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首页> 外文期刊>Journal of Geological Research >Effectiveness of Geoelectrical Resistivity Surveys for the Detection of a Debris Flow Causative Water Conducting Zone at KM 9, Gap-Fraser’s Hill Road (FT 148), Fraser’s Hill, Pahang, Malaysia
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Effectiveness of Geoelectrical Resistivity Surveys for the Detection of a Debris Flow Causative Water Conducting Zone at KM 9, Gap-Fraser’s Hill Road (FT 148), Fraser’s Hill, Pahang, Malaysia

机译:地电阻率调查对发现马来西亚彭亨弗雷泽山(Gap-Fraser's Hill Road,FT 148)KM 9处的泥石流致水带的有效性

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摘要

This study reports the findings of resistivity surveys which were conducted at the initiation area of debris flow at KM 9, Fraser’s Hill Gap road (FT148). The study involves three slope parallel survey lines and two lines perpendicular to the slope face. The parallel lines are FH01, FH02, and FH03, while the lines FH04 and FH05 are perpendicular. A granite body was detected at the central part of the east line and is nearest to the ground surface along FH02. The existence of low resistivity zones within the granite body is interpreted as highly fractured, water conducting zones. These zones are continuous as they have been detected in both the east-west as well as the north-south lines. The residual soil layer is relatively thin at zones where weathered granite dominates the slope face of the failure mass. The weak layer is relatively thick with an estimated thickness of 80 m and water flow occurs at the base of it. The high water flow recorded from the horizontal drains further supports the possible existence of these highly fractured, water conducting zones located within the granite. The shallow fractured granite is virtually “floating” above the water saturated zone and therefore is considered unstable.
机译:这项研究报告了在弗雷泽(Fraser)的Hill Gap公路(FT148)9号KM泥石流起始区域进行的电阻率调查的结果。研究涉及三条平行的坡度测量线和两条垂直于坡面的线。平行线是FH01,FH02和FH03,而线FH04和FH05是垂直的。在东线的中部检测到花岗岩体,该花岗岩体沿FH02最接近地面。花岗岩体内低电阻率区域的存在被解释为高度破裂的导水区域。这些区域是连续的,因为东西线和南北线都已检测到它们。在风化花岗岩主导破坏块体斜面的区域,残余土壤层相对较薄。薄层相对较厚,估计厚度为80μm,并且在其底部发生水流。从水平排水管记录到的高水流进一步支持了位于花岗岩内部的这些高度破裂的导水区的可能存在。浅裂缝的花岗岩实际上“漂浮”在水饱和区上方,因此被认为是不稳定的。

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