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Laboratory Studies Of The Acoustic Properties Of Samples From The Salton Sea Scientific Drilling Project And Their Relation To Microstructure And Field Measurements

机译:salton sea科学钻探工程样品声学特性的实验室研究及其与微观结构和现场测量的关系

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摘要

Compressional and shear wave velocities were measured at confining pressures up to200 MPa for twelve core samples from the depth interval of 600 to 2600 m in the California State 2-14 borehole. Samples were selected to represent the various lithologies, including clean, heavily cemented sandstones, altered, impermeable claystones, and several intermediate siltstones. Velocities measured at ultrasonic frequencies in the laboratory correspond closely with velocities determined from acoustic waveform logs and vertical seismic profiles. The samples exhibit P-wave velocities around 3.5 km/sec at depths above 1250 m, but increase to nearly 5.0 km/sec at 1300 m in depth. Further increases with depth result in compressional wave velocity increasing to nearly 6.0 km/sec. These increases in velocities are related to systematic variations in lithology, microstructure and hydrothermal alteration of originally clay-rich sediments. Scanning electron microscope observations of core samples confirm that local core velocities are determined by the combined effects of pore size distributions, and the proportion of clays and alteration minerals such as epidote present in the form of pore fillings and veins.
机译:在加利福尼亚州2-14井眼中,从600至2600 m的深度区间,对12个岩心样品在最高200 MPa的围压下测量了压缩波和剪切波的速度。选择了代表各种岩性的样品,包括干净的,水泥含量高的砂岩,蚀变的,不可渗透的粘土岩和几种中间粉砂岩。在实验室中以超声频率测量的速度与根据声波波形记录和垂直地震剖面确定的速度非常接近。样品在1250 m以上的深度处表现出约3.5 km / sec的P波速度,但在1300 m的深度处增加至近5.0 km / sec。随着深度的进一步增加,压缩波速度增加到接近6.0 km / sec。速度的这些增加与原本富含粘土的沉积物的岩性,微观结构和热液蚀变的系统变化有关。扫描电子显微镜对岩心样品的观察证实,局部岩心速度是由孔隙分布的综合作用决定的,粘土和蚀变矿物(如埃迪奥迪德)等矿物以孔隙填充物和脉状的形式存在。

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