Modeling Subterranean Rock Blocks In An Injection Treatment Simulation
    1.
    发明申请
    Modeling Subterranean Rock Blocks In An Injection Treatment Simulation 有权
    在注射处理模拟中建模地下岩块

    公开(公告)号:US20140222393A1

    公开(公告)日:2014-08-07

    申请号:US13757306

    申请日:2013-02-01

    IPC分类号: G06F17/50

    摘要: Systems, methods, and software can be used to simulate a fracture treatment. In some aspects, physically separate rock blocks of a subterranean zone are modeled by separate block models. The block model for each physically separate rock block represents intra-block mechanics of the rock block, for example, as a group of discrete block elements. Interactions between adjacent pairs of the rock blocks are modeled by separate joint models. The joint model for each adjacent pair of rock blocks represents inter-block mechanics between the adjacent rock blocks, for example, as pre-defined joints. The block models and joint models are used to simulate an injection treatment of the subterranean zone.

    摘要翻译: 系统,方法和软件可用于模拟骨折治疗。 在一些方面,地下区域的物理分离的岩石块由单独的块模型建模。 每个物理上分开的岩石块的块模型表示岩块的块内力学,例如作为一组离散块元素。 相邻岩石块对之间的相互作用是由单独的关节模型建模的。 每个相邻岩石块对的联合模型表示相邻岩块之间的块间力学,例如作为预定义的关节。 块模型和联合模型用于模拟地下区域的注射处理。

    Simulating an Injection Treatment of a Subterranean Zone
    2.
    发明申请
    Simulating an Injection Treatment of a Subterranean Zone 有权
    模拟地下区域的注射治疗

    公开(公告)号:US20140222392A1

    公开(公告)日:2014-08-07

    申请号:US13757052

    申请日:2013-02-01

    IPC分类号: G06F17/50

    摘要: Systems, methods, and software can be used to simulate a fracture treatment. In some aspects, a common solution vector for multiple distinct subsystem models is defined. Each subsystem model represents a distinct subsystem of an injection treatment system. Parameters of the subsystem models are updated based on the solution vector according to predefined relationships between the solution vector and the parameters of the subsystem models. The subsystem models are operated based on the solution vector and the updated parameters.

    摘要翻译: 系统,方法和软件可用于模拟骨折治疗。 在某些方面,定义了多个不同子系统模型的常用解向量。 每个子系统模型代表注射治疗系统的独特子系统。 根据解向量与子系统模型参数之间的预定关系,基于解向量更新子系统模型的参数。 子系统模型基于解向量和更新参数进行操作。

    Modeling subterranean rock blocks in an injection treatment simulation
    3.
    发明授权
    Modeling subterranean rock blocks in an injection treatment simulation 有权
    在注射处理模拟中建模地下岩石块

    公开(公告)号:US09416642B2

    公开(公告)日:2016-08-16

    申请号:US13757306

    申请日:2013-02-01

    IPC分类号: E21B43/26 G06F17/50 G01V99/00

    摘要: Systems, methods, and software can be used to simulate a fracture treatment. In some aspects, physically separate rock blocks of a subterranean zone are modeled by separate block models. The block model for each physically separate rock block represents intra-block mechanics of the rock block, for example, as a group of discrete block elements. Interactions between adjacent pairs of the rock blocks are modeled by separate joint models. The joint model for each adjacent pair of rock blocks represents inter-block mechanics between the adjacent rock blocks, for example, as pre-defined joints. The block models and joint models are used to simulate an injection treatment of the subterranean zone.

    摘要翻译: 系统,方法和软件可用于模拟骨折治疗。 在一些方面,地下区域的物理分离的岩石块由单独的块模型建模。 每个物理上分开的岩石块的块模型表示岩块的块内力学,例如作为一组离散块元素。 相邻岩石块对之间的相互作用是由单独的关节模型建模的。 每个相邻岩石块对的联合模型表示相邻岩块之间的块间力学,例如作为预定义的关节。 块模型和联合模型用于模拟地下区域的注射处理。

    Evaluating fluid flow in a wellbore

    公开(公告)号:US09617833B2

    公开(公告)日:2017-04-11

    申请号:US13530898

    申请日:2012-06-22

    CPC分类号: E21B43/00 E21B47/10

    摘要: Techniques for evaluating a fluid flow through a wellbore include identifying an input characterizing a fluid flow through a wellbore; identifying an input characterizing a geometry of the wellbore; generating a model of the wellbore based on the inputs characterizing the fluid flow and the geometry of the wellbore; simulating the fluid flow through the wellbore based on evaluating the model with a numerical method that determines fluid flow conditions at a first boundary location uphole and adjacent to a perforation of a plurality of perforations in the wellbore and at a second boundary location downhole and adjacent to the perforation; and preparing, based on the fluid flow conditions determined with the numerical method, an output associated with the simulated fluid flow through the wellbore for display to a user.