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Reconstructing structural signature over the Blawan-Ijen geothermal area using gravity technology

机译:使用重力技术重建在Blawan-Ijen地热区域的结构签名

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Geological structure is one of the important factors that should be recognized before drilling. Several geophysical methods have been applied to identify the structure. For gravity data analysis, there are First Horizontal Derivative (FHD), Second Vertival Derivative (SVD) and Euler Deconvolution (ED), that frequently applied in many geothermal fields. Accordingly, this study try to apply the FHD method to locate contacts of density contrast from gravity data that usually associate with the present of the structures. However, before applying the method directly to real data, 3-D forward modeling of gravity data is built to learn the ability in detecting and characterizing the structure. Starting from the simplest model through the complex model, the gravity responses from CBA result and also FHD then are analyzed. At the end, a complex model based on the real case in Blawan-Ijen geothermal area is also reconstructed. From the real data, CBA anomaly shows high gravity anomaly which might be associated with the existence of several volcanoes in this area. Moreover, the maximum gradient anomaly from FHD result coincided with the presence of the structures obtained from RS analysis and geological study.
机译:地质结构是在钻井前应该识别的重要因素之一。已经应用了几种地球物理方法来识别结构。对于重力数据分析,存在频繁应用于许多地热场的第一水平衍生(FHD),第二瓣多率衍生物(SVD)和欧拉解卷积(ED)。因此,该研究试图应用FHD方法,以定位与通常与结构的引起的重力数据对比的密度对比的触点。然而,在将该方法直接应用于实际数据之前,建立了重力数据的3-D转发建模,以了解检测和表征结构的能力。从最简单的模型开始通过复杂模型,分析来自CBA结果和FHD的重力响应。最后,还重建了基于真实案例的复杂模型。从真实数据中,CBA异常显示了高重力异常,这可能与该地区的几座火山的存在相关联。此外,来自FHD结果的最大梯度异常与来自RS分析和地质研究获得的结构的存在一致。

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