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Identification Of Rippability And Bedrock Depth Using Seismic Refraction

机译:使用地震折射识别韧带和基岩深度

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Spatial variability of the bedrock with reference to the ground surface is vital for many applications in geotechnical engineering to decide the type of foundation of a structure. A study was done within the development area of Mutiara Damansara utilising the seismic refraction method using ABEM MK8 24 channel seismograph. The geological features of the subsurface were investigated and velocities, depth to the underlying layers were determined. The seismic velocities were correlated with rippability characteristics and borehole records. Seismic sections generally show a three layer case. The first layer with velocity 400-600 m/s predominantly consists of soil mix with gravel. The second layer with velocity 1600-2000 m/s is suggested to be saturated and weathered area. Both layers forms an overburden and generally rippable. The third layer represents granite bedrock with average depth and velocity 10-30 m and > 3000 m/s respectively and it is non-rippable. Steep slope on the bedrock are probably the results of shear zones.
机译:基于地面的基岩的空间可变性对于岩土工程中的许多应用来说至关重要,以确定结构的基础。利用ABEM MK8 24通道地震仪利用地震折射法在Mutiara Damansara的开发领域进行了一项研究。研究了地下的地质特征,确定了潜在层的速度。地震速度与韧性特征和钻孔记录相关。地震切片通常显示三层壳体。具有速度的第一层400-600 m / s主要由土壤混合与砾石组成。具有速度1600-2000m / s的第二层被建议为饱和和风化区域。这两层都形成了覆盖层和一般繁殖。第三层代表平均深度和速度10-30μm和> 3000m / s的花岗岩基岩分别是不可剥离的。在基岩上的陡坡可能是剪切区域的结果。

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