due to preferential current flow up and down the conductive columns. Selected conditions are simulated with a finite difference model to illustrate the significance of borehole cylindrical noise on hole-hole and hole-surface mise-a-la-masse electrical potentials near a current electrode. Mise-a-la-masse electrical potentials measured during a field tracer experiment also are presented. These measurements are used to illustrate significant errors may develop in the interpretation of apparent resistivity estimates out to a distance of several meters from the current source if borehole cylindrical noise is not recopized and accounted for in the analysis of electrical potential data. (C) 2003 Elsevier B.V. All rights reserved. [References: 31]
机译:通常,对于大多数孔-孔和孔-表面电阻率实验,钻孔是进入地下以放置井下电极的唯一可行方法。然而,由于在井壁和地层之间不可避免的电导率差异,井眼本身的存在会产生很大的噪声。每当将电流源放置在钻孔中时,都会产生钻孔圆柱形噪音。钻孔的几何形状范围从接近完美的圆柱体到固结岩石中高度不规则的皱纹孔,再到崩落沉积物中相对较小,塌陷,受干扰的区域。非塌陷地层中的钻孔通常填充有人造导电材料,以在井下电极和钻孔壁之间提供至关重要的电连续性。充满的钻孔形成圆柱形异质性,由于优先电流在导电柱上上下流动,这些异质性会产生明显的噪声。使用有限差分模型对所选条件进行了仿真,以说明井筒圆柱形噪声对电流电极附近的孔和孔表面mise-a-la-mass电势的重要性。还介绍了在示踪剂实验期间测得的Mise-a-la-masse电势。这些测量值用于说明如果未对井筒圆柱噪声进行补偿并在电势数据分析中加以考虑,则在视电阻率估算值的解释中可能会在距电流源几米的距离处产生重大误差。 (C)2003 Elsevier B.V.保留所有权利。 [参考:31]

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