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    • 1. 发明申请
    • Methods for geomechanical fracture modeling
    • 地质力学断裂模拟方法
    • US20090125280A1
    • 2009-05-14
    • US11985082
    • 2007-11-13
    • Mohamed Y. SolimanLoyd E. East, JR.Dwight D. Fulton
    • Mohamed Y. SolimanLoyd E. East, JR.Dwight D. Fulton
    • G06F17/50
    • E21B43/26G01V99/005G01V2210/646
    • The present invention relates generally to methods for designing and optimizing the number, placement, and size of fractures in a subterranean formation and more particularly to methods that account for stress interference from other fractures when designing and optimizing the number, placement, and size of fractures in the subterranean formation. The present invention optimizes the number, placement and size of fractures in a subterranean formation. The present invention determines one or more geomechanical stresses induced by each fracture based on the dimensions and location of each fracture, including surface deformations caused by each fracture. The present invention determines a maximum number of fractures and a predicted stress field based on the geomechanical stresses induced by each of the fractures.
    • 本发明一般涉及用于设计和优化地层中裂缝的数量,位置和尺寸的方法,更具体地涉及在设计和优化裂缝的数量,位置和尺寸时考虑来自其他裂缝的应力干扰的方法 在地层中。 本发明优化了地层中裂缝的数量,位置和尺寸。 本发明基于每个断裂的尺寸和位置确定每个断裂引起的一个或多个地质力学应力,包括由每个断裂引起的表面变形。 本发明基于由每个裂缝引起的地质力学应力来确定最大数目的裂缝和预测的应力场。
    • 7. 发明授权
    • Electroconductive proppant compositions and related methods
    • 导电支撑剂组合物及相关方法
    • US07073581B2
    • 2006-07-11
    • US10868608
    • 2004-06-15
    • Philip D. NguyenDwight D. Fulton
    • Philip D. NguyenDwight D. Fulton
    • E21B47/00
    • C09K8/805E21B43/267E21B47/024
    • Some embodiments provide methods of obtaining data from a portion of a subterranean formation comprising providing proppant particulates wherein at least a portion of the proppant particulates are coated with an electroconductive resin that comprises a resin and a conductive material; placing the proppant particulates into a portion of a fracture so as to form an electroconductive proppant pack; providing a transmitter capable of sending an electric current into the electroconductive proppant pack; sending an electric current into the electroconductive proppant pack with the transmitter; providing a receiver capable of deflecting a reflected or conducted electric signal from the electroconductive proppant pack; and, receiving a reflected electric signal with the receiver. Other embodiments provide electroconductive proppant packs comprising proppant particulates wherein a portion of the proppant particulates are coated with an electroconductive resin and wherein the electroconductive resin comprises a resin and a conductive material.
    • 一些实施方案提供从地层的一部分获得数据的方法,包括提供支撑剂颗粒,其中至少一部分支撑剂颗粒被包含树脂和导电材料的导电树脂涂覆; 将支撑剂颗粒放置在断裂的一部分中以形成导电支撑剂包; 提供能够将电流发送到所述导电支撑剂包中的发射器; 用发射器将电流传送到导电支撑剂包中; 提供能够偏转来自导电支撑剂组的反射或传导电信号的接收器; 并且用接收器接收反射的电信号。 其它实施方案提供包含支撑剂颗粒的导电支撑剂包,其中支撑剂颗粒的一部分用导电树脂涂覆,并且其中导电树脂包含树脂和导电材料。