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1.
井中微地震快速定位监测是评价非常规油气藏压裂效果的有效手段之一,鉴于研究区内压裂井和监测井距离较远,采集到的微地震数据信噪比低,纵横波初至拾取困难,直接影响微地震定位以及储层压后效果评价的准确性.针对该问题,本文对区内J1HF井的井中微地震事件的识别和初至拾取,采用了更具灵活布设、成本低廉的井中微地震快速定位技术,利用邻井埋设的三分量检波器组成的观测系统,采集了压裂井微地震信号,并对微地震信号进行数据精细处理,利用微地震快速定位算法,实现岩石破裂事件的有效监测.通过对压裂过程岩石破裂能量的时空特征分析,获得了压裂裂缝几何形态及扩展模式,认为本井采用的“暂堵球+纤维暂堵剂”双暂堵工艺较为合理,可有效提高压裂裂缝复杂程度,获得较理想的储层改造体积,研究成果对南华北地区煤系页岩气压裂改造具有一定的指导和借鉴作用.  相似文献   

2.
水力压裂能有效沟通天然裂缝形成复杂缝网系统,极大地提高低渗透油气藏的产能.为有效评估储层水力压裂改造效果及规避潜在的地质安全隐患,需要建立完善的压裂改造监测技术,而微地震监测是目前最为有效的监测手段之一.近年来,国内外微地震监测技术取得了较快的发展,但数据处理仍基本依赖于人工,成本昂贵,且较难提供连续的监测信息以完整反映压裂全过程.为进一步推动非常规压裂生产过程中的实时微地震监测及现场反馈,减轻人员负担、降低成本,我们发展了基于无线4G实时传输节点地震仪和深度学习的软硬件一体化微地震实时监测技术.在川南某页岩气开发平台的微地震监测试验中,该一体化实时监测技术通过4G无线网络实时回传采集的地震波形,并利用最新的深度学习技术对实时数据流进行处理,实现了从地震数据采集、数据实时传输、微地震检测、震相拾取、地震定位、震级分析等一系列功能,并通过云端将微地震分析结果实时反馈至压裂现场,实现了对压裂施工过程不间断地实时自动监测.同时,通过对比地面两套不同密度观测系统人工处理与自动处理的结果,对实时监测技术的准确性和可靠性进行了定量分析和验证.该软硬件一体化微地震实时自动监测技术的研发为我国今后非常...  相似文献   

3.
对非常规油气藏,断层既可以成为油气的流通通道,也可能成为油气藏开采开发的阻碍,体现在(1)导致压裂液的滤失;(2)导致储层水淹;(3)诱发小型地震。因地震勘探分辨率的影响使得部分小型断层无法被有效检测,该类断层在压裂施工过程中变得异常活跃并释放出大量的微震。为此,本文总结出一种融合微震时空特征、相对震级、震源机制、振幅、频率的天然断层识别方法。该方法基于储层力学机理分析天然断层和压裂裂缝激发的力学环境,并得出其时空分布规律;通过引入微地震相对震级的算法对天然断层和压裂裂缝活动所致的微地震事件进行标定,并基于地震位移理论分析天然断层和压裂裂缝所致微震的动力学特征,得出其在频率和振幅存在的差异。通过微地震地面和井中监测实例的应用和验证,该方法能有效地达到对天然断层和压裂裂缝识别的目的。  相似文献   

4.
微地震矩张量能够描述储层岩石破坏的细节,有助于了解水力压裂储层的地质力学特征,震源机制矩张量反演对于非常规油气开发具有重要的作用.水力压裂通常在页岩油气储层中进行,震源区介质表现出速度和衰减各向异性,需要研究衰减各向异性介质中微地震信号的传播规律.基于观测到的微地震记录,通过波形反演能够获得矩张量,忽视震源区介质的衰减...  相似文献   

5.
微地震事件初至拾取是井下微地震监测数据处理的关键步骤之一.初至误差的存在会使微地震震源定位结果产生较大偏差,进而影响后续的压裂裂缝解释.通常初至拾取过程对所有的微地震事件选择相同的特征函数并采用一致的拾取参数进行统一处理,然而当事件的能量、震源机制、传播路径以及背景噪声等存在明显差异时,所得初至拾取结果差别显著.为了提高微地震事件初至拾取标准一致性,本文提出基于波形相似特征的初至拾取及全局校正方法.该方法首先利用互相关函数对每个事件内的各道记录进行时差校正,得到初始初至信息并形成叠加道,再对所有事件的叠加道进行全局互相关得到事件间初至相对校正量,最终初至结果可以通过各个事件的初始初至信息与其相对校正量相加得到.方法将所有微地震事件初至结果作为一个整体处理,从而能够克服常规方法初至拾取标准一致性差的缺陷.实际资料处理结果表明,相比于常规方法,该方法可以有效提高事件初至拾取和定位结果的一致性.  相似文献   

6.
随着非常规致密砂岩气、页岩气藏的开采开发,压裂技术在储层改造中起着举足轻重的作用,而微地震监测技术是评价压裂施工效果的关键且即时的技术之一.根据微地震监测处理高精度地反演微震位置,从而预测压裂裂缝的发展趋势及区域,对压裂施工效果进行跟踪及评判,同时也为后期油气藏的开采和开发提供技术指导.定位精度直接影响地下裂缝的分布特征,错误或精度不高的定位结果,必将导致对裂缝趋势的误判.文章结合理论和数值模拟方法,对初至拾取精度的影响因素进行了分析,讨论初至误差对定位精度的影响.同时结合地层岩石物理特性、射孔资料对速度模型的校正、速度各向异性、地层倾角、多段压裂等因素,分析了这些因素对精细速度模型及定位精度的影响.最后结合定位方法本身所存在的局限,探讨反演方法及方位角对定位精度的影响.通过理论及数值模拟分析表明,初至误差、速度模型精度及定位方法对定位精度有着紧密关系,并将其归类为可控误差及系统误差,通过区别对待可控误差和系统误差,可最终为高精度微地震监测定位技术的研究及应用提供指导.  相似文献   

7.
水力压裂对速度场及微地震定位的影响   总被引:2,自引:1,他引:1       下载免费PDF全文
水力压裂是页岩气开发过程中的核心增产技术,微地震则广泛用于压裂分析、水驱前缘监测和储层描述.微地震反演过程中,用于反演的速度模型往往基于测井、地震或标定炮资料构建,忽略了压裂过程中裂缝及孔隙流体压力变化对地层速度的影响.本文首先基于物质守恒、渗流理论和断裂力学模拟三维水力压裂过程,得到地下裂缝发育特征和孔隙压力分布.继而根据Coates-Schoenberg方法和裂缝柔量参数计算裂缝和孔隙压力对速度场的影响,得到压裂过程中的实时速度模型.最后利用三维射线追踪方法正演微地震走时和方位信息,并采用常规微地震定位方法反演震源位置及进行误差分析.数值模拟结果表明,检波器空间分布影响定位精度,常规方法的定位误差随射线路径在压裂带中传播距离增加而变大,且不同压裂阶段的多点反演法与单点极化法精度相当.  相似文献   

8.
非常规油气开采中实施的储层改造,通常是利用水力压裂技术向储层注入高压流体,改变储层原有的孔缝连通结构,实现油气开采.水力压裂会改变储层应力并使岩石破裂,从而产生微地震事件.微地震研究的重要内容之一是其震源破裂的机制.通过对微地震震源机制的研究,可揭示微地震的产生机理和地下储层的应力变化规律,有效地优化水力压裂和储层改造...  相似文献   

9.
水力压裂微地震井地联合监测系统及仪器   总被引:1,自引:1,他引:0       下载免费PDF全文
水力压裂技术是油气田增产和低渗透油田开发的有效技术手段,通过监测油层裂缝延展过程中产生的微地震事件,能够有效地判断裂缝走向.现有的井中监测方法存在成本较高、施工难度大的问题;地面监测存在信号信噪比低、垂向分辨能力差等问题.本文采用井地联合微地震监测的方法,在地面布置采集仪器的同时,选择邻近的单口监测井放置井中仪器,对微地震事件进行联合监测定位.采用联合监测的方法,在水平方向和垂直方向上都能够获得较好的监测视角,对比单一监测方法提高了微地震事件的定位精度.在此方法的基础上研制的井地联合微地震监测仪器系统,解决了现有仪器系统在进行联合监测时通讯链路不通的问题,实现了在压裂施工现场对微地震联合监测数据的实时回收、处理及结果呈现.应用本系统在大庆油田进行现场监测,获取的微地震事件对压裂裂缝进行了有效评价;通过对已知射孔点进行反演定位,采用井地联合监测将定位误差由地面监测的32 m降低至14 m,验证了本文技术的有效性.  相似文献   

10.
微地震监测技术是联系储层和压裂的桥梁和纽带.针对老油田精细开发的需求,开展基于微地震监测技术的油井压裂效果评价和开发方案调整应用研究,并形成技术流程.准确定位微地震事件基础上,定量描述压裂裂缝参数;综合研究区地质资料、井资料、压裂施工数据等解释压裂裂缝形成,并用生产数据验证,准确评价压裂改造效果;利用压裂裂缝纵向特征认...  相似文献   

11.
含衰减地层微地震震源机制反演及其反演分辨率   总被引:2,自引:2,他引:0       下载免费PDF全文
微地震震源机制的反演对于非常规油气开发具有至关重要的作用.微地震信号主频高、能量小,容易受地层吸收衰减作用的影响使其波形发生畸变,本文提出了一种考虑地层吸收衰减作用的微震源机制反演方法,并利用费雷谢偏导矩阵的SVD分解(特征值分解)方法,分析研究了地层的吸收衰减因子的变化对于微地震震源机制反演分辨率的影响,根据理论计算给出了不同地震数据对各种震源机制反演的适用条件.理论计算证明,采用直达P波和S波数据联合反演震源的T值,单独利用直达P波反演震源的k值,可以有效降低地层吸收衰减作用对反演结果的影响.  相似文献   

12.
In unconventional reservoirs, small faults allow the flow of oil and gas as well as act as obstacles to exploration; for, (1) fracturing facilitates fluid migration, (2) reservoir flooding, and (3) triggering of small earthquakes. These small faults are not generally detected because of the low seismic resolution. However, such small faults are very active and release sufficient energy to initiate a large number of microseismic events (MEs) during hydraulic fracturing. In this study, we identified microfractures (MF) from hydraulic fracturing and natural small faults based on microseismicity characteristics, such as the time–space distribution, source mechanism, magnitude, amplitude, and frequency. First, I identified the mechanism of small faults and MF by reservoir stress analysis and calibrated the ME based on the microseismic magnitude. The dynamic characteristics (frequency and amplitude) of MEs triggered by natural faults and MF were analyzed; moreover, the geometry and activity types of natural fault and MF were grouped according to the source mechanism. Finally, the differences among time–space distribution, magnitude, source mechanism, amplitude, and frequency were used to differentiate natural faults and manmade fractures.  相似文献   

13.
使用中国地震台网全面完成数字化之后的观测资料(2008 2012年),对中国地震台网和美国地震台网测定的体波震级从震级大小、震中距、震源深度和震中方位进行对比分析.由对比结果可知:中国和美国地震台网测定的mb之间无系统化差异,但中国地震台网测定的mB与美国地震台网测定的mb存在一定系统偏差(mB平均偏大0.22);震源深度对震级偏差有一定影响,具体表现为浅源地震偏差大于中深源地震;震中距及四象限分布对偏差基本没有影响.  相似文献   

14.
In the past decade, a number of studies have reported the observation of rotational motion associated with seismic events. We report a first observation of rotational motion in the microseismic ambient noise band. A striking feature of rotational motion measurements is that the information about the seismic phase velocity and source back azimuth is contained in the amplitude ratio of a point measurement of rotation rate and transverse acceleration. We investigate the possibility of applying this method to ambient noise measured with a ring laser and a broadband seismometer at the Wettzell Geodetic Observatory in Germany. Using data in the secondary microseismic band, we recover local phase velocities as well as the back azimuth of the strongest noise source for two different time periods. In order to confirm these findings, we additionally compare the results with classical array processing techniques of the Gr?fenberg array located nearby.  相似文献   

15.
An analysis of amplitudes of refraction records of some shallow refraction profiles shot primarily for detailing the near-surface structure in a granitic terrain has yielded information on refractor properties: reduced amplitudes are plotted on amplitude-distance graphs. The negative power n to which distance should be raised to represent (elastic) amplitude decay with respect to distance due to spreading of the critically refracted wave involved is examined. Computed values of this “spreading index”n are close to n = 2 as predicted by the theory. With this value of n, amplitude data are processed to determine residual attenuation attributable to elastic absorption in the bedrock. A graphical approach for this purpose from comparison of amplitude-distance graphs with the plots of amplitude decay due to spreading which is applicable to flat and horizontal refractor situations is suggested. Assuming residual attenuation to represent absorption in the granite bedrock, the computed coefficients of absorption, which vary from 0.5 to 3.90 km?1 for a frequency of 50 Hz, are obtained. From amplitude graphs of reversed profiles it is shown that the amplitude differences plot bears a relation to lateral velocity changes in the refractor. From comparison of practical amplitude decay graphs with those computed for different subsurface models, it appears possible to detect fractured rock occurrences in the refractor.  相似文献   

16.
Reservoir reconstructions implemented in unconventional oil and gas exploration usually adopt hydraulic fracturing techniques to inject high-pressure fluid into the reservoir and change its pore-fracture connection structure to enhance production. Hydraulic fracturing changes the reservoir stress and causes the rocks to crack, thus generating microseismic events.One important component of microseismic research is the source mechanism inversion. Through the research on the microseismic focal mechanism, information on the source mechanisms and in-situ stress status variations can be quantitatively revealed to effectively optimize the reservoir reconstruction design for increasing production. This paper reviews the recent progress in hydraulic fracturing induced microseismic focal mechanism research. We summarize their main principles and provide a detailed introduction of the research advances in source modeling, microseismic data synthesis, and focal mechanism inversion. We also discuss the challenges and limitations in the current microseismic focal mechanism research and propose prospects for future research ideas and directions.  相似文献   

17.
As part of the effort to assess the seismic hazards of Singapore and the Malay Peninsula, representative ground motion prediction models have to be established. Seven existing attenuation relationships developed for shallow crustal earthquakes in stable continent and active tectonic regions are examined, and they are found to consistently over‐predict the ground motions of Sumatran‐fault earthquakes recently recorded in Singapore. This may be attributed to the differences in the regional crustal structures and distance ranges considered. Since the number of recorded ground motions in the region is very limited, a new set of attenuation relationships is derived based on synthetic seismograms. The uncertainties in rupture parameters, such as stress drop, focal depth, dip and rake angles, are defined according to the regional geological and tectonic settings as well as the ruptures of previous earthquakes. Ground motions are simulated for earthquakes with Mw ranging from 4.0 to 8.0, within a distance range from 174 to 1379km. Besides magnitude and distance, source‐to‐station azimuth is found to influence the amplitudes of the ground motions simulated. Thus, the azimuth is taken as an independent variable in the derived ground motion attenuation relationships. The Sumatran‐fault segments that have the potential to generate a specified level of response spectral accelerations in Singapore and Kuala Lumpur are identified based on the newly derived ground motion models. Copyright © 2003 John Wiley & Sons, Ltd.  相似文献   

18.
The existence of aligned fractures in fluid-saturated rocks leads to obvious attenuation anisotropy and velocity anisotropy. Attenuation anisotropy analysis can be applied to estimate fracture density and scale, which provide important information for reservoir identification. This paper derives P-wave attenuation anisotropy in the ATI media where the symmetry axis is in the arbitrary direction theoretically and modifies the spectral ratio method to measure attenuation anisotropy in the ATI media, thus avoiding a large measurement error when applied to wide azimuth or full azimuth data. Fracture dip and azimuth can be estimated through attenuation anisotropy analysis. For small-scale fractures, fracture scale and fracture density can be determined with enhanced convergence if velocity and attenuation information are both used. We also apply the modified spectralratio method to microseismic field data from an oilfield in East China and extract the fracture dip through attenuation anisotropy analysis. The result agrees with the microseismic monitoring.  相似文献   

19.
一种改进的基于网格搜索的微地震震源定位方法   总被引:1,自引:0,他引:1       下载免费PDF全文
震源定位是微地震监测技术要解决的主要问题.目前,井下微地震监测多采用走时拟合法计算震源位置.常规方法受到环境噪声、初至拾取误差、速度模型误差等因素的影响,定位结果存在一定误差.为了提高定位精度,本文提出了一种改进的基于网格搜索的微地震震源定位方法.本文方法根据P波的偏振特征参数计算概率密度函数求取震源方位角,并采用改进的目标函数和搜索算法计算震源的径向距离和深度.模型数据和实际资料的处理结果表明,本文方法具有较强的抗噪性,计算得到的震源方位角更加接近真实值;与常规目标函数相比,本文方法采用的目标函数具有更好的收敛性,其定位结果受初至拾取误差和速度模型误差的影响更小;本文提出的搜索算法能够消除由于错误拾取造成的观测到时中的异常值对定位结果的影响.  相似文献   

20.
对地震记录中显著可视事件震级的确定,已有如里氏震级、矩震级、不同定义的震级之间的关联、震级与能量之间的关系等成熟方法。然而,由于微地震事件记录常淹没在背景噪声中,无法实施包括确定震级在内的传统定位。为比较不同类型不同地域的微震大小、研究微震机制及诱发原因、使用其安全预警等,我们外延里氏震级到微震范畴,定义了等效里氏微震震级:根据微破裂向量扫描输出的无量纲能量或最小信噪比,估计一定时空中单位时间单位台站所接收的在时空目标一点上的等效能量和震级。文中列出了目前我们在微震监测中发现的几类微震的大小规模。  相似文献   

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