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Seismicity Induced by Hydraulic Fracturing in Shales: A Bedding Plane Slip Model

机译:Shales液压压裂引起的地震性:床上用品滑动模型

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Abstract >Passive seismic monitoring of microseismic events induced in oil or gas reservoirs is known as microseismic monitoring. Microseismic monitoring is used to understand the process of hydraulic fracturing, which is a reservoir stimulation technique. We use a new geomechanical model with bedding plane slippage induced by hydraulic fractures within shale reservoirs to explain seismicity observed in a typical case study of hydraulic fracturing of a shale gas play in North America. Microseismic events propagating from the injection point are located at similar depths (within the uncertainty of their locations), and their source mechanisms are dominated by shear failure with both dip‐slip and strike‐slip senses of motion. The prevailing dip‐slip mechanisms have one nearly vertical nodal plane perpendicular to the minimum horizontal stress axis, while the other nodal plane is nearly horizontal. Such dip‐slip mechanisms can be explained by slippage along bedding planes activated by the aseismic opening of vertical hydraulic fractures. The model explains the observed prevailing orientation of the shear planes of the microseismic events, as well as the large difference between seismic and hydraulic energy. </abstract> </span> <span class="z_kbtn z_kbtnclass hoverxs" style="display: none;">展开▼</span> </div> <div class="translation abstracttxt"> <span class="zhankaihshouqi fivelineshidden" id="abstract"> <span>机译:</span><Abstract Type =“Main”XML:Lang =“en”> <标题类型=“main”>抽象</标题> >在油储层中引起的微震事件的被动地震监测被称为微震监测。微震监测用于了解水力压裂过程,即储层刺激技术。我们使用新的地质力学模型与页岩水库内的液压骨折引起的床上用品滑动,以解释在北美的页岩气效果的典型案例研究中观察到地震。从注射点传播的微震事件位于类似的深度(在其位置的不确定程度内),并且它们的源机构通过剪切故障与浸渍滑动和运动滑动感测到的剪切故障。普遍的浸渍滑移机构具有垂直于最小水平应力轴的几乎垂直的节点平面,而另一个节点平面几乎是水平的。这种浸水机构可以通过沿着垂直液压裂缝的抗空开口激活的床上用品滑动来解释。该模型解释了观察到微震事件的剪切平面的普遍取向,以及地震和液压能之间的巨大差异。</ p> </摘要> </span> <span class="z_kbtn z_kbtnclass hoverxs" style="display: none;">展开▼</span> </div> </div> <div class="record"> <h2 class="all_title" id="enpatent33" >著录项</h2> <ul> <li> <span class="lefttit">来源</span> <div style="width: 86%;vertical-align: text-top;display: inline-block;"> <a href='/journal-foreign-34677/'>《Journal of geophysical research. Solid earth: JGR》</a> <b style="margin: 0 2px;">|</b><span>2017年第10期</span><b style="margin: 0 2px;">|</b><span>共15页</span> </div> </li> <li> <div class="author"> <span class="lefttit">作者</span> <p id="fAuthorthree" class="threelineshidden zhankaihshouqi"> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Staněk Franti?ek&option=202" target="_blank" rel="nofollow">Staněk Franti?ek;</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Eisner Leo&option=202" target="_blank" rel="nofollow">Eisner Leo;</a> </p> <span class="z_kbtnclass z_kbtnclassall hoverxs" id="zkzz" style="display: none;">展开▼</span> </div> </li> <li> <div style="display: flex;"> <span class="lefttit">作者单位</span> <div style="position: relative;margin-left: 3px;max-width: 639px;"> <div class="threelineshidden zhankaihshouqi" id="fOrgthree"> <p>Department of Geophysics Faculty of Mathematics and PhysicsCharles University in PraguePrague Czech Republic;</p> <p>Institute of Rock Structure and MechanicsCzech Academy of SciencesPrague Czech Republic;</p> </div> <span class="z_kbtnclass z_kbtnclassall hoverxs" id="zhdw" style="display: none;">展开▼</span> </div> </div> </li> <li > <span class="lefttit">收录信息</span> <span style="width: 86%;vertical-align: text-top;display: inline-block;"></span> </li> <li> <span class="lefttit">原文格式</span> <span>PDF</span> </li> <li> <span class="lefttit">正文语种</span> <span>eng</span> </li> <li> <span class="lefttit">中图分类</span> <span><a href="https://www.zhangqiaokeyan.com/clc/163.html" title="地球物理学">地球物理学;</a></span> </li> <li class="antistop"> <span class="lefttit">关键词</span> <p style="width: 86%;vertical-align: text-top;"> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=microseismicity&option=203" rel="nofollow">microseismicity;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=source mechanisms&option=203" rel="nofollow">source mechanisms;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=shale&option=203" rel="nofollow">shale;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=hydraulic fracturing&option=203" rel="nofollow">hydraulic fracturing;</a> <a style="color: #3E7FEB;" href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=bedding plane slip&option=203" rel="nofollow">bedding plane slip;</a> </p> <div class="translation"> 机译:微震性;源机制;页岩;液压压裂;床上用品平面滑动; </div> </li> </ul> </div> </div> <div class="literature cardcommon"> <div class="similarity "> <h3 class="all_title" id="enpatent66">相似文献</h3> <div class="similaritytab clearfix"> <ul> <li class="active" >外文文献</li> <li >中文文献</li> <li >专利</li> </ul> </div> <div class="similarity_details"> <ul > <li> <div> <b>1. </b><a class="enjiyixqcontent" href="/journal-foreign-detail/0704020651777.html">Seismicity Induced by Hydraulic Fracturing in Shales: A Bedding Plane Slip Model</a> <b>[J]</b> . <span> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Stanek Frantisek&option=202" target="_blank" rel="nofollow" class="tuijian_auth tuijian_authcolor">Stanek Frantisek,</a> <a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=Eisner Leo&option=202" target="_blank" rel="nofollow" class="tuijian_auth tuijian_authcolor">Eisner Leo </a> <a href="/journal-foreign-34656/" target="_blank" rel="nofollow" class="tuijian_authcolor">Journal of Geophysical Research. 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<a href="/search.html?doctypes=4_5_6_1-0_4-0_1_2_3_7_9&sertext=王阅兵&option=202" target="_blank" rel="nofollow" class="tuijian_auth tuijian_authcolor"> . 王阅兵</a> <span> . 2012</span> </span> </div> </li> </ul> <ul style="display: none;"> <li> <div> <b>1. </b><a class="enjiyixqcontent" href="/patent-detail/06120105185967.html">涂敷和/或处理水力压裂支撑剂以改善润湿性、支撑剂润滑和/或减少由压裂液和储集层流体引起的损害</a> <b>[P]</b> . <span> 中国专利: CN1984769A </span> <span> . 2007-06-20</span> </div> </li> <li> <div> <b>2. </b><a class="enjiyixqcontent" href="/patent-detail/06120100030182.html">T梁液压滑动模型下部自动液压拉杆装置和方法</a> <b>[P]</b> . <span> 中国专利: CN109304794A </span> <span> . 2019-02-05</span> </div> </li> <li> <div> <b>3. </b><a class="enjiyixqcontent" href="/patent-detail/06130418025340.html">Modeling hydraulic fracturing induced fracture networks as a dual porosity system</a> <b>[P]</b> . <span> 外国专利: <!-- 美国专利: --> US8731889B2 </span> <span> . 2014-05-20</span> </div> <p class="zwjiyix translation" style="max-width: initial;height: auto;word-break: break-all;white-space: initial;text-overflow: initial;overflow: initial;"> <span>机译:将水力压裂诱导的裂缝网络建模为双重孔隙系统 </span> </p> </li> <li> <div> <b>4. </b><a class="enjiyixqcontent" href="/patent-detail/06130426041224.html">MODELING HYDRAULIC FRACTURING INDUCED FRACTURE NETWORKS AS A DUAL POROSITY SYSTEM</a> <b>[P]</b> . <span> 外国专利: <!-- 美国专利: --> US2011257944A1 </span> <span> . 2011-10-20</span> </div> <p class="zwjiyix translation" style="max-width: initial;height: auto;word-break: break-all;white-space: initial;text-overflow: initial;overflow: initial;"> <span>机译:水力压裂引起的断裂网络建模为双孔隙度系统 </span> </p> </li> <li> <div> <b>5. </b><a class="enjiyixqcontent" href="/patent-detail/06130404729752.html">Data-driven analytics, predictive modeling and optimization of hydraulic fracturing in shale</a> <b>[P]</b> . <span> 外国专利: <!-- 美国专利: --> US10417561B2 </span> <span> . 2019-09-17</span> </div> <p class="zwjiyix translation" style="max-width: initial;height: auto;word-break: 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