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首页> 外文期刊>Journal of Environment and Earth Science >Estimating Geo-Mechanical Strength of Reservoir Rocks from Well Logs for Safety Limits in Sand-Free Production
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Estimating Geo-Mechanical Strength of Reservoir Rocks from Well Logs for Safety Limits in Sand-Free Production

机译:从测井曲线估算储层岩石的地质力学强度,以达到无砂生产的安全极限

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Hydrocarbon exploration and exploitation does not only require the knowledge of hydrocarbon in-place, however, mechanical competency of the reservoir rock must also be known. The direct method of inferring S- and P-wave velocities from seismic data usually has limitation of poor resolution because of the uncertainty in seismic inversion which may also affect other derivatives. An analytical method is presented with the possibility of predicting shear wave velocity from wireline log data where S-wave sonic logs do not exist. By estimating S-wave velocity, formation geo-mechanical properties can be calculated using P-wave sonic and density logs with appropriate equations. Elastic constants such as Poisson Ratio, Young’s, Shear and Bulk moduli which are the parameters for characterizing rock mechanical properties were estimated and used to predict the mechanical competency of the formation for hydrocarbon exploration. Well planning demands knowledge of these geo-mechanical properties which can be used to estimate the pressures required to initiate a fracture into a formation for the safety of the personnel and equipment, in particular minimizing the associated risks. In this paper, firstly we investigate the possibility to predict the shear velocity from well logs, and then Elastic moduli calculated from the log data can therefore be used effectively in predicting safety limits in sand-free production from friable sandstones. The results of this study shows that the combined modulus of strength (K) and the shear modulus (S) to compressibility (c) ratio (S/c) for the formation are relatively low. The average value of K is lower than the threshold value indicating the minimum value at which fluids may be produced safely at any rate but falls within the range which generally represents a condition in which the problem of sand production should not arise below a certain optimum flow rate. Average value of S/c ratio is lower but tends towards acceptable range. Keywords: Mechanical competency, predicting shear wave velocity, elastic constants, well planning, combined modulus of strength, shear modulus to compressibility ratio.
机译:碳氢化合物的勘探和开发不仅需要就地的碳氢化合物知识,而且还必须知道储层岩石的机械能力。从地震数据推断出S波和P波速度的直接方法通常存在分辨率差的局限性,因为地震反演的不确定性也可能影响其他导数。提出了一种分析方法,可以从不存在S波声波测井的电缆测井数据中预测剪切波速度。通过估算S波速度,可以使用P波声波测井和密度测井以及适当的方程式来计算地层地质力学特性。估计了弹性常数,例如泊松比,杨氏,剪切和体积模量,这些参数是表征岩石力学特性的参数,并用于预测油气勘探地层的力学能力。井眼规划需要这些地质力学特性的知识,这些知识可用于估计为使人员和设备安全而将裂缝引发到地层中所需的压力,尤其是最大程度地降低相关风险。在本文中,我们首先研究了从测井中预测剪切速度的可能性,然后根据测井数据计算出的弹性模量可有效地用于预测易碎砂岩无砂生产的安全极限。这项研究的结果表明,地层的组合强度模量(K)和剪切模量(S)与可压缩性(c)之比(S / c)相对较低。 K的平均值低于阈值,该阈值表示可以以任何速率安全地生产流体的最小值,但是落在通常表示在一定的最佳流量以下不应出现出砂问题的条件的范围内率。 S / c比的平均值较低,但是趋于可接受的范围。关键字:机械能力,预测剪切波速度,弹性常数,井规划,强度组合模量,剪切模量与压缩比。

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