The Estimation of Fracture Intensity and Pressure Distribution using Analysis of Shear Wave Splitting on “Landak” Geothermal Field

Muhammad Al Thariqsyah, I. Ramadhan, S. Sudarmaji
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Abstract

Shear wave splitting is a study that utilizes the differences between arrival times of two shear waves (slow and fast) propagating from a source to a receiver to identify the magnitude of the anisotropic medium through which they propagate. Aside from generating a delay time between two shear waves, the anisotropic medium also shifts the polarization of fast shear wave from its initial polarization which is indicated as the main orientation of the related fracture system. The study was conducted on Landak Field, located around Bukit Besar mountain range by analyzing provided data from December 2011 to April 2012. The results of this study show that the polarizations of fast shear waves in several stations are as following; NE-SW orientation at station R09, R17, R25, and R26, N-S orientation at station R08, and NW-SE orientation at station R17. Not only do these orientations of polarization show a good correlation with structural analysis in this area, but also important to be noted that all microseismic stations encounter a wide-spreading polarization phenomenon as an effect of complex anisotropy. The delay time from all stations ranges from  0.03 to 0.07 seconds. The normalization between delay time and length of ray path for all stations results in a fracture intensity parameter ranging from 0.004 to 0.011 seconds/km. This intensity is measured in slowness parameters, which shows increased value towards the Bukit Besar area, which potentially becomes the upflow zone of the geothermal system. The study shows that the distribution of fracture intensity and pressure have correlation and identical trend with temperature distribution.
利用横波分裂分析估算“兰达克”地热田裂缝强度和压力分布
剪切波分裂是一项利用从源传播到接收器的两个剪切波(慢波和快波)到达时间之间的差异来确定它们传播所经过的各向异性介质的大小的研究。除了在两个剪切波之间产生延迟时间外,各向异性介质还使快剪切波的偏振从其初始偏振偏移,该初始偏振被指示为相关裂缝系统的主要方向。该研究通过分析2011年12月至2012年4月提供的数据,在武吉别萨尔山脉周围的兰达克油田进行。研究结果表明,几个台站的快剪切波极化情况如下;桩号R09、R17、R25和R26处的NE-SW方向,桩号R08处的N-S方向,以及桩号R17处的NW-SE方向。这些极化方向不仅与该地区的结构分析显示出良好的相关性,而且值得注意的是,由于复杂各向异性的影响,所有微震台站都会遇到广泛的极化现象。所有站点的延迟时间在0.03到0.07秒之间。所有站点的延迟时间和射线路径长度之间的归一化导致范围从0.004到0.011秒/km的断裂强度参数。这种强度是用慢度参数测量的,这表明武吉别萨尔地区的值增加了,该地区可能成为地热系统的上流区。研究表明,裂缝强度和压力的分布与温度分布具有相关性和一致性。
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12 weeks
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