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    • 2. 发明申请
    • SYSTEM AND METHOD FOR PLANNING A WELL PATH
    • 用于规划好路径的系统和方法
    • US20130140037A1
    • 2013-06-06
    • US13811828
    • 2011-06-29
    • Jose J. Sequeira, JR.Yao-Chou ChengRune Musum
    • Jose J. Sequeira, JR.Yao-Chou ChengRune Musum
    • E21B41/00E21B43/00
    • E21B41/0092E21B7/04E21B41/00E21B43/00E21B47/022G01V2210/66G01V2210/663
    • There is provided a system and method for planning a well path. An exemplary method comprises defining a proxy constraint volume as a three-dimensional (3D) cellular volume where each cell has at least one value derived from data from a 3D earth model. An initial well path is defined within user defined drilling parameter constraints. The exemplary method comprises defining acceptable constraint parameters to be applied to values derived from an intersection of the initial well path and the proxy constraint volume. If the intersection of the initial well path and the proxy constraint volume is not within the acceptable constraint parameters, the initial well path may be iteratively adjusted to create successive well paths until at least one of the successive well paths is within the acceptable constraint parameters for the values derived from the intersection of the well path and proxy constraint volume.
    • 提供了一种规划井道的系统和方法。 一种示例性方法包括将代理约束体定义为三维(3D)细胞体积,其中每个细胞具有从3D地球模型的数据导出的至少一个值。 用户定义的钻井参数约束中定义了初始井道。 示例性方法包括定义可应用于从初始井径和代理约束体积的交叉点导出的值的可接受约束参数。 如果初始井径和代理约束体积的交点不在可接受的约束参数内,则可以迭代地调整初始井道以创建连续的井径,直到至少一个连续的井道在可接受的约束参数内 从井径和代理约束体积的交集得到的值。
    • 6. 发明申请
    • Iterative Reservoir Surveillance
    • 迭代水库监测
    • US20100206559A1
    • 2010-08-19
    • US12738948
    • 2008-10-20
    • Jose J Sequeira, Jr.Yao-Chou Cheng
    • Jose J Sequeira, Jr.Yao-Chou Cheng
    • E21B43/12G06G7/48
    • G01V99/00E21B41/00
    • Method for reservoir surveillance using a three-dimensional Earth Model (101) to improve and expedite the surveillance at all scales of investigation (field, reservoir, fault compartment, and individual well) and at all time steps (minutes, hours, days, months, years). The new method allows users to rapidly identify anomalous field and well performance (109) and provides capability to investigate root causes of the performance deviation from predicted (110). Animated co-rendered displays (107) of the earth model and actual (104) and simulated (105) production data enable the user to interactively determine model adjustments back at the basic level of the Earth Model, which are then propagated to a geologic model (102) and then to the reservoir simulator (103) to update it (111) in a physically constrained way.
    • 使用三维地球模型(101)进行水库监视的方法,以改进和加快所有调查范围(田间,水库,断层和个体井)的监视情况,以及所有时间步骤(分钟,小时,天数,月份) ,年)。 新方法允许用户快速识别异常场和井的性能(109),并提供对预测性能偏差的根本原因(110)的能力。 地球模型的动画共同渲染显示(107)和实际(104)和模拟(105)生产数据使得用户能够在地球模型的基本水平上交互地确定模型调整,然后将其传播到地质模型 (102),然后到储层模拟器(103)以物理约束的方式对其进行更新(111)。
    • 8. 发明授权
    • System and method for planning a well path
    • 用于规划井道的系统和方法
    • US09593558B2
    • 2017-03-14
    • US13811828
    • 2011-06-29
    • Jose J. Sequeira, Jr.Yao-Chou ChengRune Musum
    • Jose J. Sequeira, Jr.Yao-Chou ChengRune Musum
    • E21B41/00E21B7/04E21B43/00E21B47/022
    • E21B41/0092E21B7/04E21B41/00E21B43/00E21B47/022G01V2210/66G01V2210/663
    • A system and method for planning a well path is described. An exemplary method comprises defining a proxy constraint volume as a three-dimensional (3D) cellular volume where each cell has at least one value derived from data from a 3D earth model. An initial well path is defined within user defined drilling parameter constraints. The exemplary method comprises defining acceptable constraint parameters to be applied to values derived from an intersection of the initial well path and the proxy constraint volume. If the intersection of the initial well path and the proxy constraint volume is not within the acceptable constraint parameters, the initial well path may be iteratively adjusted to create successive well paths until at least one of the successive well paths is within the acceptable constraint parameters for the values derived from the intersection of the well path and proxy constraint volume.
    • 描述了一种用于规划井道的系统和方法。 一种示例性方法包括将代理约束体定义为三维(3D)细胞体积,其中每个细胞具有从3D地球模型的数据导出的至少一个值。 用户定义的钻井参数约束中定义了初始井道。 示例性方法包括定义可应用于从初始井径和代理约束体积的交叉点导出的值的可接受约束参数。 如果初始井径和代理约束体积的交点不在可接受的约束参数内,则可以迭代地调整初始井道以创建连续的井径,直到至少一个连续的井道在可接受的约束参数内 从井径和代理约束体积的交集得到的值。