首页> 外文期刊>Journal of Petroleum Science & Engineering >Integration of sonic and resistivity conventional logs for identification of fracture parameters in the carbonate reservoirs (A case study, Carbonate Asmari Formation, Zagros Basin, SW Iran)
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Integration of sonic and resistivity conventional logs for identification of fracture parameters in the carbonate reservoirs (A case study, Carbonate Asmari Formation, Zagros Basin, SW Iran)

机译:Sonic和电阻率常规日志的集成,用于鉴定碳酸盐储层中的断裂参数(一个案例研究,碳酸盐asmari形成,Zagros Basin,SW伊朗)

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Between all available methods for fractures evaluation, core and image logs are prime methods. However, both of these data are very expensive and practically available in less than 10% of drilled wells. Therefore, a less expensive and quick method would be very helpful for fracture analysis. The main aim of this study is to identify the fracture parameters in the carbonate reservoirs, i.e. fracture density and fracture aperture, using a combination of sonic, resistivity and other conventional logs which commonly available in all wells. For this aim, fractures and their parameters were precisely determined on the image logs in 6 wells from carbonate Asmari Formation as a typical fractured reservoir in the world. Then, the effect of fracture parameters on the sonic and resistivity logs were used to identify fracture parameters in the wells with no core and image logs. Results indicate that the zones with high fracture density and aperture are easily detectable by conventional logs. On the other hand, the behavior of these logs is a function of fracture parameters in the fractured intervals, especially in the zones with high fracture aperture. Separation between shallow (RLA2) and deep (RLA5) resistivity logs along with their cross plot are very reliable indicators for fractured intervals. Sonic transit time rapidly increases where fractures density or aperture increased as well. In this study, a combination of sonic and neutron porosity logs have also been used to determine the effect of fracture aperture, as the main effective factor on the reservoir properties. Furthermore, full waveforms in some studied wells combined with sonic transit time to improve the results of fractures evaluation. Using sonic and resistivity along with neutron porosity and gamma ray logs provides a reliable method for describing the fracture parameters which shows high correlation with image logs results. Due to the high impact of fracture aperture on both reservoir quality and conventional log responses, determination of this parameter is more crucial than other fracture parameters. This method is also applicable for OBM (Oil Base Mud) image tools which conventionally cannot detect fracture aperture.
机译:在所有可用方法之间进行裂缝评估,核心和图像日志是主要方法。然而,这两个数据都非常昂贵,实际上不到10%的钻孔井。因此,较便宜且快速的方法对裂缝分析非常有用。本研究的主要目的是鉴定碳酸盐储存器中的断裂参数,即断裂密度和骨折孔,使用众多孔中通常可用的声音,电阻率和其他常规原木的组合。对于这种目的,从碳酸酯Asmari形成的6个井中精确地确定裂缝及其参数,作为世界上典型的碎屑储层。然后,使用裂缝参数对声波和电阻率日志的影响来识别没有核心和图像原木的孔中的断裂参数。结果表明,具有高断裂密度和孔径的区域通过常规原木易于检测。另一方面,这些日志的行为是裂缝间隔中断裂参数的函数,尤其是在具有高裂缝孔的区域中。浅(RLA2)和深(RLA5)电阻率日志与其交叉图之间的分离是非常可靠的裂缝间隔的指标。声波传输时间迅速增加,其中裂缝密度或孔径也增加。在该研究中,Sonic和中子孔隙率原木的组合也已用于确定骨折孔径的作用,作为储层性质的主要有效因素。此外,一些研究的井中的完整波形结合了声波传输时间来改善裂缝评估的结果。使用声波和电阻率以及中子孔隙率和伽马射线日志提供了一种可靠的方法,用于描述显示与图像日志结果高相关的裂缝参数。由于骨折孔径对储层质量和常规日志响应的高影响,该参数的测定比其他骨折参数更重要。该方法也适用于常规不能检测裂缝孔的OBM(油基泥浆)图像工具。

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